WO2026000412A1 - 患者诊疗信息系统及信息处理方法 - Google Patents

患者诊疗信息系统及信息处理方法

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Publication number
WO2026000412A1
WO2026000412A1 PCT/CN2024/102690 CN2024102690W WO2026000412A1 WO 2026000412 A1 WO2026000412 A1 WO 2026000412A1 CN 2024102690 W CN2024102690 W CN 2024102690W WO 2026000412 A1 WO2026000412 A1 WO 2026000412A1
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WO
WIPO (PCT)
Prior art keywords
monitoring
parameter
parameters
display
reference interval
Prior art date
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Pending
Application number
PCT/CN2024/102690
Other languages
English (en)
French (fr)
Inventor
张燕
陈世义
代巍巍
杨承其
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Mindray Bio Medical Electronics Co Ltd
Original Assignee
Shenzhen Mindray Bio Medical Electronics Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shenzhen Mindray Bio Medical Electronics Co Ltd filed Critical Shenzhen Mindray Bio Medical Electronics Co Ltd
Priority to PCT/CN2024/102690 priority Critical patent/WO2026000412A1/zh
Publication of WO2026000412A1 publication Critical patent/WO2026000412A1/zh
Pending legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/60ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices

Definitions

  • This application relates to the field of medical devices, and more particularly to a patient diagnosis and treatment information system and information processing method.
  • the current treatment strategy is guided by individualized patient goals. Therefore, during the implementation of this strategy, it is necessary to dynamically, comprehensively, and systematically manage various monitoring parameters of the patient, taking into account the individual patient's treatment goals.
  • medical staff periodically set monitoring indicators for various relevant parameters and distribute these indicators to other relevant medical personnel through paper records. During the treatment process, these personnel record the monitoring values at the patient's bedside, on a whiteboard, or on paper materials. Then, by summarizing the monitoring values, the achievement of the treatment goals is determined, thereby identifying whether further adjustments to the patient's treatment goals are necessary.
  • embodiments of this application provide a patient diagnosis and treatment information system and an information processing method.
  • This application provides a patient diagnosis and treatment information system, which includes a processor, a communication module, and a display screen, wherein the communication module and the display screen are respectively communicatively connected to the processor.
  • the communication module is used to acquire monitoring values of various monitoring parameters of the patient collected or generated by multiple medical devices, and transmit the acquired monitoring values to the processor;
  • the processor is used for:
  • the display screen is controlled to simultaneously display treatment task information, the monitoring values of at least one of the multiple monitoring parameters at multiple times, and the corresponding monitoring line data of the at least one monitoring parameter on its display interface, so as to show whether the monitoring values at multiple times fall within or outside the reference range of the corresponding monitoring line data.
  • the treatment task information is used to prompt medical staff to implement corresponding treatment. Treatment task;
  • the monitoring values of at least one monitoring parameter obtained within a preset time period are statistically analyzed to obtain statistical analysis results, and the display screen is controlled to output the statistical analysis results on its display interface; wherein, the statistical analysis results include at least the following: the result obtained by comparing multiple monitoring values of the at least one monitoring parameter obtained within the preset time period with the monitoring line data corresponding to the monitoring parameter.
  • This application also provides an information processing method, including:
  • the display interface simultaneously displays diagnosis and treatment task information, the monitoring value of at least one of the multiple monitoring parameters at multiple times, and the monitoring line data corresponding to the at least one monitoring parameter, so as to show whether the monitoring value at multiple times falls within or outside the reference range of the corresponding monitoring line data.
  • the diagnosis and treatment task information is used to prompt medical staff to carry out the corresponding diagnosis and treatment tasks.
  • the monitoring values of at least one monitoring parameter obtained within a preset time period are statistically analyzed to obtain statistical analysis results, and the statistical analysis results are output on the display interface; wherein, the statistical analysis results include at least the following: the results obtained by comparing multiple monitoring values of the at least one monitoring parameter obtained within the preset time period with the monitoring line data corresponding to the monitoring parameter.
  • the system can display the relative relationship between the patient's monitoring parameter values and the corresponding monitoring baseline data in real time on the display interface during the implementation of the diagnosis and treatment strategy. Combined with the display of diagnosis and treatment task information, this achieves dynamic presentation of the patient's monitoring information. Furthermore, after the completion of the current stage of treatment, statistical analysis can be performed on the monitoring values of the relevant patient monitoring parameters obtained during the implementation of the diagnosis and treatment strategy within a preset time period, along with the corresponding monitoring baseline data.
  • the statistical analysis results are then displayed on the interface, helping medical staff to efficiently evaluate the achievement of the diagnosis and treatment goals and determine whether to further adjust the monitoring baseline data or the diagnosis and treatment strategy as needed. Based on this, the next stage of the diagnosis and treatment strategy implementation process may be executed.
  • the entire business process of the aforementioned patient diagnosis and treatment information system is cyclical, and the monitoring baseline data, monitoring values, statistical analysis results, and other information involved in the entire business process are interconnected, improving the efficiency of information management in the patient's diagnosis and treatment process, and thus improving the efficiency of optimizing the diagnosis and treatment goals.
  • This application embodiment also provides a patient diagnosis and treatment information system, which includes: a processor, a communication module, and a display screen, wherein the communication module and the display screen are respectively communicatively connected to the processor;
  • the communication module acquires monitoring values of various monitoring parameters of the patient collected or generated by multiple medical devices, and transmits the acquired monitoring values to the processor;
  • the processor is used for:
  • the display screen is controlled to simultaneously display treatment task information and the monitoring value of at least one of the multiple monitoring parameters at multiple times on its display interface.
  • the treatment task information is used to prompt medical staff to perform corresponding treatment tasks.
  • the monitoring values of at least one monitoring parameter acquired within a preset time period are statistically analyzed to obtain statistical analysis results, and the display screen is controlled to output the statistical analysis results on its display interface; wherein, the statistical analysis results include at least the following: the result obtained by comparing multiple monitoring values of at least one monitoring parameter acquired within the preset time period with the monitoring line data corresponding to the monitoring parameter;
  • the step of controlling the display screen to display the monitoring value of at least one of the multiple monitoring parameters at multiple times on its display interface includes: when the monitoring value of the at least one monitoring parameter falls within the corresponding reference range, controlling the display screen to display the monitoring value on its display interface in a first display configuration; and when the monitoring value of the at least one monitoring parameter falls outside the corresponding reference range, controlling the display screen to display the monitoring value on its display interface in a second display configuration, wherein the first display configuration is different from the second display configuration.
  • This application also provides an information processing method, including:
  • the monitoring baseline data corresponding to each of the patient's various monitoring parameters are determined, and the monitoring baseline data is used to define the reference range of the corresponding monitoring parameter;
  • the display interface simultaneously displays diagnostic and treatment task information and the monitoring values of at least one of the multiple monitoring parameters at multiple times.
  • the diagnostic and treatment task information is used to prompt medical staff to perform corresponding diagnostic and treatment tasks.
  • the monitoring values of at least one monitoring parameter obtained within a preset time period are statistically analyzed to obtain statistical analysis results, and the statistical analysis results are output on the display interface; wherein, the statistical analysis results include at least the following: the result obtained by comparing multiple monitoring values of at least one monitoring parameter obtained within the preset time period with the monitoring line data corresponding to the monitoring parameter;
  • the step of displaying the monitoring value of at least one of the multiple monitoring parameters at multiple times on the display interface includes: displaying the monitoring value on the display interface with a first display configuration when the monitoring value of the at least one monitoring parameter falls within the corresponding reference range, and displaying the monitoring value on the display interface with a second display configuration when the monitoring value of the at least one monitoring parameter falls outside the corresponding reference range, wherein the first display configuration and the second display configuration are different.
  • the system can simultaneously display the patient's monitoring parameter values and diagnosis and treatment task information on the display interface during the implementation of the diagnosis and treatment strategy. Furthermore, it differentiates between monitoring values exceeding and not exceeding the corresponding monitoring baseline data, helping medical staff to view the patient's diagnosis and treatment information in real time. Based on this differentiated display of monitoring values, medical staff can promptly identify situations where monitoring values exceed the monitoring baseline data, thereby taking timely intervention measures.
  • the entire business process of the aforementioned patient diagnosis and treatment information system can be cyclically executed, and the monitoring baseline data, monitoring values, statistical analysis results, and other information involved in the entire business process are interconnected, improving the efficiency of information management in the patient's diagnosis and treatment process, and thus improving the diagnosis and treatment... Optimization efficiency of the objective.
  • This application embodiment also provides a patient diagnosis and treatment information system, which includes: a processor, a communication module, and a display screen, wherein the communication module and the display screen are respectively communicatively connected to the processor;
  • the communication module is used to acquire monitoring values of various monitoring parameters of the patient collected or generated by multiple medical devices, and transmit the acquired monitoring values to the processor;
  • the processor is used for:
  • the monitoring baseline data for each of the multiple monitoring parameters of the patient is determined, and the monitoring baseline data includes: a first reference interval and a second reference interval; wherein, the first reference interval represents the range within which the patient's monitoring value for the corresponding monitoring parameter is expected to fall; and the second reference interval represents the acceptable range of the patient's monitoring value for the corresponding monitoring parameter.
  • the display screen is controlled to show the monitoring value of at least one of the multiple monitoring parameters at multiple times;
  • the display screen is controlled to display the first reference range and the second reference range of the specific monitoring parameter.
  • the display screen displays the monitoring value of at least one of the multiple monitoring parameters at multiple times, including: when the monitoring value of at least one of the multiple monitoring parameters falls within the corresponding first reference interval, controlling the display screen to display the monitoring value in a first display configuration; and when the monitoring value of at least one monitoring parameter falls outside the corresponding first reference interval, controlling the display screen to display the monitoring value in a second display configuration, wherein the first display configuration and the second display configuration are different.
  • This application also provides an information processing method, characterized in that it includes:
  • the monitoring baseline data for each of the patient's various monitoring parameters is determined.
  • the monitoring baseline data includes a first reference interval and a second reference interval.
  • the first reference interval represents the expected range within which the patient's monitoring value for the corresponding monitoring parameter is expected to fall.
  • the second reference interval represents the acceptable range within which the patient's monitoring value for the corresponding monitoring parameter is expected to fall.
  • the first reference interval and the second reference interval of the specific monitoring parameter are displayed.
  • the step of displaying the monitoring value of at least one of the multiple monitoring parameters at multiple times includes: displaying the monitoring value in a first display configuration when the monitoring value of at least one of the multiple monitoring parameters falls within the corresponding first reference interval, and displaying the monitoring value in a second display configuration when the monitoring value of at least one monitoring parameter falls outside the corresponding first reference interval, wherein the first display configuration and the second display configuration are different.
  • the system can simultaneously display the patient's monitoring parameter values and diagnosis and treatment task information on the display interface during the implementation of the diagnosis and treatment strategy. Furthermore, it differentiates between monitoring values exceeding and not exceeding the corresponding monitoring benchmark data, helping medical staff to view the patient's diagnosis and treatment information in real time. Based on this differentiated presentation of monitoring values, medical staff can promptly obtain information on monitoring values exceeding the monitoring benchmark data.
  • the interface displays the monitoring data to allow for timely intervention. Furthermore, for specific monitoring parameters that meet set conditions, it automatically displays two types of monitoring line data: the first reference interval and the second reference interval. This helps medical staff to view the real-time relative relationship between the monitoring values of these parameters and the corresponding monitoring line data in a more detailed and intuitive way, enabling them to take more timely and accurate interventions and thus improving the efficiency of optimizing treatment goals.
  • Figure 1 is a system architecture example diagram of a patient diagnosis and treatment information system according to an embodiment of this application;
  • Figure 2 is an example of another system architecture of the patient diagnosis and treatment information system according to an embodiment of this application.
  • FIG. 3 is a schematic diagram of the processing logic of the patient diagnosis and treatment information system according to an embodiment of this application;
  • Figure 4 is a schematic diagram of the display interface for setting treatment goals in the patient diagnosis and treatment information system according to an embodiment of this application;
  • Figure 5 is a schematic diagram of a display interface of the patient diagnosis and treatment information system implementation process according to an embodiment of this application;
  • Figure 6 is a schematic diagram of another display interface of the patient diagnosis and treatment information system implementation process according to an embodiment of this application.
  • Figure 7 is an example trend chart of a patient diagnosis and treatment information system according to an embodiment of this application.
  • Figure 8 is another example of a trend chart for the patient diagnosis and treatment information system according to an embodiment of this application.
  • Figure 9 is a schematic diagram of the display interface of the patient diagnosis and treatment information system in this application, showing the statistical analysis results
  • Figure 10 is an example bar chart of a patient diagnosis and treatment information system according to an embodiment of this application.
  • This application provides a patient diagnosis and treatment information system, which includes a processor, a communication module, and a display screen.
  • the communication module and the display screen are respectively connected to the processor for communication; that is, the communication module is connected to the processor for communication, and the display screen is connected to the processor for communication.
  • the processor 11, communication module 12, and display screen 13 of the patient diagnosis and treatment information system can be deployed in different physical devices and interconnected through networking.
  • the processor 11 can be deployed as a server, performing information processing tasks related to the embodiments of this application based on high computing performance.
  • the communication module 12 can be deployed independently as a gateway, interacting with the processor 11 through any form of wired network, wireless network, mobile communication network, or a combination thereof.
  • the display screen 13 is used to display the operation interface of the patient diagnosis and treatment information system.
  • the display screen 13 is equipped with a touch panel and is also used to detect or receive user operations on the operation interface of the patient diagnosis and treatment information system.
  • FIG. 2 another system architecture example of a patient care information system can be deployed in a single physical device, where the processor 21, communication module 22, and display screen 23 are coupled together via a bus system.
  • the bus system is used to implement the processor 21, communication module 22, and...
  • the communication between the displays 23 includes a bus system that, in addition to a data bus, also includes a power bus, a control bus, and a status information bus.
  • the processor 21 can be a general-purpose processor, a digital signal processor (DSP), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc.
  • the general-purpose processor can be a microprocessor or any conventional processor.
  • the communication module is used to acquire monitoring values of various monitoring parameters of the patient collected or generated by multiple medical devices, and transmit the acquired monitoring values to the processor.
  • the communication module establishes communication connections with multiple medical devices, using any form of wired network, wireless network, mobile communication network, or combination thereof, and realizes information interaction with the medical devices based on the communication protocols supported by the corresponding medical devices.
  • the medical devices that establish a communication connection with the communication module include, but are not limited to, patient monitors, ventilators, and infusion pumps.
  • the communication module acquires monitoring parameters collected or generated by the medical devices, including physiological parameters of the patient collected by the medical devices, and/or monitoring parameters generated by the medical devices, i.e., monitoring parameters configured on the medical devices.
  • the communication module acquires physiological parameters of the patient collected by the patient monitor, such as electrocardiogram, heart rate, respiration, blood pressure, and body temperature; the communication module acquires minute ventilation, pressure limits, respiratory rate, and humidity levels of the ventilator; and the communication module acquires the injection mode, occlusion level, injection rate setting range, and preset volume of the infusion pump.
  • the processor can control the display screen to provide a corresponding interactive interface on the display screen. Through this interactive interface, instructions can be issued to enable the communication module to establish a communication connection with the corresponding medical device.
  • the device number of the corresponding medical device and the time of communication connection establishment can be entered on the interactive interface so that the patient diagnosis and treatment information system can clearly understand the relevant information of each medical device. Based on this, the relevant information of each medical device that has established a communication connection can be managed.
  • PDCA Plan-Do-Check-Act
  • Goal management refers to the comparative analysis of a patient's condition based on target values of multiple parameters during intensive care, enabling a scientific and timely assessment of the patient's condition and providing a basis for subsequent adjustments to diagnostic and treatment strategies.
  • the PDCA logic as shown in Figure 3, specifically refers to the following in "goal management”:
  • Goal setting which involves monitoring baseline data and formulating treatment strategies, specifically involves medical staff making a complete and objective assessment of the patient's condition to set phased goals based on the patient's individualized status.
  • nursing staff focus on monitoring parameters related to patient care, while physicians pay close attention to respiratory and examination parameters.
  • Process Management which is the implementation process of the diagnosis and treatment strategy, allows monitoring parameters to fluctuate within a certain acceptable range. During this process, nursing staff can adjust treatment measures or intervention measures as appropriate to maintain the fluctuation of the key monitoring parameters within an acceptable range.
  • Strategy Adjustment Specifically, medical staff assess the current treatment effectiveness by analyzing changes in the patient's individual condition and the achievement of treatment goals obtained during statistical analysis, and then adjust the strategy accordingly. Individualized treatment and intervention measures are implemented for patients, including adjustments to monitoring baseline data.
  • the processor's execution logic is as follows:
  • the processor determines the monitoring benchmark data corresponding to each of the patient's various monitoring parameters, and the monitoring benchmark data is used to define the reference range of the corresponding monitoring parameter;
  • the processor controls the display screen to simultaneously display treatment task information, the monitoring value of at least one of the multiple monitoring parameters at multiple times, and the monitoring line data corresponding to the at least one monitoring parameter on its display interface, so as to show whether the monitoring value at multiple times falls within or outside the reference range of the corresponding monitoring line data.
  • the treatment task information is used to prompt medical staff to carry out the corresponding treatment tasks.
  • the processor performs statistical analysis on the monitoring values of the at least one monitoring parameter obtained within a preset time period to obtain statistical analysis results, and controls the display screen to output the statistical analysis results on its display interface; wherein, the statistical analysis results include at least the result obtained by comparing multiple monitoring values of the at least one monitoring parameter obtained within the preset time period with the monitoring line data corresponding to the monitoring parameter.
  • the strategy adjustment phase can be executed based on statistical analysis results, allowing for individualized adjustments to treatment and intervention measures for each patient. This includes adjusting monitoring baseline data and then cyclically re-entering the goal setting phase to implement the next round of treatment strategy.
  • medical staff can adjust the monitoring baseline data in real time based on the monitoring parameters displayed on the interface during the implementation of the treatment strategy.
  • the patient treatment information system will immediately execute the aforementioned PDCA logic based on the adjusted monitoring baseline data, thereby achieving dynamic adjustment of the patient treatment strategy and improving the optimization efficiency of treatment goals.
  • the first step is to determine the patient's treatment goals.
  • the processor controls the display screen to simultaneously display treatment task information, the monitoring values of at least one monitoring parameter at multiple times, and the corresponding monitoring line data for that parameter.
  • the display of treatment task information prompts medical staff to perform corresponding treatment operations.
  • the monitoring line data corresponding to the monitoring parameter includes:
  • First reference interval and/or second reference interval are first reference interval and/or second reference interval.
  • the first reference interval represents the expected range of the patient's monitored values on the corresponding monitoring parameters; the second reference interval represents the acceptable range of the patient's monitored values on the corresponding monitoring parameters.
  • the second reference interval generally covers the first reference interval, but in some special cases, the two may not have a fixed correspondence, and they may only partially overlap or not overlap at all.
  • the first reference interval is derived from the patient's treatment goals and represents the expected range of monitored values for the corresponding monitoring parameter. In other words, it's the range of monitored values that healthcare professionals expect the patient to achieve at the end of the entire treatment process or at the end of a phase; it can also be understood as the target value range for the corresponding monitoring parameter.
  • the second reference interval is determined based on alarm limits for the monitoring parameter in relevant clinical practice guidelines, or it can be determined based on the patient's real-time individualized condition combined with alarm limits for the monitoring parameter in relevant clinical practice guidelines. It can also be understood as the alarm value range for the corresponding monitoring parameter; monitored values exceeding this second reference interval are considered clinically unacceptable.
  • a first reference range can be set to 70-120 bpm, which is the range of heart rate values that medical staff expect patients to reach after the treatment phase.
  • a second reference range can be set to 60-130 bpm. Heart rate values exceeding the second reference range will trigger an alarm.
  • the second reference interval covers the first reference interval. Based on the definitions of the first and second reference intervals above, in clinical practice, if the monitored value is within the first reference interval, it is considered the expected monitored value; if the monitored value is outside the first reference interval but within the second reference interval, it is considered to be a monitored value fluctuating within a safe range; if the monitored value is outside the second reference interval, it is considered that appropriate intervention measures need to be taken to control the monitored value to at least be within the second reference interval.
  • the monitoring line data corresponding to the monitoring parameters may include only the first reference interval, or only the second reference interval. Medical staff can determine the type of monitoring line data according to the actual diagnosis and treatment needs.
  • monitoring parameters for the monitoring baseline data including but not limited to vital sign parameters, operating parameters of medical equipment, reference ranges for laboratory tests, dosage of therapeutic drugs, and relevant parameters of fluid balance and energy metabolism.
  • relevant treatment plan such as a detailed treatment plan, the drugs to be used, the model of the medical equipment to be used, a detailed monitoring plan, and laboratory tests, etc.
  • medical staff can set monitoring marker data in the patient treatment information system or on related medical devices. Based on the communication connection between the communication module and the medical device, the monitoring marker data set on the patient treatment information system will be pushed to the related medical device, or vice versa. This ensures the synchronization of monitoring marker data between the patient treatment information system and the medical device, eliminating the need for medical staff to repeatedly set monitoring marker data across multiple devices.
  • the automatic synchronization process also avoids potential errors caused by manual settings, improving the efficiency and accuracy of equipment operation during the treatment process and ensuring the treatment effect.
  • the processor is further configured to: retain at least a portion of the shared monitoring parameters between the patient diagnosis and treatment information system and the multiple medical devices.
  • the corresponding monitoring line data is synchronized between the patient diagnosis and treatment information system and the multiple medical devices.
  • the plurality of medical devices includes a first medical device and a second medical device.
  • the first medical device has monitoring calibration data corresponding to a first monitoring parameter among the at least partially shared monitoring parameters.
  • the second medical device has monitoring calibration data corresponding to a second monitoring parameter among the at least partially shared monitoring parameters. Maintaining synchronization between the patient treatment information system and the plurality of medical devices for the shared monitoring parameters includes:
  • the processor modifies the monitoring calibration data corresponding to the first monitoring parameter in the patient treatment information system, and controls the communication module to push the modified monitoring calibration data to the first medical device; and/or,
  • the processor modifies the monitoring line data corresponding to the second monitoring parameter in the patient diagnosis and treatment information system.
  • modifying the monitoring line data corresponding to the monitoring parameters in the patient's medical information system or in the relevant medical equipment can be understood as adjusting or updating the original monitoring line data based on the original monitoring line data corresponding to the monitoring parameters in the patient's medical information system or in the relevant medical equipment. It can also be understood as configuring monitoring line data for the monitoring parameters when the monitoring line data corresponding to the monitoring parameters in the patient's medical information system or in the relevant medical equipment is empty, that is, when the monitoring parameters are not configured with monitoring line data.
  • the monitoring data set on medical devices is usually confirmed by the medical personnel actually operating the devices. Therefore, this monitoring data takes effect immediately after being pushed to the patient's medical information system.
  • monitoring data set in the patient's medical information system after being pushed to the relevant medical devices, needs to be confirmed by the medical personnel actually operating the devices before it takes effect to avoid the monitoring data not reflecting the patient's actual medical condition.
  • the first medical device pops up a configuration window for the monitoring line data in the operation interface; the configuration window displays at least the modified monitoring line data.
  • the first medical device After detecting a confirmation command regarding the modified monitoring line data, the first medical device modifies the monitoring line data corresponding to the first monitoring parameter within the device.
  • the first monitoring line data set on the patient's medical information system is pushed to the first medical device, if a confirmation command for the first monitoring line data is detected in the configuration window that pops up on the first medical device's operation interface, then the first monitoring line data takes effect immediately on the first medical device.
  • the medical staff actually operating the first medical device can also modify the first monitoring line data in the configuration window.
  • the modified first monitoring line data takes effect immediately on the first medical device.
  • the modified first monitoring line data is pushed to the patient's medical information system.
  • the processor responds to the modified first monitoring line data and sets the modified first monitoring line data for the first monitoring parameter in the patient's medical information system.
  • the efficiency of setting monitoring calibration data in the patient's medical information system can be improved by setting a linkage between the first and second reference intervals. This also helps to ensure the accuracy of the monitoring calibration data to a certain extent. The accuracy of the settings.
  • the first instruction is used to set a first reference interval corresponding to the first monitoring parameter
  • the processor modifies the monitoring caliper data corresponding to the first monitoring parameter in the patient medical information system, including:
  • the processor modifies the first reference interval corresponding to the first monitoring parameter in the patient diagnosis and treatment information system;
  • a linkage setting operation After modifying the first reference interval corresponding to the first monitoring parameter, a linkage setting operation is triggered.
  • the linkage setting operation sets the second reference interval corresponding to the first monitoring parameter based on the adjustment parameter corresponding to the first monitoring parameter and the modified first reference interval.
  • the linkage setting operation can automatically modify the second reference interval while modifying the first reference interval, and ensure the rationality of the automatically modified second reference interval.
  • setting the second reference interval corresponding to the first monitoring parameter based on the adjustment parameter corresponding to the first monitoring parameter and the modified first reference interval includes:
  • the upper limit and/or lower limit of the first reference interval are adjusted to set the second reference interval.
  • the adjustment parameters include: adjustment value or adjustment percentage.
  • a first reference interval is set for mean arterial pressure (MAP), with an upper limit of 120 mmHg and a lower limit of 60 mmHg.
  • the adjustment parameter for this monitoring parameter is 10 mmHg above both the upper and lower limits.
  • a second reference interval for MAP is automatically generated, with an upper limit of 130 mmHg and a lower limit of 50 mmHg.
  • the corresponding adjustment parameter is the upper and lower limits of the first reference interval plus 1. This adjustment parameter is different from the adjustment parameter corresponding to MAP in the example above, thus ensuring the rationality of the setting of the second reference interval for different monitoring parameters.
  • triggering the linkage setting operation after modifying the first reference interval corresponding to the first monitoring parameter includes:
  • the linkage setting operation is triggered.
  • the first function When the first function is enabled, it allows the following to be triggered after the first reference range is modified. Linked settings operation.
  • the linkage setting operation is not allowed to be triggered after the first reference interval has been modified.
  • this function can be enabled or disabled for different monitoring parameters, thereby achieving a more flexible setting scheme for monitoring gradation data.
  • Figure 4 shows an example of setting monitoring benchmark data on the display interface of a patient diagnosis and treatment information system.
  • Figure 4 shows the monitoring benchmark data setting interface corresponding to the monitoring parameters of the nervous system and the circulatory system.
  • the first reference intervals namely the target upper limit and target lower limit, of the relevant monitoring parameters MAP and Temp of the nervous system and the relevant monitoring parameter MAP of the circulatory system have been updated. Therefore, in Figure 4, the target upper limit and target lower limit of the monitoring parameters MAP and Temp under the nervous system category, and the target lower limit of the monitoring parameters HR, target upper limit and target lower limit of MAP under the circulatory system category are all bolded and enlarged to indicate to medical staff that the values have changed.
  • the first function is enabled or disabled via a checkbox control for "Whether to adjust alarm limits in conjunction with other functions."
  • the first function is enabled.
  • the monitoring parameter MAP under the circulatory system category since its target upper and lower limits have been updated, the corresponding second reference interval of MAP, i.e., the alarm upper and lower limits, have also been updated. Therefore, the values corresponding to the alarm upper and lower limits of MAP are bolded and enlarged to indicate to medical staff that the values have changed.
  • the checkbox control for "Whether to adjust alarm limits in conjunction with other functions" for the monitoring parameter Temp under the nervous system category is not selected. Therefore, although the target upper and lower limits of Temp have been updated, the values of the alarm upper and lower limits of Temp do not change.
  • the planning process of the patient's diagnosis and treatment strategy was completed, and on this basis, the implementation process was carried out based on the diagnosis and treatment strategy.
  • the processor controls the display screen to simultaneously display treatment task information, the monitoring values of at least one monitoring parameter at multiple times, and the corresponding monitoring line data for that parameter.
  • the display of treatment task information prompts medical staff to perform corresponding treatment operations.
  • the left side of the interface shows the patient's treatment task information during the implementation process, helping medical staff to clearly understand the current treatment tasks.
  • the execution items corresponding to the current patient are listed, and each item is distinguished by different marks, allowing medical staff to clearly identify whether the corresponding item is "pending" or "completed".
  • the right side of the interface shows the monitoring values of various monitoring parameters for the patient at multiple times. In the example in Figure 5, the monitoring values of each monitoring parameter at multiple times are displayed as trend lines.
  • controlling the display screen to display the monitoring values of the at least one monitoring parameter at multiple times on its display interface includes:
  • the display screen When the monitored value of at least one monitoring parameter falls within the corresponding reference range, the display screen is controlled to display the monitored value on its display interface in a first display configuration; and when the monitored value of at least one monitoring parameter falls outside the corresponding reference range, the display screen is controlled to display the monitored value on its display interface in a second display configuration, wherein the first display configuration is different from the second display configuration.
  • a display configuration is provided to distinguish between monitoring values that fall within the corresponding reference range and those that fall outside the corresponding reference range.
  • the first display configuration includes a first color
  • the second display configuration includes a second color
  • the first display configuration includes a first font
  • the second display configuration includes a second font
  • the first display configuration includes a first font size
  • the second display configuration includes a second font size
  • the first display configuration includes not displaying an additional marker for the monitored value
  • the second display configuration includes displaying an additional marker for the monitored value
  • each data table corresponds to multiple monitoring parameters under a monitoring parameter category.
  • Each row represents the monitoring value of a monitoring parameter at multiple times
  • each column in the corresponding row represents the monitoring value of the corresponding monitoring parameter at each of the multiple times.
  • the monitored values falling within the corresponding reference range are displayed in a first color, and the second monitored values are displayed in a second color; and/or,
  • the monitored values falling within the corresponding reference range are displayed in the first font, and the second monitored values are displayed in the second font; and/or,
  • the monitoring values falling within the corresponding reference range are displayed in the first font size, and the monitoring values falling outside the corresponding reference range are displayed in the second font size; and/or,
  • Additional markers are not displayed for monitoring values that fall within the corresponding reference range, and additional markers are displayed for monitoring values that fall outside the corresponding reference range.
  • monitoring values falling within the corresponding reference range can be marked in green, and those falling outside the corresponding reference range can be marked in red.
  • monitoring values falling within the corresponding reference range can be marked in normal font, and those falling outside the corresponding reference range can be marked in bold font.
  • monitoring values falling within the corresponding reference range can be marked in smaller font, and those falling outside the corresponding reference range can be marked in larger font.
  • an arrow can be marked next to monitoring values falling within the corresponding reference range, without adding any additional markings for those falling outside the corresponding reference range. All of these methods can display monitoring values exceeding the monitoring threshold data with a more significant visual effect, allowing medical staff to intuitively observe monitoring values exceeding the numerical range corresponding to the monitoring threshold data, thereby enabling timely intervention.
  • different settings can be selected based on whether the monitored value exceeds the upper or lower limit of the corresponding reference range. Additional markers are displayed. For example, for a monitoring value that exceeds the upper limit of the corresponding reference interval, an upward arrow is displayed next to the monitoring value; for a monitoring value that exceeds the lower limit of the corresponding reference interval, a downward arrow is displayed next to the monitoring value. This helps medical staff to more intuitively understand the specific situation of the monitoring value exceeding the reference interval corresponding to the monitoring mark data.
  • the monitoring values of the parameter Temp at multiple times are shown.
  • the monitoring values that exceed the target reference range are displayed in bold and large font to alert medical staff that the patient's body temperature is abnormal.
  • controlling the display screen to display the monitoring values of at least one monitoring parameter at multiple times and the corresponding monitoring line data on its display interface includes:
  • the display screen is controlled to show a trend line corresponding to the monitoring values of the at least one monitoring parameter at the plurality of times on its display interface, so as to present the monitoring values of the at least one monitoring parameter at the plurality of times;
  • the display screen is controlled to present the reference range corresponding to the at least one monitoring parameter on its display interface through filled areas and/or lines.
  • the acquisition time or generation time corresponding to the monitoring parameter is used as the horizontal axis
  • the monitoring value corresponding to the monitoring parameter is used as the vertical axis to draw a trend line for each monitoring parameter.
  • the monitoring line data corresponding to that monitoring parameter is marked with a filled area and/or a marker. This clearly shows the relative magnitude relationship between the monitoring value of each monitoring parameter at multiple times and the corresponding monitoring line data, allowing medical personnel to intuitively observe from the display interface whether the monitoring value exceeds the numerical range corresponding to the monitoring line data.
  • a trend line for one monitoring parameter can be displayed on a single trend chart, or trend lines for multiple monitoring parameters can be displayed simultaneously on the same trend chart.
  • trend lines for multiple monitoring parameters can be plotted on the same coordinate axis. For example, in Figure 5, the trend lines for the four monitoring parameters selected by medical staff under the category "CRRT" are simultaneously presented on a single trend chart. This method of categorizing and displaying the monitoring values of parameters through multiple charts helps medical staff quickly view and understand the relevant monitoring information.
  • the display interface of the patient treatment information system allows medical staff to define the monitoring parameters to be displayed. For example, under the monitoring parameter category "CRRT,” all monitoring parameters that can be plotted in this chart are displayed. Medical staff can select the corresponding monitoring parameters and choose to plot all or some of the trend lines corresponding to these monitoring parameters in the chart. Based on the above interaction method, medical staff can filter information, so that the display interface only shows the monitoring information that they need to focus on, avoiding information redundancy and helping medical staff quickly obtain the information they need.
  • CRRT monitoring parameter category
  • the display configuration can also differentiate between monitoring values falling within and outside the corresponding reference interval.
  • the trend line is:
  • the portion of the trend line that does not exceed the corresponding reference range is displayed in a first color, and the portion of the trend line that exceeds the corresponding reference range is displayed in a second color; and/or,
  • the monitoring values on the trend line that do not exceed the corresponding reference range are displayed in the first font, and the monitoring values on the trend line that exceed the corresponding reference range are displayed in the second font; and/or,
  • the first font size displays the monitoring values on the trend line that do not exceed the corresponding reference range
  • the second font size displays the monitoring values on the trend line that exceed the corresponding reference range
  • the trend lines for the three monitoring parameters are displayed on the same trend graph. Furthermore, for monitoring values that exceed the corresponding reference range, a triangle is added as an additional marker at the location of the monitoring value on the trend line.
  • the trend lines of the five monitoring parameters are displayed in the same trend graph. Furthermore, when the trend line of the monitoring parameter Lac is selected, the second reference interval corresponding to the monitoring parameter is displayed in the trend graph with a shaded area.
  • the display configuration for the same monitoring parameter when its value exceeds the first reference interval can differ from the display configuration when it exceeds the second reference interval.
  • the visual effect when the monitoring value exceeds the second reference interval can be stronger than the visual effect when the monitoring value exceeds the first reference interval, thus providing a more prominent indication of the monitoring value exceeding the second reference interval.
  • the corresponding filling areas can be drawn using color filling, line filling, or pattern filling.
  • the fill color and/or lines and/or patterns can be made transparent or grayscale, so that the filled areas exist as the background of the trend lines and do not affect the display of the trend lines.
  • the filled areas corresponding to different monitoring parameters are filled with different colors and/or different shapes of lines and/or different patterns, thereby achieving differentiation between the monitoring line data of different monitoring parameters.
  • the first and second reference intervals of the same monitoring parameter can also be filled with different colors and/or different shapes of lines and/or different patterns in the filled areas, thereby achieving visual differentiation between the first and second reference intervals.
  • the first reference interval 0.8 to 1.9 corresponding to the monitoring parameter is drawn with a green filled area
  • the second reference interval 0.6 to 2.1 corresponding to the monitoring parameter is drawn with a gray filled area, thereby achieving visual distinction between the two reference intervals.
  • the monitoring line data corresponding to monitoring parameters can be drawn using predefined colors and/or line widths. Furthermore, when displaying monitoring line data for multiple monitoring parameters and monitoring values at multiple times on the interface, different colors and/or line widths are used to draw the lines corresponding to different monitoring parameters, thus distinguishing the monitoring line data between different monitoring parameters. Additionally, when the monitoring line data includes a first reference interval and a second reference interval, the first and second reference intervals for the same monitoring parameter can also be drawn on the lines using different colors and/or line widths, thereby achieving visual distinction between the first and second reference intervals.
  • the lower limit of the first reference interval (0.8 and 1.9) corresponding to the monitoring parameter is drawn with green lines.
  • the lower limit of the second reference interval (0.6 and 2.1) corresponding to the monitoring parameter is drawn with gray lines, thereby achieving visual distinction between the two reference intervals.
  • the corresponding reference interval can also be defined based on both the filled area and the markings.
  • the processor is further configured to:
  • the display screen When a specific monitoring parameter that meets set conditions is detected among the at least one monitoring parameters, the display screen is controlled to present, on its display interface, the trend line corresponding to the specific monitoring parameter and the trend lines corresponding to other monitoring parameters besides the specific monitoring parameter, respectively, with different visual effects; wherein...
  • the setting conditions include:
  • a selection instruction for the specific monitoring parameter is detected; or, a monitoring value for the specific monitoring parameter at the multiple times is detected that falls outside the corresponding reference interval.
  • controlling the display screen to present trend lines corresponding to the specific monitoring parameter and trend lines corresponding to other monitoring parameters (excluding the specific monitoring parameter) on its display interface with different visual effects includes:
  • the trend line corresponding to the specific monitoring parameter is presented using a darker color visual effect, while the trend lines corresponding to other monitoring parameters besides the specific monitoring parameter are presented using a lighter color visual effect.
  • the trend line corresponding to the specific monitoring parameter is presented in a more saturated color, such as red.
  • the trend lines corresponding to other monitoring parameters are desaturated, for example, the trend lines corresponding to other monitoring parameters are drawn with low-saturation gray lines. This makes the trend line corresponding to the specific monitoring parameter stand out on the display interface, allowing users to quickly locate the monitoring value corresponding to the selected monitoring parameter or the monitoring parameter that needs attention or intervention on the display interface.
  • controlling the display screen to present trend lines corresponding to the specific monitoring parameter and trend lines corresponding to other monitoring parameters (excluding the specific monitoring parameter) on its display interface with different visual effects includes:
  • the trend line corresponding to the specific monitoring parameter is presented with a wider line width, and the trend line corresponding to other monitoring parameters besides the specific monitoring parameter is presented with a narrower line width.
  • trend lines corresponding to multiple monitoring parameters are plotted on the same chart.
  • users can select a specific monitoring parameter on the patient's medical information system display interface using selection tools such as a cursor, or by hovering the cursor over a trend line to select the monitoring parameter corresponding to that trend line as a specific monitoring parameter.
  • selection tools such as a cursor, or by hovering the cursor over a trend line to select the monitoring parameter corresponding to that trend line as a specific monitoring parameter.
  • the trend line corresponding to the specific monitoring parameter is displayed with a stronger visual effect, while other unselected specific monitoring parameters are displayed with a relatively weaker visual effect.
  • the trend line corresponding to the monitoring parameter Lac is displayed with a stronger visual effect, increasing the color saturation and line width of the trend line, while the trend lines corresponding to the monitoring parameters Temp, MAP, CVP, and Urine in the same chart are displayed with a relatively weaker visual effect.
  • the results show that the color saturation of the trend line was reduced and the line width was decreased.
  • the patient information system automatically displays a stronger visual effect for trend lines corresponding to monitoring parameters whose monitoring values fall outside their corresponding reference intervals, while displaying a relatively weaker visual effect for trend lines corresponding to monitoring parameters whose monitoring values all fall within their corresponding reference intervals.
  • the trend line corresponding to the monitoring parameter Lac is displayed with a stronger visual effect, increasing the color saturation and increasing the line width.
  • the trend lines corresponding to the monitoring parameters Temp, MAP, CVP, and Urine in the same chart are displayed with a relatively weaker visual effect, decreasing the color saturation and decreasing the line width.
  • the display screen maintains display configuration synchronization with the multiple medical devices. That is, controlling the display screen to simultaneously display diagnostic and treatment task information, the monitoring value of at least one of the multiple monitoring parameters at multiple times, and the monitoring line data corresponding to the at least one monitoring parameter on its display interface includes: controlling the display screen to display the monitoring value of the at least one monitoring parameter at multiple times and the monitoring line data corresponding to the at least one monitoring parameter on its display interface with the same image as the multiple medical devices.
  • the monitoring values of at least one monitoring parameter at multiple times and the corresponding monitoring line data for that parameter are displayed using the same image, presenting an effect similar to screen mirroring between two devices. It is worth noting that the specific technology used is not limited to "screen mirroring" technology.
  • the display configuration of at least one monitoring parameter in the patient treatment information system display interface at multiple times and the corresponding monitoring line data of the at least one monitoring parameter can be synchronized to the medical device.
  • the display configuration of the monitoring value of the relevant monitoring parameter and the monitoring line data in the medical device can be synchronized to the patient treatment information system display interface to maintain the consistency of the display configuration between the patient treatment information system and the medical device. This reduces the learning cost for medical staff in implementing treatment strategies for patients, ensures the speed of information reading, and reduces the information misreading rate. On this basis, the treatment effect for patients can be guaranteed more efficiently.
  • the display interface can present the "Statistical Analysis Results” along with the preceding "Treatment Task Information," the monitoring values of the monitoring parameters at multiple time points (which can be presented as trend charts), and the monitoring line data on the same screen.
  • different screens can be used to present the "Statistical Analysis Results,” the preceding "Treatment Task Information," the monitoring values of the monitoring parameters at multiple time points, and the monitoring line data separately.
  • the "Statistical Analysis Results” can be presented on the first display screen, while the “Treatment Task Information," the monitoring values of the monitoring parameters at multiple time points, and the monitoring line data can be presented on the second display screen.
  • the processor performs statistical analysis on at least one monitoring parameter in the display interface during the implementation of the diagnosis and treatment strategy, based on the monitoring value of the at least one monitoring parameter obtained within a preset time period, to obtain the statistical analysis result, and controls the display screen to output the statistical analysis result on its display interface.
  • the statistical analysis results include at least: the data obtained within the preset time period.
  • the result is obtained by comparing multiple monitoring values of a missing monitoring parameter with the monitoring line data corresponding to that monitoring parameter.
  • the system can statistically analyze and compare the monitoring values of relevant patient monitoring parameters obtained during the implementation of the diagnosis and treatment strategy within a preset time period with the corresponding monitoring benchmark data, and present the corresponding statistical analysis results on the display interface to help medical staff efficiently evaluate the achievement of diagnosis and treatment goals.
  • Figure 9 shows an example of a display interface for showing the results of statistical analysis.
  • controlling the display screen to output the statistical analysis results on its display interface includes:
  • the display screen is controlled to present, on its display interface, at least one graphic, a first reference interval corresponding to the one monitoring parameter and the distribution of multiple monitoring values of the one monitoring parameter within the preset time period, so as to present the deviation between the distribution of the multiple monitoring values of the one monitoring parameter and the first reference interval corresponding to the one monitoring parameter.
  • the first reference interval represents the expected range within which a patient's monitored values for a corresponding monitoring parameter are expected to fall, i.e., the treatment target for the patient on that monitoring parameter. Therefore, in this embodiment, the distribution of multiple monitored values of the monitoring parameter relative to the first reference interval of the monitoring parameter within a preset time period is presented graphically. This allows medical staff to intuitively obtain the achievement rate of the treatment strategy on that monitoring parameter from the displayed statistical results.
  • the achievement rate refers to the percentage of multiple monitored values within the corresponding first reference interval within the preset time period.
  • controlling the display screen to output the statistical analysis results on its display interface further includes:
  • the display screen is controlled to show the compliance rate of one of the monitoring parameters on its display interface, so as to present the ratio of the multiple monitoring values of one of the monitoring parameters falling within the first reference interval corresponding to one of the monitoring parameters within the preset time period.
  • the compliance rate is directly displayed on the interface, allowing medical staff to quickly obtain the compliance rate of the corresponding monitoring parameter.
  • they can gain a comprehensive understanding of the monitoring results for each of the at least one monitoring parameter throughout the entire treatment process. For example, by viewing the display interface, medical staff can first identify the monitoring parameters with lower compliance rates based on the displayed compliance rates, and then further understand the monitoring results of these parameters by combining this with the distribution of the lower compliance rates shown in the graph.
  • the graph showing the distribution of the same monitoring parameter and the corresponding compliance rate are displayed in the same area.
  • the distribution of the monitoring parameter HR and the compliance rate "89%" are displayed in the same area, which makes it easier for medical staff to intuitively establish the relationship between the various statistical analysis results corresponding to the same monitoring parameter when viewing the statistical analysis results, and quickly capture the information they need.
  • controlling the display screen to present, on its display interface, a first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period via at least one graphic includes: [the following is unclear and likely incomplete: "for presenting the distribution of the multiple monitoring values"]
  • the graphs of the situation use different visual effects to show the varying frequencies of the monitored values.
  • the frequency of the monitored value can also be understood as the frequency of the monitored value appearing on different values.
  • the distribution of the monitored value on different values is intuitively distinguished through visual differences.
  • distribution curves can be used to present the frequency of occurrence of monitoring parameters across different values.
  • the distribution curve plots the different values corresponding to the monitoring parameter within a preset time period on the x-axis, and the number of monitoring values obtained for each value on the y-axis. A larger y-axis indicates that the monitoring parameter's value appears more frequently at that value, while a smaller y-axis indicates that the monitoring parameter's value appears less frequently at that value. This visual difference in peak values through the distribution curve allows for a direct differentiation of the distribution of monitoring values across different values.
  • the corresponding first reference interval can be marked on the horizontal axis of the coordinate axis where the distribution curve is located, so that medical staff can intuitively obtain the compliance rate of the implementation of the treatment strategy on the monitoring parameter from the displayed statistical results.
  • the presentation of the different frequencies of the monitored values through different visual effects includes: presenting the display elements corresponding to the monitored values that appear more frequently through a darker color visual effect.
  • presenting the first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period through at least one graphic includes: presenting the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period using bar charts, wherein each scale bar in the bar chart represents a monitoring value.
  • each scale bar in the bar chart represents a monitoring value of the monitoring parameter. That is, if M monitoring values of the monitoring parameter are obtained within a preset time period, and these M monitoring values involve N different values, where M is greater than N, then the bar chart corresponding to the monitoring parameter contains N scale bars, and each scale bar represents the value of a monitoring value.
  • presenting the first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period through at least one graphic includes: presenting monitoring values falling within the first reference interval corresponding to one of the monitoring parameters and monitoring values falling outside the first reference interval corresponding to one of the monitoring parameters through different display methods.
  • the monitoring values falling within the first reference interval corresponding to one of the monitoring parameters and the first reference interval corresponding to one of the monitoring parameters are presented through different display methods.
  • the monitoring values outside the range include: scale bars that are displayed in a first color as the monitoring values falling within the first reference range corresponding to one of the monitoring parameters, and scale bars that are displayed in a second color as the monitoring values falling outside the first reference range corresponding to one of the monitoring parameters.
  • different colors are used to present the scale bars corresponding to the monitoring values that fall into the first reference interval and the scale bars corresponding to the monitoring values that do not fall into the first reference interval.
  • the scale bars corresponding to the monitoring values that fall into the first reference interval are presented in blue
  • the scale bars corresponding to the monitoring values that do not fall into the first reference interval are presented in gray, so as to clearly distinguish the first reference interval and the non-first reference interval in the bar chart.
  • displaying the scale bar corresponding to the monitoring value falling within the first reference interval corresponding to one of the monitoring parameters in a first color includes: displaying the scale bar corresponding to the monitoring value that appears more frequently in a darker first color;
  • the step of displaying the scale bar corresponding to the monitoring value that falls outside the first reference range corresponding to one of the monitoring parameters in a second color includes: displaying the scale bar corresponding to the monitoring value that appears more frequently in a darker second color.
  • the color intensity of each bar in the bar chart can be determined based on the number of monitored values corresponding to that bar. The more monitored values a bar corresponds to, the darker the color of that bar, or the higher the color saturation. Conversely, the fewer monitored values a bar corresponds to, the lighter the color of that bar, or the lower the color saturation.
  • the first reference range for the monitoring parameter HR is 80–100 bpm
  • bars with values falling within the 80–100 bpm range are displayed in blue
  • bars with values outside the 80–100 bpm range are displayed in gray.
  • more frequently occurring monitoring values are displayed in darker colors. For instance, more frequently occurring monitoring values within the 80–100 bpm range are displayed in dark blue, less frequently occurring values within the 80–100 bpm range are displayed in light blue, more frequently occurring values outside the 80–100 bpm range are displayed in dark gray, and less frequently occurring values outside the 80–100 bpm range are displayed in light gray.
  • two or more different levels of darkness can be set to present the frequency of each monitoring value with higher granularity.
  • presenting the first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period through at least one graph includes: presenting the first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period through a graph.
  • presenting the distribution of a first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values within the preset time period through at least one graph includes: presenting the distribution of a first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period through two graphs respectively.
  • the statistical analysis results corresponding to the implementation process of the diagnosis and treatment strategy are output on the display interface. Based on the statistical analysis results, medical staff can determine whether to further adjust the monitoring line data or the diagnosis and treatment strategy as needed, and may execute the next stage of the diagnosis and treatment strategy implementation process on this basis.
  • the processor is further configured to:
  • At least the monitoring caliper data corresponding to the at least one monitoring parameter is modified in the patient diagnosis and treatment information system.
  • the implementation principle is the same as that described above regarding the processor determining the monitoring calibration data corresponding to the various monitoring parameters of the patient.
  • the patient's medical information system and multiple medical devices need to maintain synchronization of the monitoring calibration data corresponding to at least some of the shared monitoring parameters. Therefore, after the processor responds to the second instruction input by the user in the patient's medical information system and modifies the monitoring calibration data corresponding to the relevant monitoring parameters in the patient's medical information system, it also needs to push the modified monitoring calibration data to the corresponding medical device via the communication module.
  • the medical device needs to push the modified monitoring calibration data to the patient's medical information system, and the processor, in response to the modified monitoring calibration data pushed by the medical device, modifies the corresponding monitoring calibration data in the patient's medical information system.
  • the display interface includes a first display interface and a second display interface.
  • Controlling the display screen to simultaneously display treatment task information, the monitoring values of at least one of the multiple monitoring parameters at multiple times, and the monitoring line data corresponding to the at least one monitoring parameter on its display interface includes: controlling the display screen to simultaneously display the treatment task information, the monitoring values of the at least one monitoring parameter at multiple times, and the monitoring line data corresponding to the at least one monitoring parameter on the first display interface;
  • controlling the display screen to output the statistical analysis results on its display interface includes: controlling the display screen to output the statistical analysis results on the second display interface.
  • the implementation process of the treatment strategy and the statistical analysis process of the treatment strategy can be presented through different display interfaces.
  • the implementation process and the statistical analysis process of the treatment strategy can be followed and viewed by different medical staff or users with different permissions.
  • modifying at least one monitoring parameter's corresponding monitoring line data in the patient diagnosis and treatment information system includes:
  • At least the monitoring caliper data corresponding to the at least one monitoring parameter is modified in the patient diagnosis and treatment information system.
  • medical staff can observe the relative size relationship between the monitoring value and the corresponding monitoring line data based on the diagnosis and treatment task information displayed simultaneously on the first display interface, the monitoring value of at least one of the multiple monitoring parameters at multiple times, and the monitoring line data corresponding to the at least one monitoring parameter. This allows them to directly modify the monitoring line data on the first display interface, improving the ease of operation.
  • the patient diagnosis and treatment information system determines the monitoring benchmark data corresponding to various monitoring parameters of the patient.
  • the patient treatment information system simultaneously displays treatment task information, the monitoring values of at least one of multiple monitoring parameters at various times, and the corresponding monitoring line data for that parameter on its interface.
  • the system statistically analyzes the monitoring values of the at least one parameter acquired within a preset time period to obtain statistical analysis results, which are then displayed on the interface. Based on these results, medical staff may adjust the monitoring line data and the corresponding treatment strategy to adjust the treatment objectives.
  • the treatment strategy is then reimplemented based on the adjusted objectives, and this process is repeated to continuously optimize the treatment objectives until the entire treatment process is completed. Furthermore, throughout the entire workflow of the patient treatment information system, the monitoring line data, monitoring values, statistical and comparison results are interconnected and dynamically updated, improving the efficiency of information management for the patient's treatment process.
  • this application also provides an information processing method applied to a processor in the patient diagnosis and treatment information system, the method comprising:
  • the display interface simultaneously displays diagnosis and treatment task information, the monitoring value of at least one of the multiple monitoring parameters at multiple times, and the monitoring line data corresponding to the at least one monitoring parameter, so as to show whether the monitoring value at multiple times falls within or outside the reference range of the corresponding monitoring line data.
  • the diagnosis and treatment task information is used to prompt medical staff to carry out the corresponding diagnosis and treatment tasks.
  • the monitoring values of at least one monitoring parameter obtained within a preset time period are statistically analyzed to obtain statistical analysis results, and the statistical analysis results are output on the display interface; wherein, the statistical analysis results include at least the following: the results obtained by comparing multiple monitoring values of the at least one monitoring parameter obtained within the preset time period with the monitoring line data corresponding to the monitoring parameter.
  • the monitoring line data corresponding to the monitoring parameter includes:
  • the first reference interval and/or the second reference interval wherein...
  • the first reference interval represents the range within which the patient's monitored values for the corresponding monitoring parameters are expected to fall; the second reference interval represents the acceptable range within which the patient's monitored values for the corresponding monitoring parameters are expected to fall.
  • each of the plurality of medical devices has a monitored value of one or more of the plurality of monitoring parameters and monitoring line data corresponding to the one or more monitoring parameters, and the method further includes:
  • the monitoring caliper data corresponding to at least some of the shared monitoring parameters shall be kept synchronized between the patient diagnosis and treatment information system and the multiple medical devices;
  • the plurality of medical devices includes a first medical device and a second medical device.
  • the first medical device has monitoring calibration data corresponding to a first monitoring parameter among the at least partially shared monitoring parameters.
  • the second medical device has monitoring calibration data corresponding to a second monitoring parameter among the at least partially shared monitoring parameters. Maintaining synchronization of the monitoring calibration data corresponding to at least a portion of the shared monitoring parameters between the patient treatment information system and the plurality of medical devices includes:
  • the information system modifies the monitoring line data corresponding to the first monitoring parameter and controls the communication module to push the modified monitoring line data to the first medical device; and/or,
  • the monitoring line data corresponding to the second monitoring parameter is modified in the patient diagnosis and treatment information system.
  • the first instruction is used to set a first reference interval corresponding to the first monitoring parameter
  • the step of responding to a first instruction input by a user in the patient medical information system and modifying the monitoring caliber data corresponding to the first monitoring parameter in the patient medical information system includes:
  • the first reference interval corresponding to the first monitoring parameter is modified in the patient diagnosis and treatment information system
  • a linkage setting operation After modifying the first reference interval corresponding to the first monitoring parameter, a linkage setting operation is triggered.
  • the linkage setting operation sets the second reference interval corresponding to the first monitoring parameter based on the adjustment parameter corresponding to the first monitoring parameter and the modified first reference interval.
  • this application embodiment also provides another implementation scheme based on the above system architecture.
  • the processor is used for:
  • the display screen is controlled to simultaneously display treatment task information and the monitoring value of at least one of the multiple monitoring parameters at multiple times on its display interface.
  • the treatment task information is used to prompt medical staff to perform corresponding treatment tasks.
  • the monitoring values of at least one monitoring parameter acquired within a preset time period are statistically analyzed to obtain statistical analysis results, and the display screen is controlled to output the statistical analysis results on its display interface; wherein, the statistical analysis results include at least the following: the result obtained by comparing multiple monitoring values of at least one monitoring parameter acquired within the preset time period with the monitoring line data corresponding to the monitoring parameter;
  • the method of controlling the display screen to display the monitoring value of at least one of the multiple monitoring parameters at multiple times on its display interface includes: when the monitoring value of the at least one monitoring parameter falls within the corresponding reference range, controlling the display screen to display the monitoring value on its display interface in a first display configuration; and when the monitoring value of the at least one monitoring parameter falls outside the corresponding reference range, controlling the display screen to display the monitoring value on its display interface in a second display configuration, wherein the first display configuration is different from the second display configuration.
  • the first display configuration includes a first color
  • the second display ... Configurations include a second color
  • the first display configuration includes a first font
  • the second display configuration includes a second font
  • the first display configuration includes a first font size
  • the second display configuration includes a second font size
  • the first display configuration includes not displaying an additional marker for the monitored value
  • the second display configuration includes displaying an additional marker for the monitored value
  • the processor is further configured to:
  • the display screen is controlled to display the monitoring mark data corresponding to the specific monitoring parameter on its display interface; wherein...
  • the setting conditions include:
  • a selection instruction for other monitoring parameters is detected; or, it is detected that among the monitoring values of other monitoring parameters at the multiple times, there are monitoring values that fall outside the corresponding reference interval.
  • controlling the display screen to display the monitoring values of the at least one monitoring parameter at multiple times on its display interface includes:
  • the display screen is controlled to display a trend line corresponding to the monitoring values of the at least one monitoring parameter at the plurality of times on its display interface, so as to present the monitoring values of the at least one monitoring parameter at the plurality of times;
  • the control of the display screen to display the monitoring line data corresponding to the specific monitoring parameter on its display interface includes:
  • the display screen is controlled to present the reference range corresponding to the specific monitoring parameter on its display interface by filling areas and/or markings.
  • controlling the display screen to display a trend line corresponding to the monitored values of the at least one monitoring parameter at the plurality of times on its display interface includes:
  • the display screen is controlled to present the trend line corresponding to the specific monitoring parameter and the trend line corresponding to other monitoring parameters on its display interface with different visual effects.
  • controlling the display screen to present trend lines corresponding to the specific monitoring parameter and trend lines corresponding to other monitoring parameters (excluding the specific monitoring parameter) on its display interface with different visual effects includes:
  • the trend line corresponding to the specific monitoring parameter is presented using a darker color visual effect, and the trend line corresponding to other monitoring parameters besides the specific monitoring parameter is presented using a lighter color visual effect; and/or,
  • the trend line corresponding to the specific monitoring parameter is presented with a wider line width, and the trend line corresponding to other monitoring parameters besides the specific monitoring parameter is presented with a narrower line width.
  • controlling the display screen to simultaneously display diagnostic and treatment task information and the monitoring value of at least one of the multiple monitoring parameters at multiple times on its display interface includes: controlling the display screen to display the monitoring value of the at least one monitoring parameter at multiple times on its display interface in the same image as the multiple medical devices.
  • the monitoring line data corresponding to the monitoring parameter includes:
  • the first reference interval and/or the second reference interval wherein...
  • the first reference interval represents the range within which the patient's monitored values for the corresponding monitoring parameters are expected to fall; the second reference interval represents the acceptable range within which the patient's monitored values for the corresponding monitoring parameters are expected to fall.
  • the processor is further configured to: maintain the synchronization of monitoring caliper data corresponding to at least a portion of the monitoring parameters shared by the patient diagnosis and treatment information system and the multiple medical devices between the patient diagnosis and treatment information system and the multiple medical devices;
  • the plurality of medical devices includes a first medical device and a second medical device.
  • the first medical device has monitoring calibration data corresponding to a first monitoring parameter among the at least partially shared monitoring parameters.
  • the second medical device has monitoring calibration data corresponding to a second monitoring parameter among the at least partially shared monitoring parameters. Maintaining synchronization of the monitoring calibration data corresponding to at least a portion of the shared monitoring parameters between the patient treatment information system and the plurality of medical devices, for the monitoring parameters shared by the patient treatment information system and the plurality of medical devices, includes:
  • the processor modifies the monitoring calibration data corresponding to the first monitoring parameter in the patient treatment information system, and controls the communication module to push the modified monitoring calibration data to the first medical device; and/or,
  • the processor modifies the monitoring line data corresponding to the second monitoring parameter in the patient diagnosis and treatment information system.
  • the first instruction is used to set a first reference interval corresponding to the first monitoring parameter
  • the processor modifies the monitoring caliper data corresponding to the first monitoring parameter in the patient medical information system, including:
  • the processor modifies the first reference interval corresponding to the first monitoring parameter in the patient diagnosis and treatment information system;
  • a linkage setting operation After modifying the first reference interval corresponding to the first monitoring parameter, a linkage setting operation is triggered.
  • the linkage setting operation sets the second reference interval corresponding to the first monitoring parameter based on the adjustment parameter corresponding to the first monitoring parameter and the modified first reference interval.
  • setting a second reference interval corresponding to the first monitoring parameter based on the adjustment parameter corresponding to the first monitoring parameter and the modified first reference interval includes:
  • the upper and/or lower limits of the first reference interval are adjusted to set the second reference interval, wherein the adjustment parameters include: adjustment value or adjustment percentage.
  • triggering the linkage setting operation after modifying the first reference interval corresponding to the first monitoring parameter includes:
  • the linkage setting operation is triggered.
  • the linkage setting operation can be triggered after the first reference range is modified.
  • controlling the display screen to output the statistical analysis results on its display interface includes:
  • Its display interface presents, through at least one graphic, the first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period, so as to show the deviation between the distribution of the multiple monitoring values of one of the monitoring parameters and the first reference interval corresponding to one of the monitoring parameters.
  • controlling the display screen to output the statistical analysis results on its display interface further includes:
  • the display screen is controlled to show the compliance rate of one of the monitoring parameters on its display interface, so as to present the ratio of the multiple monitoring values of one of the monitoring parameters falling within the first reference interval corresponding to one of the monitoring parameters within the preset time period.
  • controlling the display screen to present, on its display interface, a first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period through at least one graphic includes: presenting different frequencies of occurrence of the monitoring values through different visual effects in the graphic used to present the distribution of the multiple monitoring values.
  • presenting the different frequencies of the monitored values through different visual effects includes: presenting the display elements corresponding to the monitored values that appear more frequently through a darker color visual effect.
  • presenting the first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period through at least one graph includes: presenting the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period through a bar chart, wherein each scale bar in the bar chart represents a monitoring value.
  • presenting the first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period through at least one graphic includes: presenting monitoring values falling within the first reference interval corresponding to one of the monitoring parameters and monitoring values falling outside the first reference interval corresponding to one of the monitoring parameters through different display methods.
  • presenting the monitoring values that fall within the first reference interval corresponding to one of the monitoring parameters and the monitoring values that fall outside the first reference interval corresponding to one of the monitoring parameters through different display methods includes: displaying the scale bar corresponding to the monitoring value that falls within the first reference interval corresponding to one of the monitoring parameters in a first color, and displaying the scale bar corresponding to the monitoring value that falls outside the first reference interval corresponding to one of the monitoring parameters in a second color.
  • displaying the scale bar corresponding to the monitoring value falling within the first reference interval corresponding to one of the monitoring parameters in a first color includes: displaying the scale bar corresponding to the monitoring value that appears more frequently in a darker first color;
  • the step of displaying the scale bar corresponding to the monitoring value that falls outside the first reference range corresponding to one of the monitoring parameters in a second color includes: displaying the scale bar corresponding to the monitoring value that appears more frequently in a darker second color.
  • presenting the first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period through at least one graph includes: presenting the first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period through a graph.
  • presenting the first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period through at least one graph includes: presenting the first reference interval corresponding to one of the monitoring parameters and the distribution of multiple monitoring values of one of the monitoring parameters within the preset time period through two graphs respectively.
  • the processor is further configured to:
  • At least the monitoring caliper data corresponding to the at least one monitoring parameter is modified in the patient diagnosis and treatment information system.
  • the display interface includes a first display interface and a second display interface.
  • Controlling the display screen to simultaneously display diagnostic and treatment task information and the monitoring values of at least one of the multiple monitoring parameters at multiple times on its display interface includes: controlling the display screen to simultaneously display diagnostic and treatment task information and the monitoring values of the at least one monitoring parameter at multiple times on the first display interface;
  • controlling the display screen to output the statistical analysis results on its display interface includes: controlling the display screen to output the statistical analysis results on the second display interface.
  • modifying at least one monitoring parameter's corresponding monitoring line data in the patient diagnosis and treatment information system includes:
  • At least the monitoring caliper data corresponding to the at least one monitoring parameter is modified in the patient diagnosis and treatment information system.
  • this application embodiment also provides an information processing method applied to the processor in the patient diagnosis and treatment information system, the method comprising:
  • the display interface simultaneously displays diagnosis and treatment task information and the monitoring value of at least one of the multiple monitoring parameters at multiple times.
  • the diagnosis and treatment task information is used to prompt medical staff to perform corresponding diagnosis and treatment tasks.
  • the monitoring values of at least one monitoring parameter obtained within a preset time period are statistically analyzed to obtain statistical analysis results, and the statistical analysis results are output on the display interface; wherein, the statistical analysis results include at least the following: the result obtained by comparing multiple monitoring values of at least one monitoring parameter obtained within the preset time period with the monitoring line data corresponding to the monitoring parameter;
  • the step of displaying the monitoring value of at least one of the multiple monitoring parameters at multiple times on the display interface includes: displaying the monitoring value on the display interface with a first display configuration when the monitoring value of the at least one monitoring parameter falls within the corresponding reference range, and displaying the monitoring value on the display interface with a second display configuration when the monitoring value of the at least one monitoring parameter falls outside the corresponding reference range, wherein the first display configuration and the second display configuration are different.
  • the monitoring line data corresponding to the monitoring parameters includes:
  • the first reference interval and/or the second reference interval wherein...
  • the first reference interval represents the range within which the patient's monitored values for the corresponding monitoring parameters are expected to fall; the second reference interval represents the acceptable range within which the patient's monitored values for the corresponding monitoring parameters are expected to fall.
  • each of the plurality of medical devices has a monitored value of one or more of the plurality of monitoring parameters and monitoring line data corresponding to the one or more monitoring parameters, and the method further includes:
  • the monitoring caliper data corresponding to at least some of the shared monitoring parameters shall be kept synchronized between the patient diagnosis and treatment information system and the multiple medical devices;
  • the plurality of medical devices includes a first medical device and a second medical device.
  • the first medical device has monitoring calibration data corresponding to a first monitoring parameter among the at least partially shared monitoring parameters.
  • the second medical device has monitoring calibration data corresponding to a second monitoring parameter among the at least partially shared monitoring parameters. Maintaining synchronization of the monitoring calibration data corresponding to at least a portion of the shared monitoring parameters between the patient treatment information system and the plurality of medical devices, for the monitoring parameters shared by the patient treatment information system and the plurality of medical devices, includes:
  • the monitoring calibration data corresponding to the first monitoring parameter is modified in the patient treatment information system, and the communication module is controlled to push the modified monitoring calibration data to the first medical device;
  • the monitoring line data corresponding to the second monitoring parameter is modified in the patient diagnosis and treatment information system.
  • the first instruction is used to set a first reference interval corresponding to the first monitoring parameter
  • the step of responding to a first instruction input by a user in the patient medical information system and modifying the monitoring caliber data corresponding to the first monitoring parameter in the patient medical information system includes:
  • the first reference interval corresponding to the first monitoring parameter is modified in the patient diagnosis and treatment information system
  • a linkage setting operation After modifying the first reference interval corresponding to the first monitoring parameter, a linkage setting operation is triggered.
  • the linkage setting operation sets the second reference interval corresponding to the first monitoring parameter based on the adjustment parameter corresponding to the first monitoring parameter and the modified first reference interval.
  • the monitoring values of the patient's monitoring parameters and diagnosis and treatment task information can be simultaneously displayed on the screen. Furthermore, monitoring values exceeding the corresponding monitoring benchmark data and those not exceeding the corresponding monitoring benchmark data are presented separately, which helps medical staff to view the patient's diagnosis and treatment information and monitoring information in real time. Based on the above-described differentiated presentation of monitoring values, medical staff can promptly obtain information on monitoring values exceeding the monitoring benchmark data, thereby taking timely intervention measures.
  • the entire business process of the information system can be carried out cyclically, and the information involved in the entire business process, such as monitoring line data, monitoring values, and statistical analysis results, are interconnected, which improves the efficiency of information management in the patient's diagnosis and treatment process, and thus improves the efficiency of optimizing diagnosis and treatment goals.
  • this application embodiment also provides a third implementation scheme based on the above system architecture.
  • the processor is used for:
  • the monitoring baseline data for each of the multiple monitoring parameters of the patient is determined, and the monitoring baseline data includes: a first reference interval and a second reference interval; wherein, the first reference interval represents the range within which the patient's monitoring value for the corresponding monitoring parameter is expected to fall; and the second reference interval represents the acceptable range of the patient's monitoring value for the corresponding monitoring parameter.
  • the display screen is controlled to show the monitoring value of at least one of the multiple monitoring parameters at multiple times;
  • the display screen is controlled to display the first reference range and the second reference range of the specific monitoring parameter.
  • the display screen displays the monitoring value of at least one of the multiple monitoring parameters at multiple times, including: when the monitoring value of at least one of the multiple monitoring parameters falls within the corresponding first reference interval, controlling the display screen to display the monitoring value in a first display configuration; and when the monitoring value of at least one monitoring parameter falls outside the corresponding first reference interval, controlling the display screen to display the monitoring value in a second display configuration, wherein the first display configuration and the second display configuration are different.
  • the first display configuration includes a first color
  • the second display configuration includes a second color
  • the first display configuration includes a first font
  • the second display configuration includes a second font
  • the first display configuration includes a first font size
  • the second display configuration includes a second font size
  • the first display configuration includes not displaying an additional marker for the monitored value
  • the second display configuration includes displaying an additional marker for the monitored value
  • the set conditions include:
  • a selection instruction for the specific monitoring parameter is detected; or, a monitoring value for the specific monitoring parameter at the multiple times is detected that falls outside the corresponding reference interval.
  • controlling the display screen to display the monitoring values of at least one of the multiple monitoring parameters at multiple times further includes:
  • the display screen is controlled to show a trend line corresponding to the monitoring values of the at least one monitoring parameter at the plurality of times, so as to present the monitoring values of the at least one monitoring parameter at the plurality of times.
  • controlling the display screen to display a trend line corresponding to the monitored values of at least one of the monitored parameters at the plurality of times includes:
  • the display screen is controlled to present the trend line corresponding to the specific monitoring parameter and the trend line corresponding to other monitoring parameters besides the specific monitoring parameter with different visual effects.
  • the display screen presents trend lines corresponding to the specific monitoring parameter and trend lines corresponding to other monitoring parameters (excluding the specific monitoring parameter) with different visual effects.
  • the trend line corresponding to the specific monitoring parameter is presented using a darker color visual effect, and the trend lines corresponding to other monitoring parameters besides the specific monitoring parameter are presented using a lighter color visual effect; and/or,
  • the trend line corresponding to the specific monitoring parameter is presented with a wider line width, and the trend line corresponding to other monitoring parameters besides the specific monitoring parameter is presented with a narrower line width.
  • controlling the display screen to show a first reference range and a second reference range of the specific monitoring parameter includes:
  • the display screen is controlled to mark the first reference interval and the second reference interval corresponding to the specific monitoring parameter by filling in areas and/or marking lines.
  • the processor is further configured to:
  • the display screen is controlled to fill the area defined by the first reference interval with a first color, and to fill the area defined by the second reference interval with a second color.
  • this application also provides an information processing method applied to a processor in the patient diagnosis and treatment information system, the method comprising:
  • the monitoring baseline data for each of the patient's various monitoring parameters is determined.
  • the monitoring baseline data includes a first reference interval and a second reference interval.
  • the first reference interval represents the expected range within which the patient's monitoring value for the corresponding monitoring parameter is expected to fall.
  • the second reference interval represents the acceptable range within which the patient's monitoring value for the corresponding monitoring parameter is expected to fall.
  • the first reference interval and the second reference interval of the specific monitoring parameter are displayed.
  • the step of displaying the monitoring value of at least one of the multiple monitoring parameters at multiple times includes: displaying the monitoring value in a first display configuration when the monitoring value of at least one of the multiple monitoring parameters falls within the corresponding first reference interval, and displaying the monitoring value in a second display configuration when the monitoring value of at least one monitoring parameter falls outside the corresponding first reference interval, wherein the first display configuration and the second display configuration are different.
  • the monitoring values of the patient's monitoring parameters and diagnosis and treatment task information can be simultaneously displayed on the interface. Furthermore, monitoring values exceeding the corresponding monitoring benchmark data and those not exceeding the corresponding monitoring benchmark data are presented separately, which helps medical staff to view the patient's diagnosis and treatment information and monitoring information in real time. Based on the above-mentioned differentiated presentation of monitoring values, medical staff can promptly obtain information on monitoring values exceeding the monitoring benchmark data, thereby taking timely intervention measures.
  • the system can automatically display two types of monitoring benchmark data: the first reference interval and the second reference interval corresponding to the monitoring parameter. This helps medical staff to view the real-time relative relationship between the monitoring values of these monitoring parameters and the corresponding monitoring benchmark data in a more detailed and intuitive manner, thereby taking more timely and accurate intervention measures. It improved the efficiency of optimizing treatment goals.
  • this application embodiment also provides a fourth implementation scheme based on the above system architecture.
  • the processor is used for:
  • the system determines the monitoring baseline data corresponding to each of the patient's various monitoring parameters, and controls the display screen to output the monitoring values of at least a portion of the monitoring parameters based on the monitoring baseline data corresponding to at least a portion of the monitoring parameters.
  • the monitoring baseline data includes: a first reference interval and a second reference interval; the first reference interval represents the range within which the patient's monitoring values for the corresponding monitoring parameters are expected to fall; the second reference interval represents the acceptable range of the patient's monitoring values for the corresponding monitoring parameters.
  • a first reference interval is set for the first monitoring parameter among the at least some monitoring parameters, and after setting the first reference interval, a linkage setting operation is triggered.
  • the linkage setting operation sets a second reference interval for the first monitoring parameter based on the adjustment parameter corresponding to the first monitoring parameter and the set first reference interval.
  • setting a second reference interval corresponding to the first monitoring parameter based on the adjusted parameter corresponding to the first monitoring parameter and the set first reference interval includes:
  • the upper limit and/or lower limit of the first reference interval are adjusted to set the second reference interval.
  • the adjustment parameters include: adjustment value or adjustment percentage.
  • triggering the linkage setting operation after setting the first reference interval includes:
  • the linkage setting operation can be triggered after the first reference range is set.
  • the monitoring caliper data corresponding to at least a portion of the shared monitoring parameters are kept synchronized between the patient diagnosis and treatment information system and the multiple medical devices.
  • the plurality of medical devices includes a first medical device and a second medical device.
  • the first medical device has monitoring calibration data corresponding to the first monitoring parameter
  • the second medical device has monitoring calibration data corresponding to the second monitoring parameter among the at least some of the shared monitoring parameters. Maintaining synchronization of the monitoring calibration data corresponding to at least some of the shared monitoring parameters between the patient treatment information system and the plurality of medical devices includes:
  • the processor pushes the monitoring datum data corresponding to the first monitoring parameter to the first medical device; and/or,
  • the processor Based on the monitoring line data corresponding to the second monitoring parameter received from the second medical device, the processor modifies the monitoring line data corresponding to the second monitoring parameter in the patient diagnosis and treatment information system.
  • controlling the display screen to output the monitoring values of at least a portion of the monitoring parameters based on monitoring datum data corresponding to at least a portion of the multiple monitoring parameters includes:
  • the display screen is controlled to display the monitoring value in a first display configuration on its display interface, and when the monitoring value of at least some of the common monitoring parameters falls outside the corresponding reference range, the display screen is controlled to display the monitoring value in a second display configuration on its display interface, the first display configuration being different from the second display configuration.
  • the first display configuration includes a first color
  • the second display configuration includes a second color
  • the first display configuration includes a first font
  • the second display configuration includes a second font
  • the first display configuration includes a first font size
  • the second display configuration includes a second font size
  • the first display configuration includes not displaying an additional marker for the monitored value
  • the second display configuration includes displaying an additional marker for the monitored value
  • controlling the display screen to output the monitoring values of at least a portion of the monitoring parameters based on monitoring datum data corresponding to at least a portion of the multiple monitoring parameters includes:
  • the display screen is controlled to show trend lines corresponding to the monitoring values of at least some of the monitoring parameters at the plurality of times on its display interface, so as to present the monitoring values of at least some of the monitoring parameters at the plurality of times;
  • the display screen is controlled to present the reference range corresponding to at least some of the monitored parameters on its display interface by filling areas and/or markings.
  • the processor is further configured to:
  • the trend line corresponding to the specific monitoring parameter and the trend lines corresponding to other monitoring parameters besides the specific monitoring parameter are displayed on the display interface with different visual effects; wherein...
  • the setting conditions include:
  • a selection instruction for the specific monitoring parameter is detected; or, a monitoring value for the specific monitoring parameter at the multiple times is detected that falls outside the corresponding reference interval.
  • presenting the trend line corresponding to the specific monitoring parameter and the trend line corresponding to a specific monitoring parameter other than the specific monitoring parameter with different visual effects includes:
  • the trend line corresponding to the specific monitoring parameter is presented using a darker color visual effect, and the trend line corresponding to specific monitoring parameters other than the specific monitoring parameter is presented using a lighter color visual effect; and/or,
  • the trend line corresponding to the specific monitoring parameter is presented with a wider line width, and the trend line corresponding to a specific monitoring parameter other than the specific monitoring parameter is presented with a narrower line width.
  • controlling the display screen to present the reference range corresponding to at least a portion of the monitored parameter on its display interface by filling areas and/or markings includes:
  • the region defined based on the first reference interval is filled with a first color
  • the region defined based on the second reference interval is filled with a second color
  • the area defined by the first reference interval is delineated by a line of the first color
  • the area defined by the second reference interval is delineated by a line of the second color
  • this application also provides a... Information processing method, applied to a processor in the patient diagnosis and treatment information system, the method includes:
  • the system determines the monitoring baseline data corresponding to each of the patient's multiple monitoring parameters, and outputs the monitoring values of at least a portion of the monitoring parameters based on the monitoring baseline data corresponding to at least a portion of the monitoring parameters.
  • the monitoring baseline data includes: a first reference interval and a second reference interval; the first reference interval represents the range within which the patient's monitoring values for the corresponding monitoring parameters are expected to fall; the second reference interval represents the acceptable range of the patient's monitoring values for the corresponding monitoring parameters.
  • a first reference interval is set for the first monitoring parameter among the at least some monitoring parameters, and after setting the first reference interval, a linkage setting operation is triggered.
  • the linkage setting operation sets a second reference interval for the first monitoring parameter based on the adjustment parameter corresponding to the first monitoring parameter and the set first reference interval.
  • each of the plurality of medical devices has a monitoring value of one or more monitoring parameters from the plurality of monitoring parameters and monitoring line data corresponding to the one or more monitoring parameters.
  • the method further includes:
  • the monitoring caliper data corresponding to at least some of the shared monitoring parameters shall be kept synchronized between the patient diagnosis and treatment information system and the multiple medical devices.
  • the plurality of medical devices includes a first medical device and a second medical device.
  • the first medical device has monitoring calibration data corresponding to the first monitoring parameter
  • the second medical device has monitoring calibration data corresponding to the second monitoring parameter among the at least some of the shared monitoring parameters. Maintaining synchronization of the monitoring calibration data corresponding to at least some of the shared monitoring parameters between the patient treatment information system and the plurality of medical devices includes:
  • the processor pushes the monitoring datum data corresponding to the first monitoring parameter to the first medical device; and/or,
  • the processor modifies the monitoring line data corresponding to the second monitoring parameter in the patient diagnosis and treatment information system.
  • the system can automatically trigger a linkage setting operation based on the adjustment parameters corresponding to the monitoring parameters, thereby automatically generating the second reference interval corresponding to the monitoring parameters.
  • the first reference interval needs to be set or adjusted; the corresponding second reference interval will be set or adjusted accordingly. This greatly improves operational efficiency, enabling treatment goals to match the dynamic changes in the patient's condition in real time, thereby improving the optimization efficiency of treatment goals.
  • This application also provides a hospital network system, which includes a patient diagnosis and treatment information system and multiple medical devices; the patient diagnosis and treatment information system is communicatively connected to the multiple medical devices respectively.
  • the patient diagnosis and treatment information system has monitoring values of various monitoring parameters of the patient and monitoring line data corresponding to the various monitoring parameters.
  • the monitoring line data is used to define the reference range of the corresponding monitoring parameter.
  • Each of the multiple medical devices has a monitoring value of one or more monitoring parameters and monitoring line data corresponding to the one or more monitoring parameters.
  • the patient treatment information system and the multiple medical devices maintain synchronization of monitoring calibrated data corresponding to at least a portion of the shared monitoring parameters. Furthermore, both the patient treatment information system and the multiple medical devices output the monitoring value of the monitoring parameter based on the synchronized monitoring calibrated data corresponding to the at least a portion of the shared monitoring parameters.
  • the multiple medical devices include a first medical device and a second medical device. The first medical device has monitoring calibrated data corresponding to a first monitoring parameter among the at least a portion of the shared monitoring parameters, and the second medical device has monitoring calibrated data corresponding to a second monitoring parameter among the at least a portion of the shared monitoring parameters.
  • the synchronization of monitoring caliper data corresponding to at least a portion of the shared monitoring parameters between the patient treatment information system and the multiple medical devices includes:
  • the patient treatment information system modifies the monitoring calibration data corresponding to the first monitoring parameter in the system and pushes the modified monitoring calibration data to the first medical device; and/or,
  • the second medical device modifies the monitoring line data corresponding to the second monitoring parameter in the device and pushes the modified monitoring line data to the patient diagnosis and treatment information system.
  • the monitoring line data corresponding to the monitoring parameters includes:
  • the first reference interval and/or the second reference interval wherein...
  • the first reference interval represents the range within which the patient's monitored values for the corresponding monitoring parameters are expected to fall; the second reference interval represents the acceptable range of the patient's monitored values for the corresponding monitoring parameters.
  • the first instruction is used to set a first reference interval for the first monitoring parameter.
  • the patient diagnosis and treatment information system modifies the monitoring caliper data corresponding to the first monitoring parameter in the system, including: the patient diagnosis and treatment information system modifies the first reference interval corresponding to the first monitoring parameter in the system, and after modifying the first reference interval corresponding to the first monitoring parameter, triggers a linkage setting operation.
  • the linkage setting operation sets a second reference interval corresponding to the first monitoring parameter based on the adjustment parameter corresponding to the first monitoring parameter and the modified first reference interval.
  • setting a second reference interval corresponding to the first monitoring parameter based on the adjustment parameter corresponding to the first monitoring parameter and the modified first reference interval includes:
  • the upper limit and/or lower limit of the first reference interval are adjusted to set the second reference interval.
  • the adjustment parameters include: adjustment value or adjustment percentage.
  • triggering the linkage setting operation after modifying the first reference interval corresponding to the first monitoring parameter includes:
  • the linkage setting operation is triggered.
  • the linkage setting operation can be triggered after the first reference range is modified.
  • the first medical device pops up a configuration window for the monitoring line data in the operation interface; the configuration window displays at least the modified monitoring line data.
  • the first medical device After detecting a confirmation command regarding the modified monitoring line data, the first medical device modifies the monitoring line data corresponding to the first monitoring parameter within the device.
  • the patient diagnosis and treatment information system and the multiple medical devices display the monitoring values of at least one of the multiple monitoring parameters at multiple times and the monitoring line data corresponding to the at least one monitoring parameter on their respective display interfaces through the same image.
  • outputting the monitoring value of the monitoring parameter based on the synchronized monitoring datum data corresponding to the at least partially shared monitoring parameter includes:
  • the monitoring value of at least some of the shared monitoring parameters falls within the corresponding synchronized reference range, the monitoring value is displayed in a first display configuration; and when the monitoring value of at least some of the shared monitoring parameters falls outside the corresponding synchronized reference range, the monitoring value is displayed in a second display configuration, wherein the first display configuration is different from the second display configuration.
  • the first display configuration includes a first color
  • the second display configuration includes a second color
  • the first display configuration includes a first font
  • the second display configuration includes a second font
  • the first display configuration includes a first font size
  • the second display configuration includes a second font size
  • the first display configuration includes not displaying an additional marker for the monitored value
  • the second display configuration includes displaying an additional marker for the monitored value
  • outputting the monitoring value of the monitoring parameter based on the synchronized monitoring datum data corresponding to the at least partially shared monitoring parameter includes:
  • the reference intervals corresponding to at least some of the common monitoring parameters are presented by filling in areas and/or markings.
  • the patient diagnosis and treatment information system when the patient diagnosis and treatment information system detects that a specific monitoring parameter among the at least part of the common monitoring parameters meets set conditions, it displays a trend line corresponding to the specific monitoring parameter and trend lines corresponding to other monitoring parameters (excluding the specific monitoring parameter) on its display interface with different visual effects;
  • the setting conditions include:
  • a selection instruction for the specific monitoring parameter is detected; or, a monitoring value for the specific monitoring parameter at the multiple times is detected that falls outside the corresponding reference interval.
  • presenting the trend line corresponding to the specific monitoring parameter and the trend lines corresponding to other monitoring parameters besides the specific monitoring parameter with different visual effects includes:
  • the trend line corresponding to the specific monitoring parameter is presented using a darker color visual effect, and the trend line corresponding to other monitoring parameters besides the specific monitoring parameter is presented using a lighter color visual effect; and/or,
  • the trend line corresponding to the specific monitoring parameter is presented with a wider line width, and the trend line corresponding to other monitoring parameters besides the specific monitoring parameter is presented with a narrower line width.
  • presenting the reference interval corresponding to at least a portion of the common monitoring parameters by filling in areas and/or markings includes:
  • the region defined based on the first reference interval is filled with a first color
  • the region defined based on the second reference interval is filled with a second color
  • the area defined by the first reference interval is delineated by a line of the first color
  • the area defined by the second reference interval is delineated by a line of the second color
  • the patient diagnosis and treatment information system in the hospital network system is constructed based on the system architecture of the patient diagnosis and treatment information system shown in Figure 1 or Figure 2.
  • this application also provides an information processing method applied to a patient diagnosis and treatment information system within the hospital network system.
  • the method includes:
  • the monitoring calibrator data corresponding to at least a portion of the shared monitoring parameters are kept synchronized between the patient diagnosis and treatment information system and the multiple medical devices. Furthermore, the monitoring value of the monitoring parameter is output based on the synchronized monitoring calibrator data corresponding to the at least a portion of the shared monitoring parameters.
  • the multiple medical devices include a first medical device and a second medical device. The first medical device has monitoring calibrator data corresponding to a first monitoring parameter among the at least a portion of the shared monitoring parameters, and the second medical device has monitoring calibrator data corresponding to a second monitoring parameter among the at least a portion of the shared monitoring parameters.
  • the method of maintaining the synchronization of monitoring benchmark data corresponding to at least a portion of the shared monitoring parameters between the patient treatment information system and the multiple medical devices includes:
  • the monitoring calibration data corresponding to the first monitoring parameter is modified in the system, and the modified monitoring calibration data is pushed to the first medical device;
  • the monitoring line data corresponding to the second monitoring parameter is modified in the patient diagnosis and treatment information system.
  • the monitoring line data corresponding to the monitoring parameters includes:
  • the first reference interval and/or the second reference interval wherein...
  • the first reference interval represents the range within which the patient's monitored values for the corresponding monitoring parameters are expected to fall; the second reference interval represents the acceptable range of the patient's monitored values for the corresponding monitoring parameters.
  • the first instruction is used to set a first reference interval for the first monitoring parameter.
  • Modifying the monitoring datum data corresponding to the first monitoring parameter in the system includes: modifying the first reference interval corresponding to the first monitoring parameter in the system, and after modifying the first reference interval, triggering a linkage setting operation.
  • the linkage setting operation sets the first monitoring parameter based on the adjustment parameter corresponding to the first monitoring parameter and the modified first reference interval. The corresponding second reference interval.
  • any setting or adjustment operation of monitoring marker data on any device in the hospital network system can be promptly pushed to other devices in the hospital network system.
  • the setting and adjustment of treatment goals can be promptly synchronized to all relevant devices in the hospital network system before the implementation of the treatment strategy for the patient, or during the implementation of the treatment strategy and after the phased completion of the implementation of the treatment strategy, greatly improving operational efficiency and enabling the treatment goals to match the dynamic changes in the patient's condition in real time, thereby improving the optimization efficiency of the treatment goals.

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Abstract

本申请提供了一种患者诊疗信息系统及信息处理方法,其中,患者诊疗信息系统包括:处理器、通信模块和显示屏,通信模块用于获取多台医疗设备采集或生成的患者的多种监测参数的监测值,并将获取的监测值传输给处理器;处理器用于:确定患者的多种监测参数各自对应的监测标线数据,监测标线数据用于界定其对应的监测参数的参考区间;控制显示屏在其显示界面上同时显示诊疗任务信息、至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,诊疗任务信息用于提示医护实施相应的诊疗任务;针对该至少一种监测参数,对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析,控制显示屏在其显示界面上输出统计分析结果。

Description

患者诊疗信息系统及信息处理方法 技术领域
本申请涉及医疗设备领域,尤其涉及一种患者诊疗信息系统及信息处理方法。
背景技术
在重症医学等相关领域,现阶段施行的是以患者的个体化诊疗目标为导向的诊疗策略,因此,在诊疗策略实施过程中,需要结合个体患者的诊疗目标,对患者的各项监测参数进行动态的、全流程的且系统性的管理。具体地,医护人员阶段性地设置患者在各相关监测参数上的监测指标,并通过纸质记录将各监测指标分发至其他相关医疗人员,在诊疗过程中,由各相关医疗人员在患者床头、白板或纸质材料等位置记录监测参数的监测值,之后,通过汇总各监测参数的监测值,确定诊疗目标的达成情况,从而确定是否需要进一步调整该患者的诊疗目标。
然而,患者的病情是动态变化的,这意味着基于个体化诊疗目标的诊疗策略的实施是一个循环往复的过程,而上述诊疗策略的实施过程依赖于对患者的相关监测信息进行静态记录和信息传递,无法实时匹配患者病情动态变化,并且也无法实现对诊疗目标达成情况的高效评估,导致对患者的诊疗过程信息管理效率低下,进而影响了诊疗目标的优化效率。
发明内容
为解决相关技术问题,本申请实施例提供一种患者诊疗信息系统及信息处理方法。
本申请实施例的技术方案是这样实现的:
本申请实施例提供了一种患者诊疗信息系统,所述患者诊疗信息系统包括:处理器、通信模块和显示屏,所述通信模块以及所述显示屏分别与所述处理器通信连接;
所述通信模块,用于获取多台医疗设备采集或生成的患者的多种监测参数的监测值,并将获取的所述监测值传输给所述处理器;
所述处理器用于:
确定所述患者的所述多种监测参数各自对应的监测标线数据,所述监测标线数据用于界定其对应的监测参数的参考区间;
控制所述显示屏在其显示界面上同时显示诊疗任务信息、所述多种监测参数中的至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,以呈现所述多个时刻的监测值是落入对应的所述监测标线数据的参考区间内还是该参考区间外,所述诊疗任务信息用于提示医护实施相应的诊 疗任务;
对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析以得到统计分析结果,控制所述显示屏在其显示界面上输出所述统计分析结果;其中,所述统计分析结果至少包括:将在所述预设时间段内获取到的该至少一种监测参数的多个所述监测值与该监测参数对应的监测标线数据进行比对而得到的结果。
本申请实施例还提供了一种信息处理方法,包括:
确定患者的多种监测参数各自对应的监测标线数据,所述监测标线数据用于界定其对应的监测参数的参考区间;
在显示界面上同时显示诊疗任务信息、所述多种监测参数中的至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,以呈现所述多个时刻的监测值是落入对应的所述监测标线数据的参考区间内还是该参考区间外,所述诊疗任务信息用于提示医护实施相应的诊疗任务;
对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析以得到统计分析结果,在显示界面上输出所述统计分析结果;其中,所述统计分析结果至少包括:将在所述预设时间段内获取到的该至少一种监测参数的多个所述监测值与该监测参数对应的监测标线数据进行比对而得到的结果。
上述患者诊疗信息系统及信息处理方法中,在确定了患者的个体化诊疗目标,即确定了患者的一种或多种监测参数对应的监测标线数据之后,在诊疗策略的实施过程中,能够在显示界面中实时呈现出患者的监测参数的监测值与对应的监测标线数据的相对关系,并结合诊疗任务信息的显示,实现了对患者的监测信息的动态呈现。此外,在当前阶段的诊疗结束后,能够基于在诊疗策略实施过程中,即预设时间段内获取到的患者的相关监测参数的监测值,与对应的监测标线数据进行统计分析,并在显示界面中呈现对应的统计分析结果,以助于医护人员能够对诊疗目标的达成情况进行高效评估,并根据需要确定是否进一步调整监测标线数据或诊疗策略,并在此基础上可能执行下一阶段的诊疗策略实施过程。上述患者诊疗信息系统的全业务流程可循环进行,并且全业务流程中涉及到的监测标线数据、监测值、统计分析结果等信息相互关联,提升了对患者的诊疗过程的信息管理效率,也由此提升了诊疗目标的优化效率。
本申请实施例还提供了一种患者诊疗信息系统,所述患者诊疗信息系统包括:处理器、通信模块和显示屏,所述通信模块以及所述显示屏分别与所述处理器通信连接;
所述通信模块,获取多台医疗设备采集或生成的患者的多种监测参数的监测值,并将获取的所述监测值传输给所述处理器;
所述处理器用于:
确定所述患者的所述多种监测参数各自对应的监测标线数据,所述监测标线数据用于界定其对应的监测参数的参考区间;
控制所述显示屏在其显示界面上同时显示诊疗任务信息以及所述多种监测参数中的至少一种监测参数在多个时刻的监测值,所述诊疗任务信息用于提示医护实施相应的诊疗任务;
对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析以得到统计分析结果,控制所述显示屏在其显示界面上输出所述统计分析结果;其中,所述统计分析结果至少包括:将在所述预设时间段内获取到的该至少一种监测参数的多个所述监测值与该监测参数对应的监测标线数据进行比对而得到的结果;
其中,所述控制所述显示屏在其显示界面上显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,包括:当该至少一种监测参数的监测值落入对应的参考区间内时,控制所述显示屏在其显示界面上以第一显示配置显示该监测值,以及,当该至少一种监测参数的监测值落入对应的参考区间外时,控制所述显示屏在其显示界面上以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
本申请实施例还提供了一种信息处理方法,包括:
确确定患者的多种监测参数各自对应的监测标线数据,所述监测标线数据用于界定其对应的监测参数的参考区间;
在显示界面上同时显示诊疗任务信息以及所述多种监测参数中的至少一种监测参数在多个时刻的监测值,所述诊疗任务信息用于提示医护实施相应的诊疗任务;
对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析以得到统计分析结果,在显示界面上输出所述统计分析结果;其中,所述统计分析结果至少包括:将在所述预设时间段内获取到的该至少一种监测参数的多个所述监测值与该监测参数对应的监测标线数据进行比对而得到的结果;
其中,所述在显示界面上显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,包括:当该至少一种监测参数的监测值落入对应的参考区间内时,在显示界面上以第一显示配置显示该监测值,以及,当该至少一种监测参数的监测值落入对应的参考区间外时,在显示界面上以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
上述患者诊疗信息系统及信息处理方法中,在确定了患者的个体化诊疗目标,即确定了患者的一种或多种监测参数对应的监测标线数据之后,在诊疗策略的实施过程中,能够在显示界面中同时呈现出患者的监测参数的监测值及诊疗任务信息,并且,对超出对应的监测标线数据及未超出对应的监测标线数据的监测值进行区分呈现,有助于医护人员实时查看患者的诊疗信息及监测信息,且基于上述对监测值的区分呈现,医护人员能够及时获取到监测值超出监测标线数据的情况,从而及时采取相关干预手段。此外,在当前阶段的诊疗结束后,能够基于在诊疗策略实施过程中,即预设时间段内获取到的患者的相关监测参数的监测值,与对应的监测标线数据进行统计分析,并在显示界面中呈现对应的统计分析结果,以助于医护人员能够对诊疗目标的达成情况进行高效评估,并根据需要确定是否进一步调整监测标线数据或诊疗策略,并在此基础上可能执行下一阶段的诊疗策略实施过程。上述患者诊疗信息系统的全业务流程可循环进行,并且全业务流程中涉及到的监测标线数据、监测值、统计分析结果等信息相互关联,提升了对患者的诊疗过程的信息管理效率,也由此提升了诊疗 目标的优化效率。
本申请实施例还提供了一种患者诊疗信息系统,所述患者诊疗信息系统包括:处理器、通信模块和显示屏,所述通信模块以及所述显示屏分别与所述处理器通信连接;
所述通信模块,用于获取多台医疗设备采集或生成的患者的多种监测参数的监测值,并将获取的所述监测值传输给所述处理器;
所述处理器,用于:
确定所述患者的所述多种监测参数中各自对应的监测标线数据,所述监测标线数据包括:第一参考区间和第二参考区间;其中,所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受的范围;
控制所述显示屏显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值;
在检测到所述多种监测参数中存在满足设定条件的特定监测参数的情况下,控制所述显示屏显示所述特定监测参数的第一参考区间和第二参考区间;
其中,所述显示屏显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,包括:当所述多种监测参数中的至少一种监测参数的监测值落入对应的第一参考区间内时,控制所述显示屏以第一显示配置显示该监测值,以及,当该至少一种监测参数的监测值落入对应的第一参考区间外时,控制所述显示屏以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
本申请实施例还提供了一种信息处理方法,其特征在于,包括:
确定患者的所种监测参数中各自对应的监测标线数据,所述监测标线数据包括:第一参考区间和第二参考区间;其中,所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受的范围;
显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值;
在检测到所述多种监测参数中存在满足设定条件的特定监测参数的情况下,显示所述特定监测参数的第一参考区间和第二参考区间;
其中,所述显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,包括:当所述多种监测参数中的至少一种监测参数的监测值落入对应的第一参考区间内时,以第一显示配置显示该监测值,以及,当该至少一种监测参数的监测值落入对应的第一参考区间外时,以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
上述患者诊疗信息系统及信息处理方法中,在确定了患者的个体化诊疗目标,即确定了患者的一种或多种监测参数对应的监测标线数据之后,在诊疗策略的实施过程中,能够在显示界面中同时呈现出患者的监测参数的监测值及诊疗任务信息,并且,对超出对应的监测标线数据及未超出对应的监测标线数据的监测值进行区分呈现,有助于医护人员实时查看患者的诊疗信息及监测信息,且基于上述对监测值的区分呈现,医护人员能够及时获取到监测值超出监测标 线数据的情况,从而及时采取相关干预手段。此外,在上述界面呈现过程中,对于满足设定条件的特定监测参数,还能够自动显示该监测参数对应的第一参考区间和第二参考区间这两类监测标线数据,以助于医护人员能够更为详尽且直观地查看到关于这些监测参数的监测值与对应的监测标线数据的实时相对关系,从而更为及时且准确地采取相关干预手段,也由此提升了诊疗目标的优化效率。
附图说明
图1为本申请实施例患者诊疗信息系统的一种系统架构示例图;
图2为本申请实施例患者诊疗信息系统的另一种系统架构示例图;
图3为本申请实施例患者诊疗信息系统的处理逻辑示意图;
图4为本申请实施例患者诊疗信息系统设置诊疗目标的显示界面示意图;
图5为本申请实施例患者诊疗信息系统诊疗策略实施过程的一种显示界面示意图;
图6为本申请实施例患者诊疗信息系统诊疗策略实施过程的另一种显示界面示意图;
图7为本申请实施例患者诊疗信息系统一种趋势图示例图;
图8为本申请实施例患者诊疗信息系统另一种趋势图示例图;
图9为本申请实施例患者诊疗信息系统展示统计分析结果的显示界面示意图;
图10为本申请实施例患者诊疗信息系统一种条形图的示例图。
具体实施方式
下面结合附图及实施例对本申请再作进一步详细的描述。
本申请实施例提供了一种患者诊疗信息系统,该患者诊疗信息系统包括:处理器、通信模块和显示屏。
其中,通信模块以及显示屏分别与处理器通信连接,也即,通信模块和处理器通信连接;显示屏和处理器通信连接。
实际应用时,参照图1示出的一种患者诊疗信息系统的一种系统架构示例,患者诊疗信息系统的处理器11、通信模块12和显示屏13可部署于不同的实体设备中,通过组网实现相互间的通信连接。示例性地,处理器11可以作为服务器部署,基于高运算性能完成本申请实施例相关信息处理工作,通信模块12可作为网关独立部署,通过任意形式的有线网络、无线网络、移动通信网络或其组合与处理器11进行信息交互,显示屏13用于显示患者诊疗信息系统的操作界面,进一步地,显示屏13配置有触屏面板,还用于检测或接收用户对患者诊疗信息系统的操作界面的操作。
参照图2示出的患者诊疗信息系统的另一种系统架构示例,患者诊疗信息系统也可部署于单一实体设备中,处理器21、通信模块22和显示屏23可通过总线系统耦合在一起。可理解,总线系统用于实现处理器21、通信模块22和 显示屏23之间的连接通信,该总线系统除了包括数据总线之外,还包括电源总线、控制总线和状态信息总线。处理器21可以是通用处理器、数字信号处理器(DSP,Digital Signal Processor),或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等。通用处理器可以是微处理器或者任何常规的处理器等。
在本申请实施例提供的患者诊疗信息系统中,通信模块,用于获取多台医疗设备采集或生成的患者的多种监测参数的监测值,并将获取的监测值传输给处理器。
这里,通信模块与多台医疗设备之间分别进行通信连接,通过任意形式的有线网络、无线网络、移动通信网络或其组合与医疗设备之间建立通信连接,并基于对应医疗设备支持的通信协议,实现与医疗设备之间的信息交互。
其中,与通信模块建立通信连接的医疗设备包括但不限于:监护仪、呼吸机、输注泵等。通信模块获取医疗设备采集或生成的监测参数,包括医疗设备采集的患者的生理参数,和/或,医疗设备上生成的监测参数,也即医疗设备上配置的监测参数。示例性地,通信模块获取监护仪采集的患者的生理参数,例如心电、心率、呼吸、血压、体温等,通信模块获取呼吸机的分钟通气量、压力上下限、呼吸频率、湿气量等,通信模块获取输注泵的注射模式、阻塞级别、注射速度设定范围、预置量等。
实际应用时,处理器能够控制显示屏在显示界面上提供对应的交互界面,以通过该交互界面下达指令,使得通信模块与对应的医疗设备建立通信连接,并可在该交互界面上输入对应的医疗设备的设备编号、通信连接建立时间等,以便于患者诊疗信息系统明确各台医疗设备的相关信息,在此基础上对建立通信连接的各台医疗设备的相关信息进行信息管理。
在本方案中患者诊疗信息系统与其他临床信息系统的一大区别在于本患者医疗信息系统基于PDCA逻辑,为重症信息系统的“目标管理”功能设计了全流程的方案。所谓“目标管理”就是在重症监护的过程中,基于患者的多个参数的目标值对患者的病情进行比对分析,从而对病人的情况进行科学及时的判断,也为后续调整诊断、治疗策略提供依据。所谓PDCA逻辑,如图3所示出的,具体在“目标管理”上,指的是:
1、目标设定(Plan),也即监测标线数据以及诊疗策略的制定,具体地,由医护人员对患者的病情进行完整客观的判断,以基于患者的个体化状态进行阶段性的目标设定。其中,对于目标设定中的监护类监测参数,由护理人员重点执行,对于目标设定中的呼吸及检查类监测参数,由医生重点关注。
2、过程管理(Do),也即诊疗策略的实施过程,在该过程中,允许监测参数在一定可接受的范围内波动,并且,该过程中,护理人员可以酌情进行治疗措施或干预措施的调整,以维持重点关注的监测参数的波动在可接受的范围内。
3、统计分析(Check),基于上述目标设定环节设定的目标,以及基于对监测参数的实时监测结果,对各项监测参数进行阶段性的达标情况统计分析。
4、策略调整(Act),具体地,由医护人员通过患者个体化病情的变化,结合统计分析过程中得到的达标情况,综合判断当前阶段的诊疗效果,从而针对 患者进行个体化的治疗措施及干预措施的调整,包括对监测标线数据的调整。
对应于上述PDCA逻辑,在本申请实施例中,处理器的执行逻辑如下:
对应于上述目标设定环节,处理器确定所述患者的所述多种监测参数各自对应的监测标线数据,所述监测标线数据用于界定其对应的监测参数的参考区间;
对应于上述目标设定环节,处理器控制所述显示屏在其显示界面上同时显示诊疗任务信息、所述多种监测参数中的至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,以呈现所述多个时刻的监测值是落入对应的所述监测标线数据的参考区间内还是该参考区间外,所述诊疗任务信息用于提示医护实施相应的诊疗任务;
对应于上述过程管理环节,处理器对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析以得到统计分析结果,控制所述显示屏在其显示界面上输出所述统计分析结果;其中,所述统计分析结果至少包括:将在所述预设时间段内获取到的该至少一种监测参数的多个所述监测值与该监测参数对应的监测标线数据进行比对而得到的结果。
实际应用时,可以基于统计分析结果执行策略调整环节,针对患者进行个体化的治疗措施及干预措施的调整,包括对监测标线数据的调整,并循环再次进入目标设定环节,执行下一轮的诊疗策略实施,或者,也可以由医护人员在诊疗策略的实施过程中,基于显示界面中显示的监测参数的监测值,实时地对监测标线数据进行调整,调整监测标线数据之后,患者诊疗信息系统会即时地基于调整后的监测标线数据执行上述PDCA逻辑,从而实现对患者诊疗策略的动态调整,提高了诊疗目标的优化效率。
在以患者的个体化诊疗目标为导向的诊疗策略实施过程中,首先需要确定患者的诊疗目标。
在诊疗策略实施过程中,处理器控制显示屏在显示界面同时显示诊疗任务信息、至少一种监测参数在多个时刻的监测值及该至少一种测参数对应的监测标线数据。其中,在显示界面中显示诊疗任务信息,用于提示医护进行相应的诊疗操作,在显示界面中显示至少一种监测参数在多个时刻的监测值及该至少一种测参数对应的监测标线数据,用于呈现多个时刻的监测值是落入对应的监测标线数据的参考区间内还是该参考区间外。在显示界面中同时显示上述三类信息,实现了对患者的监测信息的动态呈现,有助于医护人员明确当前诊疗任务,并同步查看当前诊疗任务的执行情况以及诊疗任务在患者上的实时诊疗效果。
在一实施例中,所述监测参数对应的监测标线数据包括:
第一参考区间和/或第二参考区间。
其中,所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受的范围,第二参考区间一般是覆盖第一参考区间的,但是在一些特殊情况下二者也不一定有固定的对应关系,二者可能只有部分重叠,或者完全不重叠。
进一步理解,这里,第一参考区间基于患者的诊疗目标得到,为患者在对应的监测参数上的监测值期望落入的范围,也即该患者在诊疗全程或阶段性结束后,医护人员所期望该监测参数达到的监测值范围,也可理解为患者在对应的监测参数上的目标值区间。第二参考区间基于临床相关实践指南上的监测参数报警限值确定出,或者,基于患者实时的个体化病情并结合临床相关实践指南上的监测参数报警限值确定出,也可理解为在对应的监测参数上的报警值区间,超出该第二参考区间的监测值被认为在临床上所不可接受的。
值得注意地,在传统的医疗设备中,往往只有类似于本方案中的第二参考区间的报警限,这个报警限在传统的医疗设备中往往是依赖于医疗指南为所有患者无差别的设定。但在临床中,有时一个病人虽然没有超过报警限,但是并不意味着该病人的状态非常理想,所以本方案还为患者确定一个第一参考区间,用于更精细化的观察和判断病人的情况。而且在本方案中,第一参考区间和第二参考区间都可以自定义设定。
示例性地,对于心率(HR,Heart Rate),可设置对应的第一参考区间为70~120bpm,为医护人员所期望的对患者在诊疗阶段性结束后所能达到的心率值范围,并可设置对应的第二参考区间为60~130bpm,超出第二参考区间的心率值将引发报警。
可以理解,通常情况下,第二参考区间覆盖第一参考区间。基于上述第一参考区间与第二参考区间的定义,在临床上,若监测值位于第一参考区间内,被认为是期望的监测值,若监测值位于第一参考区间外且第二参考区间内,被认为是在安全范围内波动的监测值,若监测值位于第二参考区间外,被认为是需要采取相应的干预手段,以控制监测值至少位于第二参考区间内。
实际应用时,监测参数对应的监测标线数据也可只包括第一参考区间,或者,只包括第二参考区间,医护人员可根据实际的诊疗需要,确定监测标线数据的种类。
实际应用时,需要设置监测标线数据的监测参数,包括但不限生命体征参数、医疗设备的工作参数、检验检查的参考区间、治疗用药的剂量、液体平衡及能量代谢的相关参数等。在某些情况下,确定好监测标线数据之后,还需要进一步确定相关的诊疗方案,例如,详细的诊疗计划、需要使用的药品、使用的医疗设备的设备型号、详细的监测计划及检验检查项目等等。
在本申请实施例中,医护人员可在患者诊疗信息系统或者相关医疗设备上进行监测标线数据的设置,并基于通信模块与医疗设备之间的通信连接,在患者诊疗信息系统上设置的监测标线数据将推送至相关医疗设备上,或者,在相关医疗设备上设置的监测标线数据将推送至患者诊疗信息系统上,以此保障患者诊疗信息系统与医疗设备之间的监测标线数据的同步,使得医护人员无需在多设备间进行监测标线数据的重复设置,且自动同步的过程也可避免了人为设置可能存在的设置错误的情况,提高了诊疗过程中的设备操作效率,并提高了操作准确性,保证了诊疗效果。
基于此,在一实施例中,所述处理器还用于:对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,保持至少部分所述共有的监测参数 对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步。
其中,所述多台医疗设备包括第一医疗设备和第二医疗设备,所述第一医疗设备具有所述至少部分共有的所述监测参数中的第一监测参数对应的监测标线数据,所述第二医疗设备具有所述至少部分共有的所述监测参数中的第二监测参数对应的监测标线数据,所述对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,对应地,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步,包括:
响应于用户在所述患者诊疗信息系统中输入的第一指令,所述处理器在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,并控制所述通信模块向所述第一医疗设备推送修改后的监测标线数据;和/或,
基于接收到的所述第二医疗设备推送的所述第二监测参数对应的监测标线数据,所述处理器在所述患者诊疗信息系统中修改所述第二监测参数对应的监测标线数据。
这里,在患者诊疗信息系统中或在相关医疗设备中修改监测参数对应的监测标线数据,可以理解为在患者诊疗信息系统中或在相关医疗设备中监测参数对应的原有监测标线数据的基础上,对原有监测标线数据进行调整或更新,也可以理解为在患者诊疗信息系统中或在相关医疗设备中监测参数对应的监测标线数据为空,也即监测参数未配置有监测标线数据的基础上,为监测参数配置有监测标线数据。
实际应用时,在医疗设备上设置的监测标线数据,通常经过实际操作该医疗设备的医护人员的确认,因此该监测标线数据在推送至患者诊疗信息系统之后可即时生效。在患者诊疗信息系统上设置的监测标线数据推送至相关医疗设备之后,需要由实际操作该相关医疗设备的医护人员确认之后再生效,以避免设置的监测标线数据不符合患者的实际诊疗情况。
基于此,在一实施例中,在接收到所述患者诊疗信息系统推送的修改后的监测标线数据之后,所述第一医疗设备在操作界面中弹出监测标线数据的配置窗口;所述配置窗口中至少显示该修改后的监测标线数据;
所述第一医疗设备在检测到关于该修改后的监测标线数据的确认指令后,在该设备中修改所述第一监测参数对应的监测标线数据。
这里,在患者诊疗信息系统上设置的第一监测标线数据推送至第一医疗设备之后,若在第一医疗设备操作界面上弹出的配置窗口中检测到关于该第一监测标线数据的确认指令,那么该第一监测标线数据在第一医疗设备上即时生效。或者,实际操作第一医疗设备的医护人员也可在配置窗口中对第一监测标线数据进行修改,修改后的第一监测标线数据在第一医疗设备上即时生效,与此同时,修改后的第一监测标线数据被推送至患者诊疗信息系统,处理器响应于该修改后的第一监测标线数据,在患者诊疗信息系统中为第一监测参数设置该修改后的第一监测标线数据。
对于监测标线数据包括第一参考区间及第二参考区间的情况,可通过设置第一参考区间与第二参考区间的联动设置操作,提高医护人员在患者诊疗信息系统中设置监测标线数据的操作效率,并能够在一定程度上保障监测标线数据 的设置准确性。
基于此,在一实施例中,所述第一指令用于设置所述第一监测参数对应的第一参考区间;
所述响应于用户在所述患者诊疗信息系统中输入的第一指令,所述处理器在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,包括:
响应于用户在所述患者诊疗信息系统中输入的所述第一指令,所述处理器在所述患者诊疗信息系统中修改所述第一监测参数对应的第一参考区间;
在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,所述联动设置操作基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间。
这里,联动设置操作能够实现在修改完成第一参考区间的同时自动完成第二参考区间的修改,并且保证自动修改的第二参考区间的合理性。
如上文所述,在传统的医疗设备中,往往只有类似于本方案中的第二参考区间的报警限,这个报警限在传统的医疗设备中往往是依赖于医疗指南为所有患者无差别的设定。这样还存在一个问题,就是针对不同的病人如果报警值都一样,就会出现很多无意义的反复报警,比如一个患者是心脏患病,可能他的心率就是很低,如果以60为心率的报警下限,那针对该病人就会反复报警。但是其实医生已经知道该病人的情况,只有这个病人的心率下降到更低的50,可能医生才需要知道,否则不需要提醒医生。因此本方案在目标值(第一监测参数)变动后,联动调节其对应的报警值(第二监测参数)可以很好的减少对于医护的干扰。也可以简化医生的设定操作。
具体地,在一实施例中,所述基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间,包括:
基于所述调整参数,对所述第一参考区间的上限值和/或下限值进行调整,以设置所述第二参考区间,所述调整参数包括:调整数值或调整百分比。
示例性地,对平均动脉压(MAP,Mean Arterial Pressure)设置第一参考区间,对应的上限为120mmHg,对应的下限为60mmHg,该监测参数对应的调整参数为上限和下限各加10mmHg,那么,在设置了MAP的第一参考区间的同时,自动生成MAP的第二参考区间,该第二参考区间对应的上限为130mmHg,对应的下限为50mmHg。
实际应用时,可以为不同的监测参数分别设置不同的调整参数,例如,对于体温,对应的调整参数为第一参考区间的上限和下限各加1,该调整参数与上述示例中MAP对应的调整参数不相同,从而能够确保对不同监测参数的第二参考区间的设置合理性。
此外,对于自动触发联动设置操作的功能,医护人员在患者诊疗信息系统中可根据实际需求选择对该功能使能或禁用。在一实施例中,所述在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,包括:
在修改所述第一监测参数对应的第一参考区间之后,检测到第一功能处于使能状态的情况下,触发所述联动设置操作,
所述第一功能处于使能状态下允许在修改所述第一参考区间之后触发所述 联动设置操作。
可以理解地,所述第一功能处于禁用状态下,不允许在修改的第一参考区间之后触发所述联动设置操作。
实际应用时,该功能可以针对不同的监测参数分别设置使能或禁用,从而实现更为灵活的监测标线数据的设置方案。
图4示出了在患者诊疗信息系统的显示界面上设置监测标线数据的示例,图4中示出了神经系统和循环系统相关监测参数对应的监测标线数据设置界面,其中,在监测标线数据的原有配置的基础上,对神经系统的相关监测参数MAP、Temp以及循环系统的相关监测参数MAP的第一参考区间,即目标上限和目标下限进行了更新,因此,在图4中,对神经系统分类下的监测参数MAP、Temp的目标上限和目标下限,以及循环系统分类下的监测参数HR的目标下限、MAP的目标上限和目标下限对应的取值均作字体加粗加大处理,以提示医护人员取值发生了变化。此外,图4示例中,通过“是否联动调节报警限”的选中框控件来使能或禁用第一功能,当该选中框被勾选时,表征第一功能使能,那么,以循环系统分类下的监测参数MAP为例,由于其目标上限和目标下限进行了更新,对应地,MAP的第二参考区间,即报警上限和报警下限也相应发生了更新,因此,MAP的报警上限和报警下限对应的取值也作字体加粗加大处理,以提示医护人员取值发生了变化。而神经系统分类下的监测参数Temp对应的“是否联动调节报警限”的选中框控件未被勾选,因此,虽然Temp的目标上限和目标下限进行了更新,但Temp的报警上限和报警下限的取值并不会改变。
基于上述监测标线数据的确定,完成了对患者的诊疗策略的计划过程,在此基础上进一步地基于诊疗策略开展实施过程。
在诊疗策略实施过程中,处理器控制显示屏在显示界面同时显示诊疗任务信息、至少一种监测参数在多个时刻的监测值及该至少一种测参数对应的监测标线数据。其中,在显示界面中显示诊疗任务信息,用于提示医护进行相应的诊疗操作,在显示界面中显示至少一种监测参数在多个时刻的监测值及该至少一种测参数对应的监测标线数据,用于呈现多个时刻的监测值是落入对应的监测标线数据的参考区间内还是该参考区间外。在显示界面中同时显示上述三类信息,实现了对患者的监测信息的动态呈现,有助于医护人员明确当前诊疗任务,并同步查看当前诊疗任务的执行情况以及诊疗任务在患者上的实时诊疗效果。
参照图5患者诊疗信息系统诊疗策略实施过程的显示界面示例,该显示界面左侧示出了患者在诊疗策略实施过程中的诊疗任务信息,以助于医护人员明确当前的诊疗任务。例如,在“AKI过程管理”部分,列出了当前该患者对应的执行事项,并在每个事项前通过不同标记进行区分,使得医护人员可以明确对应的事项是“待执行”事项还是“已完成”事项。该显示界面右侧示出了该患者的多种监测参数在多个时刻的监测值。图5示例中,以趋势线的方式显示每种监测参数在多个时刻的监测值。
在一实施例中,控制所述显示屏在其显示界面显示该至少一种监测参数在多个时刻的监测值,包括:
该至少一种监测参数的监测值落入对应的参考区间内的情况下,控制所述显示屏在其显示界面上以第一显示配置显示该监测值,以及,该至少一种监测参数的监测值落入对应的参考区间外的情况下,控制所述显示屏在其显示界面上以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
这里,为了向医护人员提供更为直观的界面,以助于医护人员快速确定出哪些监测参数存在落入对应的监测标线数据的参考区间外的监测值,且在哪些时刻存在落入对应的监测标线数据的参考区间外的监测值,对落入对应的参考区间内的监测值和落入对应的参考区间外的监测值进行了显示配置的区分。
具体地,所述第一显示配置包括第一颜色,且所述第二显示配置包括第二颜色;和/或,
所述第一显示配置包括第一字体,且所述第二显示配置包括第二字体;和/或,
所述第一显示配置包括第一字号,且所述第二显示配置包括第二字号;和/或,
所述第一显示配置包括不为该监测值显示附加标记,且所述第二显示配置包括为该监测值显示附加标记。
作为监测值的一种呈现方式,上述患者诊疗信息系统诊疗策略实施过程的显示界面示例中,显示界面右侧多种监测参数的监测值可以以数值表的方式呈现。参照图6示例,每张数据表对应一个监测参数类目下的多种监测参数,其中的每一行表征一种监测参数在多个时刻的监测值,而对应行中的每一列表征对应的监测参数在多个时刻中的每个时刻的监测值。
那么,对应数值表中的监测值:
以第一颜色显示落入对应的参考区间内的监测值,以及以第二颜色显示第二监测值;和/或,
以第一字体显示落入对应的参考区间内的监测值,以及以第二字体显示第二监测值;和/或,
以第一字号显示落入对应的参考区间内的监测值,以及以第二字号显示落入对应的参考区间外的监测值;和/或,
不为落入对应的参考区间内的监测值显示附加标记,以及为落入对应的参考区间外的监测值显示附加标记。
示例性地,采用绿色标记落入对应的参考区间内的监测值,采用红色标记落入对应的参考区间外的监测值,和/或,采用普通字体标记落入对应的参考区间内的监测值,采用粗体标记落入对应的参考区间外的监测值,和/或,采用较小的字号标记落入对应的参考区间内的监测值,采用较大的字号标记落入对应的参考区间外的监测值,和/或,在落入对应的参考区间内的监测值侧面标记箭头,而不为落入对应的参考区间外的监测值添加附加标记。以上方式均可以以更为显著的视觉效果将超出监测标线数据的监测值进行显示,使得医护人员能够直观地观察到超出了监测标线数据对应的数值范围的监测值,从而及时采取相应的干预手段。
其中,可以根据监测值超出的是对应的参考区间的上限或下限,选择不同 的附加标记进行显示。例如,对于超出对应的参考区间上限的监测值,在该监测值边上显示向上箭头,对于超出对应的参考区间下限的监测值,在该监测值边上显示向下箭头,从而有助于医护人员更为直观地了解监测值超出监测标线数据对应的参考区间的具体情况。
例如,图6示例中“达标监测”数值表中监测参数Temp在多个时刻对应的监测值,其中,对于超出目标参考区间的监测值,以加粗加大的字体显示,以提示医护人员患者的体温出现异常。
作为监测值的另一种呈现方式,对于至少一种监测参数在多个时刻的监测值,可以通过趋势线的方式呈现。在一实施例中,控制所述显示屏在其显示界面上显示至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,包括:
控制所述显示屏在其显示界面上显示该至少一种监测参数在所述多个时刻的监测值对应的趋势线,以呈现该至少一种监测参数在所述多个时刻的监测值;以及,
控制所述显示屏在其显示界面上通过填充区域和/或标线呈现该至少一种监测参数对应的参考区间。
这里,以监测参数对应的采集时间或生成时间为坐标横轴,以监测参数对应的监测值为坐标纵轴,绘制每种监测参数对应的趋势线。与此同时,在本实施例中,在每种监测参数对应的趋势线所在坐标轴上,一并通过填充区域和/或标线标记出该监测参数对应的监测标线数据,以此清晰地显示出每种监测参数在多个时刻的监测值与对应的监测标线数据之间的相对大小关系,以便医护人员直观地从显示界面中观察监测值是否超出了监测标线数据对应的数值范围
实际应用时,可以在一个趋势图中对应呈现一种监测参数的趋势线,也可以在同一个趋势图中同时呈现多种监测参数的趋势线。实际应用时,可以基于不同监测参数之间的相关性或所属分类,将多种监测参数对应的趋势线绘制于同一坐标轴对应的趋势图中。例如,图5示例中,将监测参数类目“CRRT”下医护人员选择的4种监测参数的趋势线同时呈现于一个趋势图中。这样,通过多张图表将监测参数的监测值进行分类展示,有助于医护人员快速查看并了解相关监测情况。
作为一种实现方式,在患者诊疗信息系统的显示界面中,还可由医护人员自行定义需要显示的监测参数。例如,在监测参数类目“CRRT”下,展示了所有可在该图表中绘制的监测参数,医护人员可通过勾选对应的监测参数,选择将其中的全部或部分监测参数对应的趋势线绘制于该图表中。基于上述交互方式,医护人员可进行信息筛选,从而使得显示界面中只显示所需关注的监测信息,避免信息冗余,且有助于医护人员快速获取到所需信息。
对于以趋势线方式呈现多个时刻的监测值的方案,同样可对落入对应的参考区间内的监测值和落入对应的参考区间外的监测值进行了显示配置的区分。参照图7示例中的“感染监测”图表,其中的趋势线:
以第一颜色显示趋势线中未超出对应的参考区间的部分,以及以第二颜色显示趋势线中超出对应的参考区间的部分;和/或,
对于趋势线上标记的监测值:
以第一字体显示趋势线上未超出对应的参考区间的监测值,以及以第二字体显示趋势线上超出对应的参考区间的监测值;和/或,
以第一字号显示趋势线上未超出对应的参考区间的监测值,以及以第二字号显示趋势线上超出对应的参考区间的监测值;和/或,
不为趋势线上未超出对应的参考区间的监测值显示附加标记,以及为趋势线上超出对应的参考区间的监测值显示附加标记。
图7示例中,3种监测参数的趋势线显示于同一趋势图中,并且,对于超出对应的参考区间的监测值,在趋势线上该监测值的出现位置显示三角的附加标记。
图8示例中,5种监测参数的趋势线显示于同一趋势图中,并且,当监测参数Lac的趋势线被选中时,在该趋势图中以阴影填充区域显示该监测参数对应的第二参考区间。
此外,对于监测标线数据包括第一参考区间和第二参考区间的情况,同一监测参数的监测值在超出第一参考区间时对应的显示配置与超出第二参考区间时对应显示配置也可不相同。监测值在超出第二参考区间时所呈现的视觉效果可更强于监测值在超出第一参考区间时所呈现的视觉效果,从而对监测值超出第二参考区间的情况做更为显著的提示。
对于通过填充区域标记出监测参数对应的监测标线数据的方式,实际应用时,可以通过颜色填充或者线条填充或者图案填充的方式绘制对应的填充区域。此外,在显示界面中渲染填充区域时,参照图8示例中的“达标监测”图表,可以对填充的颜色和/或线条和/或图案做透明处理或灰度处理,使得填充区域作为趋势线的背景存在,不会对趋势线的显示造成影响。此外,当在显示界面显示多种监测参数对应的监测标线数据及在多个时刻的监测值时,不同的监测参数对应的填充区域采用不同的颜色和/或不同形态的线条和/或不同的图案进行填充,从而实现不同监测参数之间监测标线数据的区分。此外,当监测标线数据包括第一参考区间和第二参考区间时,同一监测参数的第一参考区间和第二参考区间也可在填充区域上采用不同的颜色和/或不同形态的线条和/或不同的图案进行填充,从而实现第一参考区间与第二参考区间的视觉区分。例如,参照图8示例“达标监测”图表中监测参数Lac对应的趋势线,以绿色的填充区域绘制出该监测参数对应的第一参考区间0.8~1.9,同时,以灰色的填充区域绘制出该监测参数对应的第二参考区间0.6~2.1,从而实现两个参考区间的视觉区分。
对于通过标线标记出监测参数对应的监测标线数据的方式,实际应用时,可以通过设定的颜色和/或线宽绘制对应的标线。此外,当在显示界面显示多种监测参数对应的监测标线数据及在多个时刻的监测值时,不同的监测参数对应的标线采用不同的颜色和/或不同线宽进行绘制,从而实现不同监测参数之间监测标线数据的区分。此外,当监测标线数据包括第一参考区间和第二参考区间时,同一监测参数的第一参考区间和第二参考区间也可在标线上采用不同的颜色和/或不同线宽进行绘制,从而实现第一参考区间与第二参考区间的视觉区分。 参照图8示例“达标监测”图表中监测参数Lac对应的趋势线,以绿色标线绘制出该监测参数对应的第一参考区间的区间下限0.8及区间下限1.9,同时,以灰色标线绘制出该监测参数对应的第二参考区间的区间下限0.6及区间下限2.1,从而实现两个参考区间的视觉区分。
实际应用时,也可同时基于填充区域和标线来框定对应的参考区间。
在一实施例中,所述处理器还用于:
在检测到该至少一种监测参数中存在满足设定条件的特定监测参数的情况下,控制所述显示屏在其显示界面上以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线;其中,
所述设定条件包括:
检测到关于该特定监测参数的选择指令;或者,检测到该特定监测参数在所述多个时刻的监测值中存在落入对应的参考区间外的监测值。
在一实施例中,所述控制所述显示屏在其显示界面上以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线,包括:
通过颜色更深的视觉效果呈现所述特定监测参数对应的趋势线,以及通过颜色更浅的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线。
以设定条件为检测到关于特定监测参数的选择指令为例,示例性地,以饱和度更高的颜色,例如红色,呈现该特定监测参数对应的趋势线,同时,将特定监测参数以外的其他监测参数对应的趋势线进行降低饱和度处理,例如,直接将特定监测参数以外的其他监测参数对应的趋势线采用低饱和度的灰色线条进行绘制,从而在显示界面上突出显示特定监测参数对应的趋势线,使得用户可以在显示界面中快速定位到所选择的监测参数或需要关注或需要采取干预手段的监测参数对应的监测值。
在一实施例中,所述控制所述显示屏在其显示界面上以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线,包括:
通过线宽更宽的视觉效果呈现所述特定监测参数对应的趋势线,以及通过线宽更窄的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线。
参照图8所示出的,在“达标监测”分类下,将多种监测参数对应的趋势线绘制于同一图表中。为了让医护人员能够更为直观地查看到所关注的监测参数的监测情况,在本实施例中,用户可以在患者诊疗信息系统的显示界面上通过光标等选择工具选中其中一种特定监测参数,或者,通过将光标悬停在某条趋势线上,从而选中该趋势线对应的监测参数,作为特定监测参数。此时,为该特定监测参数对应的趋势线做更强的视觉效果显示,而对于其他未选中的特定监测参数,做相对较弱的视觉效果显示。例如,图8示例中,光标悬停在监测参数Lac对应的趋势线上,那么,对监测参数Lac对应的趋势线做更强的视觉效果显示,提升了趋势线的颜色饱和度及加大了线宽,而对于同一图表中的监测参数Temp、MAP、CVP及Urine对应的趋势线,则做相对较弱的视觉效 果显示,降低了趋势线的颜色饱和度及减小了线宽。或者,患者诊疗信息系统自动地对存在落入对应的参考区间外的监测值的监测参数对应的趋势线做更强的视觉效果显示,而对于其他监测值均落入对应的参考区间内的监测参数对应的趋势线,做相对较弱的视觉效果显示。例如,图8示例中,监测参数Temp、MAP、CVP、Urine及Lac中,如果只有Lac存在落入对应的参考区间外的监测值那么,对监测参数Lac对应的趋势线做更强的视觉效果显示,提升了趋势线的颜色饱和度及加大了线宽,而对于同一图表中的监测参数Temp、MAP、CVP及Urine对应的趋势线,则做相对较弱的视觉效果显示,降低了趋势线的颜色饱和度及减小了线宽。
在一实施例中,所述显示屏与所述多台医疗设备之间保持显示配置的同步,即,所述控制所述显示屏在其显示界面上同时显示诊疗任务信息、所述多种监测参数中的至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,包括:控制所述显示屏在其显示界面上以与所述多台医疗设备相同的图像显示该至少一种监测参数在多个时刻的监测值以及该至少一种监测参数对应的监测标线数据。
这里,通过相同的图像显示该至少一种监测参数在多个时刻的监测值以及该至少一种监测参数对应的监测标线数据,呈现效果类似于两个设备之间的投屏。值得注意的,其使用的具体技术不局限于“投屏”技术。
这里,基于通信模块与医疗设备之间的通信连接,上述对患者诊疗信息系统显示界面中至少一种监测参数在多个时刻的监测值及该至少一种测参数对应的监测标线数据的显示配置可同步至医疗设备之中,或者,可以将医疗设备中对相关监测参数的监测值及监测标线数据的显示配置同步至患者诊疗信息系统显示界面上,以保持患者诊疗信息系统与医疗设备之间显示配置的一致性,使得减少医护人员在对患者实施诊疗策略的过程中的学习成本,并保证了信息读取的速度,降低了信息误读率,在此基础上可更为高效地保障对患者的诊疗效果。
在完成了对患者的诊疗策略的实施过程,从而结束了全部诊疗过程或者阶段性地结束当前诊疗过程之后,可在此基础上进一步地基于诊疗策略的实施情况进行统计分析,并在显示界面上输出对应的统计分析结果。
值得注意的,显示界面可以将“统计分析结果”与前面的“诊疗任务信息”、监测参数在多个时刻的监测值(可以以趋势图的方式呈现)以及监测标线数据在同一个界面进行呈现。也可以使用不同的界面分别呈现“统计分析结果”和前面的“诊疗任务信息”、监测参数在多个时刻的监测值以及监测标线数据。例如:可以通过第一显示界面呈现“统计分析结果”,通过第二显示界面呈现“诊疗任务信息”、监测参数在多个时刻的监测值以及监测标线数据。
在输出诊疗策略实施情况的统计分析结果的过程中,处理器针对在诊疗策略的实施过程中显示界面中的至少一种监测参数,基于预设时间段内获取到的该至少一种监测参数的监测值进行统计分析,得到统计分析结果,并控制所述显示屏在其显示界面上输出该统计分析结果。
其中,所述统计分析结果至少包括:将在所述预设时间段内获取到的该至 少一种监测参数的多个所述监测值与该监测参数对应的监测标线数据进行比对而得到的结果。
实际应用时,在当前阶段的诊疗结束后,能够基于在诊疗策略实施过程中,即预设时间段内获取到的患者的相关监测参数的监测值,与对应的监测标线数据进行统计及比对,并在显示界面中呈现对应的统计分析结果,以助于医护人员能够对诊疗目标的达成情况进行高效评估。
图9示出了展示统计分析结果的显示界面示例。
这里,在显示界面中显示的统计结果至少能够表征对应的监测参数在预设时间段内的多个监测值与该监测参数的监测标线数据的比对结果,该比对结果可以通过图形方式呈现。在一实施例中,,所述控制所述显示屏在其显示界面上输出所述统计分析结果,包括:
至少针对该至少一种监测参数中的其中一种监测参数,控制所述显示屏在其显示界面上通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,以呈现该其中一种监测参数的所述多个监测值的分布情况与该其中一种监测参数对应的第一参考区间之间的偏差。
如前文所述,第一参考区间表征对患者在对应的监测参数上的监测值期望落入的范围,也即对患者在该监测参数上的诊疗目标,因此,在本实施例中,通过图形呈现监测参数在预设时间段内的多个监测值相对于该监测参数的第一参考区间的分布情况,从而能够便于医护人员从显示的统计结果中直观地获取到诊疗策略的实施在该监测参数上的达标率。其中,达标率指的是预设时间段内的多个监测值落入对应的第一参考区间的比率。
此外,在一实施例中,所述控制所述显示屏在其显示界面上输出所述统计分析结果,还包括:
控制所述显示屏在其显示界面上显示该其中一种监测参数的达标率,以呈现该其中一种监测参数在所述预设时间段内的所述多个监测值落入该其中一种监测参数对应的第一参考区间内的比率。
这里,将达标率直接显示于显示界面中,使得医护人员能够快速获取到对应监测参数的达标率,并结合至少一个图形所示出的监测值的分布情况,从整体上了解整个诊疗过程中该至少一种监测参数中每种监测参数的监测结果。例如,通过查看显示界面,医护人员能够首先基于显示的达标率,确定出达标率较低的监测参数,并进一步结合图形显示的该达标率较低的监测参数的分布情况,进一步了解对应监测参数的监测结果。
在显示界面中,同一监测参数对应的用于展示分布情况的图形与对应的达标率显示在同一区域,例如,图10示例中,将监测参数HR对应的分布情况与达标率“89%”显示于同一区域,便于医护人员在查看统计分析结果时直观建立同一监测参数对应的各项统计分析结果之间的联系,快速捕获所需信息。
在一实施例中,所述控制所述显示屏在其显示界面上通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:在用于呈现所述多个监测值的分布 情况的图形中,通过不同的视觉效果呈现监测值出现的不同频繁程度。
这里,监测值出现的频繁程度,也可以理解为监测值在不同取值上的出现频率,监测值在一取值上的出现频率越高,可理解为该监测参数的监测值在该取值上出现更为频繁,监测值在一取值上出现的频率越低,可理解为该监测参数的监测值在该取值上较少出现。本实施例中,通过视觉效果上的差异,直观区分出监测值在不同取值上的分布情况。
实际应用时,可以通过分布曲线的方式呈现出监测参数在不同取值上的出现频率,其中,分布曲线以监测参数在预设时间段的监测值对应的不同取值为横坐标,以在对应取值上获取到的监测值的数量为纵坐标,取值对应的纵坐标越大,可理解为该监测参数的监测值在该取值上出现更为频繁,取值对应的纵坐标越小,可理解为该监测参数的监测值在该取值上较少出现。这样,通过分布曲线不同峰值呈现出视觉效果上的差异,直观区分出监测值在不同取值上的分布情况。
在此基础上,还可在该分布曲线所在坐标轴的横轴上标记出对应的第一参考区间,从而能够便于医护人员从显示的统计结果中直观地获取到诊疗策略的实施在该监测参数上的达标率。
进一步地,所述通过不同的视觉效果呈现监测值出现的不同频繁程度,包括:通过颜色更深的视觉效果呈现出现的频繁程度更高的监测值对应的显示元素。
由于颜色更深的图形能够带来更强的视觉冲击,因此,通过颜色更深的视觉效果呈现出现的频繁程度更高的监测值对应的显示元素,使得医护人员能够首先关注到出现的频繁程度更高的监测值,并在此基础上准确及时地得出相关诊疗结论或给出进一步的干预措施建议。
实际应用时,可通过条形图的方式实现以上视觉效果。在一实施例中,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过条形图的方式呈现该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,所述条形图中的每个刻度条表示一个监测值。
参照图10示例,条形图中的每个刻度条表征监测参数的一个监测值,也即,如果在预设时间段内获取到了监测参数的M个监测值,这M个监测值中涉及N个不同取值,M大于N,那么,该监测参数对应的条形图中包含有N个刻度条,每个刻度条表征一个监测值的取值。
在一实施例中,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过不同的显示方式呈现落入该其中一种监测参数对应的第一参考区间内的监测值和落入该其中一种监测参数对应的第一参考区间外的监测值。
这里,通过不同的显示方式区分监测参数在预设时间段内监测值在不同取值上的分布情况。
在一实施例中,所述通过不同的显示方式呈现落入该其中一种监测参数对应的第一参考区间内的监测值和落入该其中一种监测参数对应的第一参考区间 外的监测值,包括:以第一颜色显示落入该其中一种监测参数对应的第一参考区间内的监测值对应的刻度条,以第二颜色显示落入该其中一种监测参数对应的第一参考区间外的监测值对应的刻度条。
在本实施例中,通过不同颜色来呈现落入第一参考区间的监测值对应的刻度条,以及未落入第一参考区间的监测值对应的刻度条,例如,对落入第一参考区间的监测值对应的刻度条以蓝色呈现,对未落入第一参考区间的监测值对应的刻度条以灰色呈现,以在条形图中显著区分第一参考区间和非第一参考区间。
在一实施例中,所述以第一颜色显示落入该其中一种监测参数对应的第一参考区间内的监测值对应的刻度条,包括:以更深的第一颜色显示出现的频繁程度更高的监测值对应的刻度条;
和/或
所述以第二颜色显示落入该其中一种监测参数对应的第一参考区间外的监测值对应的刻度条,包括:以更深的第二颜色显示出现的频繁程度更高的监测值对应的刻度条。
这里,对条形图里每个刻度条的颜色深浅可依据该刻度条对应的取值的监测值的个数确定出,刻度条对应的取值的监测值的数量越多,该刻度条的颜色就越深,或者颜色的饱和度就越高,反之,刻度条对应的取值的监测值的数量越少,该刻度条的颜色就越浅,或者颜色的饱和度就越低。
例如,监测参数HR对应的第一参考区间为80~100bpm,在监测参数HR对应的条形图中,取值落入80~100bpm的刻度条以蓝色显示,取值落入80~100bpm之外的刻度条以灰色显示,并且,对于出现的频繁程度更高的监测值,以更深的颜色进行显示,例如,对于在第一参考区间为80~100bpm内且出现的频繁程度更高的监测值,以深蓝色进行显示,对于在第一参考区间为80~100bpm内且出现的频繁程度较低的监测值,以浅蓝色进行显示,对于在第一参考区间为80~100bpm之外且出现的频繁程度更高的监测值,以深灰色进行显示,对于在第一参考区间为80~100bpm之外且出现的频繁程度较低的监测值,以浅灰色进行显示。并且,根据出现的频繁程度的不同,可以设置两个或两个以上不同级别的深浅程度,以更高细粒度呈现出各监测值出现的频繁程度。
此外,在绘制监测参数对应的条形图时,如果在某个取值上未获取到监测值,那么不绘制该取值对应的刻度条,或者以最浅的颜色进行绘制,或者以饱和度最低的颜色进行绘制。
在一实施例中,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况。
在一实施例中,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及所述预设时间段内的多个监测值的分布情况,包括:通过两个图形分别呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况。
在上文实施例中,在显示界面上输出诊疗策略实施过程对应的统计分析结果,基于该统计分析结果,医护人员可根据需要确定是否进一步调整监测标线数据或诊疗策略,并在此基础上可能执行下一阶段的诊疗策略实施过程。
基于此,在一实施例中,所述处理器还用于:
在控制所述显示屏在其显示界面上输出所述统计分析结果之后,响应于用户在所述患者诊疗信息系统中输入的第二指令,在所述患者诊疗信息系统中至少修改该至少一种监测参数对应的监测标线数据。
这里,当在得到统计分析结果后确定需要进一步调整监测标线数据时,与上文处理器确定所述患者的所述多种监测参数各自对应的监测标线数据的相关实现原理相同,对于此次修改的监测参数中患者诊疗信息系统与多台医疗设备共有的监测参数,患者诊疗信息系统与多台医疗设备之间需要保持至少部分共有的监测参数对应的监测标线数据的同步。因此,所述处理器响应于用户在所述患者诊疗信息系统中输入的第二指令,在所述患者诊疗信息系统中修改相关监测参数对应的监测标线数据之后,也需要制通信模块向对应的医疗设备推送该修改后的监测标线数据。此外,如果基于统计分析结果对监测标线数据的调整是在医疗设备上进行的,那么同样地,该医疗设备需要将修改后的监测标线数据推送至患者诊疗信息系统,处理器响应于该医疗设备推送的修改后的监测标线数据,在患者诊疗信息系统中修改对应的监测标线数据。
在一实施例中,所述显示界面包括第一显示界面和第二显示界面,所述控制所述显示屏在其显示界面上同时显示诊疗任务信息、所述多种监测参数中的至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,包括:控制所述显示屏在所述第一显示界面上同时显示所述诊疗任务信息、该至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据;所述控制所述显示屏在其显示界面上输出所述统计分析结果,包括:控制所述显示屏在所述第二显示界面上输出所述统计分析结果。
也就是说,诊疗策略实施过程和诊疗策略统计分析过程可分别通过不同的显示界面呈现。实际应用时,诊疗策略实施过程和诊疗策略统计分析过程可分别由不同的医护人员或者不同权限用户分别跟进,查看相关信息。
在一实施例中,所述在控制所述显示屏在其显示界面上输出所述统计分析结果之后,响应于用户在所述患者诊疗信息系统中输入的第二指令,在所述患者诊疗信息系统中至少修改该至少一种监测参数对应的监测标线数据,包括:
响应于用户在所述第一显示界面中输入的所述第二指令,在所述患者诊疗信息系统中至少修改该至少一种监测参数对应的监测标线数据。
这里,诊疗策略实施过程中,医护人员可基于第一显示界面同时显示的诊疗任务信息、所述多种监测参数中的至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,观察出监测值与对应的监测标线数据之间的相对大小关系,从而直接在该第一显示界面上对监测标线数据进行修改,提高了操作便捷度。
可以看出,上述患者诊疗信息系统的全业务流程形成闭环,在诊疗目标制定阶段,患者诊疗信息系统确定患者的多种监测参数各自对应的监测标线数据, 在诊疗策略实施阶段,在患者诊疗信息系统的显示界面上同时显示诊疗任务信息、多种监测参数中的至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,在诊疗策略实施结束后的分析阶段,患者诊疗信息系统对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析以得到统计分析结果,并显示界面上输出所述统计分析结果;基于统计分析结果,医护人员可能对监测标线数据以及对应的诊疗策略进行调整,从而调整诊疗目标,并基于调整后的诊疗目标再次实施诊疗策略,如此循环,不断优化诊疗目标,直至结束全部诊疗过程。并且,在上述患者诊疗信息系统的全业务流程中,涉及到的监测标线数据、监测值、统计及比对结果等信息相互关联,动态更新,提升了对患者的诊疗过程的信息管理效率。
基于上文实施例的患者诊疗信息系统,本申请实施例还提供了一种信息处理方法,应用于该患者诊疗信息系统中的处理器,该方法包括:
确定患者的多种监测参数各自对应的监测标线数据,所述监测标线数据用于界定其对应的监测参数的参考区间;
在显示界面上同时显示诊疗任务信息、所述多种监测参数中的至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,以呈现所述多个时刻的监测值是落入对应的所述监测标线数据的参考区间内还是该参考区间外,所述诊疗任务信息用于提示医护实施相应的诊疗任务;
对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析以得到统计分析结果,在显示界面上输出所述统计分析结果;其中,所述统计分析结果至少包括:将在所述预设时间段内获取到的该至少一种监测参数的多个所述监测值与该监测参数对应的监测标线数据进行比对而得到的结果。
在一实施例中,所述监测参数对应的监测标线数据包括:
第一参考区间和/或第二参考区间;其中,
所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受的范围。
在一实施例中,多台医疗设备中的每台所述医疗设备具有所述多种监测参数中的一种或多种监测参数的监测值以及所述一种或多种监测参数对应的监测标线数据,所述方法还包括:
对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步;
其中,所述多台医疗设备包括第一医疗设备和第二医疗设备,所述第一医疗设备具有所述至少部分共有的所述监测参数中的第一监测参数对应的监测标线数据,所述第二医疗设备具有所述至少部分共有的所述监测参数中的第二监测参数对应的监测标线数据,所述对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步,包括:
响应于用户在所述患者诊疗信息系统中输入的第一指令,在所述患者诊疗 信息系统中修改所述第一监测参数对应的监测标线数据,并控制所述通信模块向所述第一医疗设备推送修改后的监测标线数据;和/或,
基于接收到的所述第二医疗设备推送的所述第二监测参数对应的监测标线数据,在所述患者诊疗信息系统中修改所述第二监测参数对应的监测标线数据。
在一实施例中,所述第一指令用于设置所述第一监测参数对应的第一参考区间;
所述响应于用户在所述患者诊疗信息系统中输入的第一指令,在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,包括:
响应于用户在所述患者诊疗信息系统中输入的所述第一指令,在所述患者诊疗信息系统中修改所述第一监测参数对应的第一参考区间;
在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,所述联动设置操作基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间。
以上关于信息处理方法实施例中未示出的技术方案,可参考上文患者诊疗信息系统中处理器相关的技术方案实现,在此不再赘述。
基于与上文实施例的患者诊疗信息系统相同的系统架构,以下给出了患者诊疗信息系统的其他若干种实现方案,可以理解,以下给出的患者诊疗信息系统的其他若干种实现方案,能够实现与上文实施例提供的患者诊疗信息系统相同的全部或部分的系统功能,因此,对下文涉及到的各实施例,其实现原理可对应于上文实施例提供的患者诊疗信息系统中相同的系统功能做相同理解,下文不再赘述。
基于图1或图2示出的患者诊疗信息系统的系统架构,本申请实施例还基于上述系统架构,提供了另一种实现方案。具体地,处理器用于:
确定所述患者的所述多种监测参数各自对应的监测标线数据,所述监测标线数据用于界定其对应的监测参数的参考区间;
控制所述显示屏在其显示界面上同时显示诊疗任务信息以及所述多种监测参数中的至少一种监测参数在多个时刻的监测值,所述诊疗任务信息用于提示医护实施相应的诊疗任务;
对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析以得到统计分析结果,控制所述显示屏在其显示界面上输出所述统计分析结果;其中,所述统计分析结果至少包括:将在所述预设时间段内获取到的该至少一种监测参数的多个所述监测值与该监测参数对应的监测标线数据进行比对而得到的结果;
其中,控制所述显示屏在其显示界面上显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,包括:当该至少一种监测参数的监测值落入对应的参考区间内时,控制所述显示屏在其显示界面上以第一显示配置显示该监测值,以及,当该至少一种监测参数的监测值落入对应的参考区间外时,控制所述显示屏在其显示界面上以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
其中,在一实施例中,所述第一显示配置包括第一颜色,且所述第二显示 配置包括第二颜色;和/或,
所述第一显示配置包括第一字体,且所述第二显示配置包括第二字体;和/或,
所述第一显示配置包括第一字号,且所述第二显示配置包括第二字号;和/或,
所述第一显示配置包括不为该监测值显示附加标记,且所述第二显示配置包括为该监测值显示附加标记。
在一实施例中,所述处理器还用于:
在检测到该至少一种监测参数中存在满足设定条件的特定监测参数的情况下,控制所述显示屏在其显示界面上显示所述特定监测参数对应的监测标线数据;其中,
所述设定条件包括:
检测到关于其它监测参数的选择指令;或者,检测到其它监测参数在所述多个时刻的监测值中存在落入对应的参考区间外的监测值。
在一实施例中,控制所述显示屏在其显示界面上显示该至少一种监测参数在多个时刻的监测值,包括:
控制所述显示屏在其显示界面上显示该至少一种监测参数在所述多个时刻的监测值对应的趋势线,以呈现该至少一种监测参数在所述多个时刻的监测值;
所述控制所述显示屏在其显示界面上显示所述特定监测参数对应的监测标线数据,包括:
控制所述显示屏在其显示界面上通过填充区域和/或标线呈现所述特定监测参数对应的参考区间。
在一实施例中,所述控制所述显示屏在其显示界面上显示该至少一种监测参数在所述多个时刻的监测值对应的趋势线,包括:
控制所述显示屏在其显示界面上以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线。
在一实施例中,所述控制所述显示屏在其显示界面上以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线,包括:
通过颜色更深的视觉效果呈现所述特定监测参数对应的趋势线,以及通过颜色更浅的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线;和/或,。
通过线宽更宽的视觉效果呈现所述特定监测参数对应的趋势线,以及通过线宽更窄的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线。
在一实施例中,所述控制所述显示屏在其显示界面上同时显示诊疗任务信息以及所述多种监测参数中的至少一种监测参数在多个时刻的监测值,包括:控制所述显示屏在其显示界面上以与所述多台医疗设备相同的图像显示该至少一种监测参数在多个时刻的监测值。
在一实施例中,所述监测参数对应的监测标线数据包括:
第一参考区间和/或第二参考区间;其中,
所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受的范围。
在一实施例中,所述处理器还用于:对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步;
其中,所述多台医疗设备包括第一医疗设备和第二医疗设备,所述第一医疗设备具有所述至少部分共有的所述监测参数中的第一监测参数对应的监测标线数据,所述第二医疗设备具有所述至少部分共有的所述监测参数中的第二监测参数对应的监测标线数据,所述对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,所述保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步,包括:
响应于用户在所述患者诊疗信息系统中输入的第一指令,所述处理器在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,并控制所述通信模块向所述第一医疗设备推送修改后的监测标线数据;和/或,
基于接收到的所述第二医疗设备推送的所述第二监测参数对应的监测标线数据,所述处理器在所述患者诊疗信息系统中修改所述第二监测参数对应的监测标线数据。
在一实施例中,所述第一指令用于设置所述第一监测参数对应的第一参考区间;
所述响应于用户在所述患者诊疗信息系统中输入的第一指令,所述处理器在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,包括:
响应于用户在所述患者诊疗信息系统输入的所述第一指令,所述处理器在所述患者诊疗信息系统中修改所述第一监测参数对应的第一参考区间;
在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,所述联动设置操作基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间。
在一实施例中,所述基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间,包括:
设置第一参考区间的上限值和/或下限值进行调整,以设置所述第二参考区间,所述调整参数包括:调整数值或调整百分比。
在一实施例中,所述在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,包括:
在修改所述第一监测参数对应的第一参考区间之后,检测到第一功能处于使能状态的情况下,触发所述联动设置操作,
所述第一功能处于使能状态下允许在修改所述第一参考区间之后触发所述联动设置操作。
在一实施例中,所述控制所述显示屏在其显示界面上输出所述统计分析结果,包括:
至少针对该至少一种监测参数中的其中一种监测参数,控制所述显示屏在 其显示界面上通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,以呈现该其中一种监测参数的所述多个监测值的分布情况与该其中一种监测参对应的第一参考区间之间的偏差。
在一实施例中,所述控制所述显示屏在其显示界面上输出所述统计分析结果,还包括:
控制所述显示屏在其显示界面上显示该其中一种监测参数的达标率,以呈现该其中一种监测参数在所述预设时间段内的所述多个监测值落入该其中一种监测参数对应的第一参考区间内的比率。
在一实施例中,所述控制所述显示屏在其显示界面上通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:在用于呈现所述多个监测值的分布情况的图形中,通过不同的视觉效果呈现监测值出现的不同频繁程度。
在一实施例中,所述通过不同的视觉效果呈现监测值出现的不同频繁程度,包括:通过颜色更深的视觉效果呈现出现的频繁程度更高的监测值对应的显示元素。
在一实施例中,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过条形图的方式呈现该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,所述条形图中的每个刻度条表示一个监测值。
在一实施例中,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过不同的显示方式呈现落入该其中一种监测参数对应的第一参考区间内的监测值和落入该其中一种监测参数对应的第一参考区间外的监测值。
在一实施例中,所述通过不同的显示方式呈现落入该其中一种监测参数对应的第一参考区间内的监测值和落入该其中一种监测参数对应的第一参考区间外的监测值,包括:以第一颜色显示落入该其中一种监测参数对应的第一参考区间内的监测值对应的刻度条,以第二颜色显示落入该其中一种监测参数对应的第一参考区间外的监测值对应的刻度条。
在一实施例中,所述以第一颜色显示落入该其中一种监测参数对应的第一参考区间内的监测值对应的刻度条,包括:以更深的第一颜色显示出现的频繁程度更高的监测值对应的刻度条;
和/或
所述以第二颜色显示落入该其中一种监测参数对应的第一参考区间外的监测值对应的刻度条,包括:以更深的第二颜色显示出现的频繁程度更高的监测值对应的刻度条。
在一实施例中,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况。
在一实施例中,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过两个图形分别呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况。
在一实施例中,所述处理器还用于:
在控制所述显示屏在其显示界面上输出所述统计分析结果之后,响应于用户在所述患者诊疗信息系统中输入的第二指令,在所述患者诊疗信息系统中至少修改该至少一种监测参数对应的监测标线数据。
在一实施例中,所述显示界面包括第一显示界面和第二显示界面,所述控制所述显示屏在其显示界面上同时显示诊疗任务信息以及所述多种监测参数中的至少一种监测参数在多个时刻的监测值,包括:控制所述显示屏在所述第一显示界面上同时显示诊疗任务信息以及该至少一种监测参数在多个时刻的监测值;所述控制所述显示屏在其显示界面上输出所述统计分析结果,包括:控制所述显示屏在所述第二显示界面上输出所述统计分析结果。
在一实施例中,所述在控制所述显示屏在其显示界面上输出所述统计分析结果之后,响应于用户在所述患者诊疗信息系统中输入的第二指令,在所述患者诊疗信息系统中至少修改该至少一种监测参数对应的监测标线数据,包括:
响应于用户在所述第一显示界面中输入的所述第二指令,在所述患者诊疗信息系统中至少修改该至少一种监测参数对应的监测标线数据。
基于上文实施例的另一种患者诊疗信息系统,本申请实施例还提供了一种信息处理方法,应用于该患者诊疗信息系统中的处理器,该方法包括:
确定患者的多种监测参数各自对应的监测标线数据,所述监测标线数据用于界定其对应的监测参数的参考区间;
在显示界面上同时显示诊疗任务信息以及所述多种监测参数中的至少一种监测参数在多个时刻的监测值,所述诊疗任务信息用于提示医护实施相应的诊疗任务;
对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析以得到统计分析结果,在显示界面上输出所述统计分析结果;其中,所述统计分析结果至少包括:将在所述预设时间段内获取到的该至少一种监测参数的多个所述监测值与该监测参数对应的监测标线数据进行比对而得到的结果;
其中,所述在显示界面上显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,包括:当该至少一种监测参数的监测值落入对应的参考区间内时,在显示界面上以第一显示配置显示该监测值,以及,当该至少一种监测参数的监测值落入对应的参考区间外时,在显示界面上以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
其中,在一实施例中,所述监测参数对应的监测标线数据包括:
第一参考区间和/或第二参考区间;其中,
所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受的范围。
在一实施例中,多台医疗设备中的每台所述医疗设备具有所述多种监测参数中的一种或多种监测参数的监测值以及所述一种或多种监测参数对应的监测标线数据,所述方法还包括:
对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步;
其中,所述多台医疗设备包括第一医疗设备和第二医疗设备,所述第一医疗设备具有所述至少部分共有的所述监测参数中的第一监测参数对应的监测标线数据,所述第二医疗设备具有所述至少部分共有的所述监测参数中的第二监测参数对应的监测标线数据,所述对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,所述保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步,包括:
响应于用户在所述患者诊疗信息系统中输入的第一指令,在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,并控制所述通信模块向所述第一医疗设备推送修改后的监测标线数据;和/或,
基于接收到的所述第二医疗设备推送的所述第二监测参数对应的监测标线数据,在所述患者诊疗信息系统中修改所述第二监测参数对应的监测标线数据。
在一实施例中,所述第一指令用于设置所述第一监测参数对应的第一参考区间;
所述响应于用户在所述患者诊疗信息系统中输入的第一指令,在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,包括:
响应于用户在所述患者诊疗信息系统输入的所述第一指令在所述患者诊疗信息系统中修改所述第一监测参数对应的第一参考区间;
在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,所述联动设置操作基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间。
以上关于信息处理方法实施例中未示出的技术方案,可参考上文另一种患者诊疗信息系统中处理器相关的技术方案实现,在此不再赘述。
上述本申请实施例另一种患者诊疗信息系统及信息处理方法中,在确定了患者的个体化诊疗目标,即确定了患者的一种或多种监测参数对应的监测标线数据之后,在诊疗策略的实施过程中,能够在显示界面中同时呈现出患者的监测参数的监测值及诊疗任务信息,并且,对超出对应的监测标线数据及未超出对应的监测标线数据的监测值进行区分呈现,有助于医护人员实时查看患者的诊疗信息及监测信息,且基于上述对监测值的区分呈现,医护人员能够及时获取到监测值超出监测标线数据的情况,从而及时采取相关干预手段。此外,在当前阶段的诊疗结束后,能够基于在诊疗策略实施过程中,即预设时间段内获取到的患者的相关监测参数的监测值,与对应的监测标线数据进行统计分析,并在显示界面中呈现对应的统计分析结果,以助于医护人员能够对诊疗目标的达成情况进行高效评估,并根据需要确定是否进一步调整监测标线数据或诊疗策略,并在此基础上可能执行下一阶段的诊疗策略实施过程。上述患者诊疗信 息系统的全业务流程可循环进行,并且全业务流程中涉及到的监测标线数据、监测值、统计分析结果等信息相互关联,提升了对患者的诊疗过程的信息管理效率,也由此提升了诊疗目标的优化效率。
基于图1或图2示出的患者诊疗信息系统的系统架构,本申请实施例还基于上述系统架构,提供了第三种实现方案。具体地,处理器用于:
确定所述患者的所述多种监测参数中各自对应的监测标线数据,所述监测标线数据包括:第一参考区间和第二参考区间;其中,所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受的范围;
控制所述显示屏显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值;
在检测到所述多种监测参数中存在满足设定条件的特定监测参数的情况下,控制所述显示屏显示所述特定监测参数的第一参考区间和第二参考区间;
其中,所述显示屏显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,包括:当所述多种监测参数中的至少一种监测参数的监测值落入对应的第一参考区间内时,控制所述显示屏以第一显示配置显示该监测值,以及,当该至少一种监测参数的监测值落入对应的第一参考区间外时,控制所述显示屏以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
其中,在一实施例中,所述第一显示配置包括第一颜色,且所述第二显示配置包括第二颜色;和/或,
所述第一显示配置包括第一字体,且所述第二显示配置包括第二字体;和/或,
所述第一显示配置包括第一字号,且所述第二显示配置包括第二字号;和/或,
所述第一显示配置包括不为该监测值显示附加标记,且所述第二显示配置包括为该监测值显示附加标记。
在一实施例中,所述设定条件包括:
检测到关于该特定监测参数的选择指令;或者,检测到该特定监测参数在所述多个时刻的监测值中存在落入对应的参考区间外的监测值。
在一实施例中,所述控制所述显示屏显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,还包括:
控制所述显示屏显示该至少一种所述监测参数在所述多个时刻的监测值对应的趋势线,以呈现该至少一种监测参数在所述多个时刻的监测值。
在一实施例中,所述控制所述显示屏显示该至少一种所述监测参数在所述多个时刻的监测值对应的趋势线,包括:
控制所述显示屏以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线。
在一实施例中,所述制所述显示屏以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线, 包括:
通过颜色更深的视觉效果呈现所述特定监测参数对应的趋势线,以及通过颜色更浅的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线;和/或,
通过线宽更宽的视觉效果呈现所述特定监测参数对应的趋势线,以及通过线宽更窄的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线。
在一实施例中,所述控制所述显示屏显示所述特定监测参数的第一参考区间和第二参考区间,包括:
控制所述显示屏通过填充区域和/或标线标记出所述特定监测参数对应的第一参考区间和第二参考区间。
在一实施例中,所述处理器还用于:
控制所述显示屏将基于所述第一参考区间界定的区域以第一颜色填充,以及将基于所述第二参考区间界定的区域以第二颜色填充。
基于上文实施例的第三种患者诊疗信息系统,本申请实施例还提供了一种信息处理方法,应用于该患者诊疗信息系统中的处理器,该方法包括:
确定患者的所种监测参数中各自对应的监测标线数据,所述监测标线数据包括:第一参考区间和第二参考区间;其中,所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受的范围;
显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值;
在检测到所述多种监测参数中存在满足设定条件的特定监测参数的情况下,显示所述特定监测参数的第一参考区间和第二参考区间;
其中,所述显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,包括:当所述多种监测参数中的至少一种监测参数的监测值落入对应的第一参考区间内时,以第一显示配置显示该监测值,以及,当该至少一种监测参数的监测值落入对应的第一参考区间外时,以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
以上关于信息处理方法实施例中未示出的技术方案,可参考上文第三种患者诊疗信息系统中处理器相关的技术方案实现,在此不再赘述。
上述本申请实施例第三种患者诊疗信息系统及信息处理方法中,在确定了患者的个体化诊疗目标,即确定了患者的一种或多种监测参数对应的监测标线数据之后,在诊疗策略的实施过程中,能够在显示界面中同时呈现出患者的监测参数的监测值及诊疗任务信息,并且,对超出对应的监测标线数据及未超出对应的监测标线数据的监测值进行区分呈现,有助于医护人员实时查看患者的诊疗信息及监测信息,且基于上述对监测值的区分呈现,医护人员能够及时获取到监测值超出监测标线数据的情况,从而及时采取相关干预手段。此外,在上述界面呈现过程中,对于满足设定条件的特定监测参数,还能够自动显示该监测参数对应的第一参考区间和第二参考区间这两类监测标线数据,以助于医护人员能够更为详尽且直观地查看到关于这些监测参数的监测值与对应的监测标线数据的实时相对关系,从而更为及时且准确地采取相关干预手段,也由此 提升了诊疗目标的优化效率。
基于图1或图2示出的患者诊疗信息系统的系统架构,本申请实施例还基于上述系统架构,提供了第四种实现方案。具体地,处理器用于:
确定所述患者的多种监测参数各自对应的监测标线数据,并控制所述显示屏基于所述多种监测参数中的至少部分监测参数对应的监测标线数据输出该至少部分监测参数的监测值;所述监测标线数据包括:第一参考区间和第二参考区间;所述第一参考区间表征所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受范围;
响应于第一指令,设置所述至少部分监测参数中的第一监测参数对应的第一参考区间,并在设置该第一参考区间之后,触发联动设置操作,所述联动设置操作基于所述第一监测参数对应的调整参数及设置后的第一参考区间,设置所述第一监测参数对应的第二参考区间。
其中,在一实施例中,所述基于所述第一监测参数对应的调整参数及设置后的第一参考区间,设置所述第一监测参数对应的第二参考区间,包括:
基于所述调整参数,对所述第一参考区间的上限值和/或下限值进行调整,以设置所述第二参考区间,所述调整参数包括:调整数值或调整百分比。
在一实施例中,所述在设置该第一参考区间之后,触发联动设置操作,包括:
在设置该第一参考区间之后,检测到第一功能处于使能状态的情况下,触发所述联动设置操作,
所述第一功能处于使能状态下允许在设置所述第一参考区间之后触发所述联动设置操作。
在一实施例中,,对于所述患者诊疗信息系统与所述多台医疗设备共有的监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步。
在一实施例中,所述多台医疗设备包括第一医疗设备和第二医疗设备,所述第一医疗设备具有所述第一监测参数对应的监测标线数据,所述第二医疗设备具有所述至少部分所述共有的监测参数中的第二监测参数对应的监测标线数据;所述对于所述患者诊疗信息系统与所述多台医疗设备共有的监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步,包括:
在设置所述第一监测参数对应的第一参考区间之后,所述处理器向所述第一医疗设备推送所述第一监测参数对应的监测标线数据;和/或,
基于接收到的所述第二医疗设备推送的所述第二监测参数对应的监测标线数据,所述处理器在所述患者诊疗信息系统中修改所述第二监测参数对应的监测标线数据。
在一实施例中,所述控制所述显示屏基于所述多种监测参数中的至少部分监测参数对应的监测标线数据输出该至少部分监测参数的监测值,包括:
当该至少部分所述共有的监测参数的监测值落入对应的参考区间内时,控 制所述显示屏在其显示界面上以第一显示配置显示该监测值,以及,当该至少部分所述共有的监测参数的监测值落入对应的参考区间外时,控制所述显示屏在其显示界面上以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
在一实施例中,所述第一显示配置包括第一颜色,且所述第二显示配置包括第二颜色;和/或,
所述第一显示配置包括第一字体,且所述第二显示配置包括第二字体;和/或,
所述第一显示配置包括第一字号,且所述第二显示配置包括第二字号;和/或,
所述第一显示配置包括不为该监测值显示附加标记,且所述第二显示配置包括为该监测值显示附加标记。
在一实施例中,所述控制所述显示屏基于所述多种监测参数中的至少部分监测参数对应的监测标线数据输出该至少部分监测参数的监测值,包括:
控制所述显示屏在其显示界面上显示该至少部分监测参数在所述多个时刻的监测值对应的趋势线,以呈现该至少部分监测参数在所述多个时刻的监测值;以及,
控制所述显示屏在其显示界面上通过填充区域和/或标线呈现该至少部分监测参数对应的参考区间。
在一实施例中,所述处理器,还用于:
在检测到该至少部监测参数中存在满足设定条件的特定监测参数的情况下,在其显示界面上以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线;其中,
所述设定条件包括:
检测到关于该特定监测参数的选择指令;或者,检测到该特定监测参数在所述多个时刻的监测值中存在落入对应的参考区间外的监测值。
在一实施例中,所述以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的特定监测参数对应的趋势线,包括:
通过颜色更深的视觉效果呈现所述特定监测参数对应的趋势线,以及通过颜色更浅的视觉效果呈现所述特定监测参数以外的特定监测参数对应的趋势线;和/或,
通过线宽更宽的视觉效果呈现所述特定监测参数对应的趋势线,以及通过线宽更窄的视觉效果呈现所述特定监测参数以外的特定监测参数对应的趋势线。
在一实施例中,所述控制所述显示屏在其显示界面上通过填充区域和/或标线呈现该至少部分监测参数对应的参考区间,包括:
将基于所述第一参考区间界定的区域以第一颜色填充,以及将基于所述第二参考区间界定的区域以第二颜色填充;和/或,
通过第一颜色的标线框定所述第一参考区间界定的区域,以及通过第二颜色的标线框定所述第二参考区间界定的区域。
基于上文实施例的第四种患者诊疗信息系统,本申请实施例还提供了一种 信息处理方法,应用于该患者诊疗信息系统中的处理器,该方法包括:
确定患者的多种监测参数各自对应的监测标线数据,并基于所述多种监测参数中的至少部分监测参数对应的监测标线数据输出该至少部分监测参数的监测值;所述监测标线数据包括:第一参考区间和第二参考区间;所述第一参考区间表征所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受范围;
响应于第一指令,设置所述至少部分监测参数中的第一监测参数对应的第一参考区间,并在设置该第一参考区间之后,触发联动设置操作,所述联动设置操作基于所述第一监测参数对应的调整参数及设置后的第一参考区间,设置所述第一监测参数对应的第二参考区间。
其中,在一实施例中,多台医疗设备中的每台所述医疗设备具有所述多种监测参数中的一种或多种监测参数的监测值以及所述一种或多种监测参数对应的监测标线数据,所述方法还包括:
对于与所述多台医疗设备共有的监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步。
在一实施例中,所述多台医疗设备包括第一医疗设备和第二医疗设备,所述第一医疗设备具有所述第一监测参数对应的监测标线数据,所述第二医疗设备具有所述至少部分所述共有的监测参数中的第二监测参数对应的监测标线数据;所述对于所述患者诊疗信息系统与所述多台医疗设备共有的监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步,包括:
在设置所述第一监测参数对应的第一参考区间之后,所述处理器向所述第一医疗设备推送所述第一监测参数对应的监测标线数据;和/或,
基于接收到的所述第二医疗设备推送的所述第二监测参数对应的监测标线数据,所述处理器在所述患者诊疗信息系统中修改所述第二监测参数对应的监测标线数据。
以上关于信息处理方法实施例中未示出的技术方案,可参考上文第四种患者诊疗信息系统中处理器相关的技术方案实现,在此不再赘述。
上述患者诊疗信息系统及信息处理方法中,对于监测参数对应的第一参考区间和第二参考区间这两类监测标线数据,在设置了其中的第一参考区间之后,能够根据监测参数对应的调整参数,自动触发联动设置操作,从而自动生成该监测参数对应的第二参考区间。这样,在对患者的诊疗策略实施前进行监测标线数据设置,或者在诊疗策略实施过程中及阶段性结束诊疗策略实施过程之后,对诊疗目标的设置及调整时,只需要设置或调整第一参考区间,就能够联动对对应的第二参考区间进行设置或调整,极大地提高了操作效率,使得诊疗目标能够实时匹配患者病情动态变化,进而提升了诊疗目标的优化效率。
本申请实施例还提供了一种医院网络系统,该医院网络系统包括患者诊疗信息系统和多台医疗设备;所述患者诊疗信息系统分别和所述多台医疗设备通信连接。
所述患者诊疗信息系统中具有患者的多种监测参数的监测值以及所述多种监测参数对应的监测标线数据,所述监测标线数据用于界定其对应的监测参数的参考区间;
所述多台医疗设备中的每台所述医疗设备具有所述多种监测参数中的一种或多种监测参数的监测值以及所述一种或多种监测参数对应的监测标线数据;
对于所述患者诊疗信息系统与所述多台医疗设备共有的监测参数,所述患者诊疗信息系统与所述多台医疗设备之间保持至少部分所述共有的监测参数对应的监测标线数据的同步,并且,所述患者诊疗信息系统与所述多台医疗设备均基于所述至少部分共有的监测参数对应的同步后的监测标线数据输出该监测参数的监测值;其中,所述多台医疗设备包括第一医疗设备和第二医疗设备,所述第一医疗设备具有所述至少部分共有的监测参数中的第一监测参数对应的监测标线数据,所述第二医疗设备具有所述至少部分共有的监测参数中的第二监测参数对应的监测标线数据;
所述对于所述患者诊疗信息系统与所述多台医疗设备共有的监测参数,所述患者诊疗信息系统与所述多台医疗设备之间保持至少部分所述共有的监测参数对应的监测标线数据的同步,包括:
响应于用户在所述患者诊疗信息系统中输入的第一指令,所述患者诊疗信息系统在该系统中修改所述第一监测参数对应的监测标线数据,并向所述第一医疗设备推送修改后的监测标线数据;和/或,
响应于用户在所述第二医疗设备中输入的第二指令,所述第二医疗设备在该设备中修改所述第二监测参数对应的监测标线数据,并向所述患者诊疗信息系统推送修改后的监测标线数据。
其中,在一实施例中,所述监测参数对应的监测标线数据包括:
第一参考区间和/或第二参考区间;其中,
所述第一参考区间表征所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受范围。
在一实施例中,所述第一指令用于设置所述第一监测参数的第一参考区间,所述患者诊疗信息系统在该系统中修改所述第一监测参数对应的监测标线数据,包括:所述患者诊疗信息系统在该系统中修改所述第一监测参数对应的第一参考区间,并在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,所述联动设置操作基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间。
在一实施例中,所述基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间,包括:
基于所述调整参数,对所述第一参考区间的上限值和/或下限值进行调整,以设置所述第二参考区间,所述调整参数包括:调整数值或调整百分比。
在一实施例中,所述在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,包括:
在修改所述第一监测参数对应的第一参考区间之后,检测到第一功能处于 使能状态的情况下,触发所述联动设置操作,
所述第一功能处于使能状态下允许在修改所述第一参考区间之后触发所述联动设置操作。
在一实施例中,在接收到所述患者诊疗信息系统推送的修改后的监测标线数据之后,所述第一医疗设备在操作界面中弹出监测标线数据的配置窗口;所述配置窗口中至少显示该修改后的监测标线数据;
所述第一医疗设备在检测到关于该修改后的监测标线数据的确认指令后,在该设备中修改所述第一监测参数对应的监测标线数据。
在一实施例中,所述患者诊疗信息系统与所述多台医疗设备在各自的显示界面上通过相同的图像显示所述多种监测参数中的至少一种监测参数在多个时刻的监测值以及该至少一种监测参数对应的监测标线数据。
在一实施例中,所述基于所述至少部分共有的监测参数对应的同步后的监测标线数据输出该监测参数的监测值,包括:
当该至少部分所述共有的监测参数的监测值落入对应的同步后的参考区间内时,以第一显示配置显示该监测值,以及,当该至少部分所述共有的监测参数的监测值落入对应的同步后的参考区间外时,以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
在一实施例中,所述第一显示配置包括第一颜色,且所述第二显示配置包括第二颜色;和/或,
所述第一显示配置包括第一字体,且所述第二显示配置包括第二字体;和/或,
所述第一显示配置包括第一字号,且所述第二显示配置包括第二字号;和/或,
所述第一显示配置包括不为该监测值显示附加标记,且所述第二显示配置包括为该监测值显示附加标记。
在一实施例中,所述基于所述至少部分共有的监测参数对应的同步后的监测标线数据输出该监测参数的监测值,包括:
显示该至少部分所述共有的监测参数在多个时刻的监测值对应的趋势线,以呈现该至少部分所述共有的监测参数在所述多个时刻的监测值;以及,
通过填充区域和/或标线呈现该至少部分所述共有的监测参数对应的参考区间。
在一实施例中,所述患者诊疗信息系统在检测到该至少部分所述共有的监测参数中存在满足设定条件的特定监测参数的情况下,在其显示界面上以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线;其中,
所述设定条件包括:
检测到关于该特定监测参数的选择指令;或者,检测到该特定监测参数在所述多个时刻的监测值中存在落入对应的参考区间外的监测值。
在一实施例中,所述以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线,包括:
通过颜色更深的视觉效果呈现所述特定监测参数对应的趋势线,以及通过颜色更浅的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线;和/或,。
通过线宽更宽的视觉效果呈现所述特定监测参数对应的趋势线,以及通过线宽更窄的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线。
在一实施例中,所述通过填充区域和/或标线呈现该至少部分所述共有的监测参数对应的参考区间,包括:
将基于所述第一参考区间界定的区域以第一颜色填充,以及将基于所述第二参考区间界定的区域以第二颜色填充;和/或,
通过第一颜色的标线框定所述第一参考区间界定的区域,以及通过第二颜色的标线框定所述第二参考区间界定的区域。
上文实施例中,该医院网络系统中的患者诊疗信息系统基于图1或图2示出的患者诊疗信息系统的系统架构构建。
基于上文实施例的医院网络系统,本申请实施例还提供了一种信息处理方法,应用于该医院网络系统中的患者诊疗信息系统,该方法包括:
对于所述患者诊疗信息系统与所述多台医疗设备共有的监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步,并且,基于所述至少部分共有的监测参数对应的同步后的监测标线数据输出该监测参数的监测值;其中,所述多台医疗设备包括第一医疗设备和第二医疗设备,所述第一医疗设备具有所述至少部分共有的监测参数中的第一监测参数对应的监测标线数据,所述第二医疗设备具有所述至少部分共有的监测参数中的第二监测参数对应的监测标线数据;
所述对于所述患者诊疗信息系统与所述多台医疗设备共有的监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步,包括:
响应于用户在所述患者诊疗信息系统中输入的第一指令,在该系统中修改所述第一监测参数对应的监测标线数据,并向所述第一医疗设备推送修改后的监测标线数据;和/或,
基于接收到的所述第二医疗设备推送的所述第二监测参数对应的监测标线数据,在所述患者诊疗信息系统中修改所述第二监测参数对应的监测标线数据。
其中,在一实施例中,所述监测参数对应的监测标线数据包括:
第一参考区间和/或第二参考区间;其中,
所述第一参考区间表征所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受范围。
在一实施例中,所述第一指令用于设置所述第一监测参数的第一参考区间,所述在该系统中修改所述第一监测参数对应的监测标线数据,包括:在该系统中修改所述第一监测参数对应的第一参考区间,并在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,所述联动设置操作基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数 对应的第二参考区间。
以上关于信息处理方法实施例中未示出的技术方案,可参考上文第三种患者诊疗信息系统中处理器相关的技术方案实现,在此不再赘述。
上述本申请实施例提供的医院网络系统及信息处理方法中,在患者的个体化诊疗目标设置及调整阶段,对于在医院网络系统的任意设备上对监测标线数据进行的设置或调整操作,能够及时地推送至该医院网络系统的其他设备上,这样,在对患者的诊疗策略实施前进行监测标线数据设置,或者在诊疗策略实施过程中及阶段性结束诊疗策略实施过程之后,对诊疗目标的设置及调整能够及时地同步至医院网络系统的所有相关设备中,极大地提高了操作效率,使得诊疗目标能够实时匹配患者病情动态变化,进而提升了诊疗目标的优化效率。

Claims (67)

  1. 一种患者诊疗信息系统,其特征在于,所述患者诊疗信息系统包括:处理器、通信模块和显示屏,所述通信模块以及所述显示屏分别与所述处理器通信连接;
    所述通信模块,用于获取多台医疗设备采集或生成的患者的多种监测参数的监测值,并将获取的所述监测值传输给所述处理器;
    所述处理器用于:
    确定所述患者的所述多种监测参数各自对应的监测标线数据,所述监测标线数据用于界定其对应的监测参数的参考区间;
    控制所述显示屏在其显示界面上同时显示诊疗任务信息、所述多种监测参数中的至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,以呈现所述多个时刻的监测值是落入对应的所述监测标线数据的参考区间内还是该参考区间外,所述诊疗任务信息用于提示医护实施相应的诊疗任务;
    对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析以得到统计分析结果,控制所述显示屏在其显示界面上输出所述统计分析结果;其中,所述统计分析结果至少包括:将在所述预设时间段内获取到的该至少一种监测参数的多个所述监测值与该监测参数对应的监测标线数据进行比对而得到的结果。
  2. 根据权利要求1所述的系统,其特征在于,所述监测参数对应的监测标线数据包括:
    第一参考区间和/或第二参考区间;其中,
    所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受的范围。
  3. 根据权利要求1或2所述的系统,其特征在于,所述处理器还用于:对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步;
    其中,所述多台医疗设备包括第一医疗设备和第二医疗设备,所述第一医疗设备具有所述至少部分共有的所述监测参数中的第一监测参数对应的监测标线数据,所述第二医疗设备具有所述至少部分共有的所述监测参数中的第二监测参数对应的监测标线数据,所述对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步,包括:
    响应于用户在所述患者诊疗信息系统中输入的第一指令,所述处理器在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,并控制所述通信模块向所述第一医疗设备推送修改后的监测标线数据;和/或,
    基于接收到的所述第二医疗设备推送的所述第二监测参数对应的监测标线数据,所述处理器在所述患者诊疗信息系统中修改所述第二监测参数对应的监测标线数据。
  4. 根据权利要求3所述的系统,其特征在于,所述第一指令用于设置所述第一监测参数对应的第一参考区间;
    所述响应于用户在所述患者诊疗信息系统中输入的第一指令,所述处理器在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,包括:
    响应于用户在所述患者诊疗信息系统中输入的所述第一指令,所述处理器在所述患者诊疗信息系统中修改所述第一监测参数对应的第一参考区间;
    在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,所述联动设置操作基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间。
  5. 根据权利要求4所述的系统,其特征在于,所述基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间,包括:
    基于所述调整参数,对所述第一参考区间的上限值和/或下限值进行调整,以设置所述第二参考区间,所述调整参数包括:调整数值或调整百分比。
  6. 根据权利要求4或5所述的系统,其特征在于,所述在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,包括:
    在修改所述第一监测参数对应的第一参考区间之后,检测到第一功能处于使能状态的情况下,触发所述联动设置操作,
    所述第一功能处于使能状态下允许在修改所述第一参考区间之后触发所述联动设置操作。
  7. 根据权利要求1所述的系统,其特征在于,控制所述显示屏在其显示界面显示该至少一种监测参数在多个时刻的监测值,包括:
    该至少一种监测参数的监测值落入对应的参考区间内的情况下,控制所述显示屏在其显示界面上以第一显示配置显示该监测值,以及,该至少一种监测参数的监测值落入对应的参考区间外的情况下,控制所述显示屏在其显示界面上以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
  8. 根据权利要求7所述的系统,其特征在于,所述第一显示配置包括第一颜色,且所述第二显示配置包括第二颜色;和/或,
    所述第一显示配置包括第一字体,且所述第二显示配置包括第二字体;和/或,
    所述第一显示配置包括第一字号,且所述第二显示配置包括第二字号;和/或,
    所述第一显示配置包括不为该监测值显示附加标记,且所述第二显示配置包括为该监测值显示附加标记。
  9. 根据权利要求1所述的系统,其特征在于,控制所述显示屏在其显示界面上显示至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,包括:
    控制所述显示屏在其显示界面上显示该至少一种监测参数在所述多个时刻的监测值对应的趋势线,以呈现该至少一种监测参数在所述多个时刻的监测值;以及,
    控制所述显示屏在其显示界面上通过填充区域和/或标线呈现该至少一种监测参数对应的参考区间。
  10. 根据权利要求9所述的系统,其特征在于,所述处理器还用于:
    在检测到该至少一种监测参数中存在满足设定条件的特定监测参数的情况下,控制所述显示屏在其显示界面上以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线;其中,
    所述设定条件包括:
    检测到关于该特定监测参数的选择指令;或者,检测到该特定监测参数在所述多个时刻的监测值中存在落入对应的参考区间外的监测值。
  11. 根据权利要求10所述的系统,其特征在于,所述控制所述显示屏在其显示界面上以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线,包括:
    通过颜色更深的视觉效果呈现所述特定监测参数对应的趋势线,以及通过颜色更浅的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线;和/或,
    通过线宽更宽的视觉效果呈现所述特定监测参数对应的趋势线,以及通过线宽更窄的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线。
  12. 根据权利要求7至11任一项所述的系统,其特征在于,所述控制所述显示屏在其显示界面上同时显示诊疗任务信息、所述多种监测参数中的至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,包括:控制所述显示屏在其显示界面上以与所述多台医疗设备相同的图像显示该至少一种监测参数在多个时刻的监测值以及该至少一种监测参数对应的监测标线数据。
  13. 根据权利要求2所述的系统,其特征在于,所述控制所述显示屏在其显示界面上输出所述统计分析结果,包括:
    至少针对该至少一种监测参数中的其中一种监测参数,控制所述显示屏在其显示界面上通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,以呈现该其中一种监测参数的所述多个监测值的分布情况与该其中一种监测参数对应的第一参考区间之间的偏差。
  14. 根据权利要求13所述的系统,其特征在于,所述控制所述显示屏在其显示界面上输出所述统计分析结果,还包括:
    控制所述显示屏在其显示界面上显示该其中一种监测参数的达标率,以呈现该其中一种监测参数在所述预设时间段内的所述多个监测值落入该其中一种监测参数对应的第一参考区间内的比率。
  15. 根据权利要求13或14所述的系统,其特征在于,所述控制所述显示 屏在其显示界面上通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:在用于呈现所述多个监测值的分布情况的图形中,通过不同的视觉效果呈现监测值出现的不同频繁程度。
  16. 根据权利要求15所述的系统,其特征在于,所述通过不同的视觉效果呈现监测值出现的不同频繁程度,包括:通过颜色更深的视觉效果呈现出现的频繁程度更高的监测值对应的显示元素。
  17. 根据权利要求13至16任一项所述的系统,其特征在于,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过条形图的方式呈现该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,所述条形图中的每个刻度条表示一个监测值。
  18. 根据权利要求17所述的系统,其特征在于,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过不同的显示方式呈现落入该其中一种监测参数对应的第一参考区间内的监测值和落入该其中一种监测参数对应的第一参考区间外的监测值。
  19. 根据权利要求18所述的系统,其特征在于,所述通过不同的显示方式呈现落入该其中一种监测参数对应的第一参考区间内的监测值和落入该其中一种监测参数对应的第一参考区间外的监测值,包括:以第一颜色显示落入该其中一种监测参数对应的第一参考区间内的监测值对应的刻度条,以第二颜色显示落入该其中一种监测参数对应的第一参考区间外的监测值对应的刻度条。
  20. 根据权利要求19所述的系统,其特征在于,所述以第一颜色显示落入该其中一种监测参数对应的第一参考区间内的监测值对应的刻度条,包括:以更深的第一颜色显示出现的频繁程度更高的监测值对应的刻度条;
    和/或
    所述以第二颜色显示落入该其中一种监测参数对应的第一参考区间外的监测值对应的刻度条,包括:以更深的第二颜色显示出现的频繁程度更高的监测值对应的刻度条。
  21. 根据权利要求13至16任一项所述的系统,其特征在于,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况。
  22. 根据权利要求13至16任一项所述的系统,其特征在于,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及所述预设时间段内的多个监测值的分布情况,包括:通过两个图形分别呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况。
  23. 根据权利要求1或2所述的系统,其特征在于,所述处理器还用于:
    在控制所述显示屏在其显示界面上输出所述统计分析结果之后,响应于用户在所述患者诊疗信息系统中输入的第二指令,在所述患者诊疗信息系统中至少修改该至少一种监测参数对应的监测标线数据。
  24. 根据权利要求23所述的系统,其特征在于,所述显示界面包括第一显示界面和第二显示界面,所述控制所述显示屏在其显示界面上同时显示诊疗任务信息、所述多种监测参数中的至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,包括:控制所述显示屏在所述第一显示界面上同时显示所述诊疗任务信息、该至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据;所述控制所述显示屏在其显示界面上输出所述统计分析结果,包括:控制所述显示屏在所述第二显示界面上输出所述统计分析结果。
  25. 根据权利要求24所述的系统,其特征在于,所述在控制所述显示屏在其显示界面上输出所述统计分析结果之后,响应于用户在所述患者诊疗信息系统中输入的第二指令,在所述患者诊疗信息系统中至少修改该至少一种监测参数对应的监测标线数据,包括:
    响应于用户在所述第一显示界面中输入的所述第二指令,在所述患者诊疗信息系统中至少修改该至少一种监测参数对应的监测标线数据。
  26. 一种患者诊疗信息系统,其特征在于,所述患者诊疗信息系统包括:处理器、通信模块和显示屏,所述通信模块以及所述显示屏分别与所述处理器通信连接;
    所述通信模块,获取多台医疗设备采集或生成的患者的多种监测参数的监测值,并将获取的所述监测值传输给所述处理器;
    所述处理器用于:
    确定所述患者的所述多种监测参数各自对应的监测标线数据,所述监测标线数据用于界定其对应的监测参数的参考区间;
    控制所述显示屏在其显示界面上同时显示诊疗任务信息以及所述多种监测参数中的至少一种监测参数在多个时刻的监测值,所述诊疗任务信息用于提示医护实施相应的诊疗任务;
    对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析以得到统计分析结果,控制所述显示屏在其显示界面上输出所述统计分析结果;其中,所述统计分析结果至少包括:将在所述预设时间段内获取到的该至少一种监测参数的多个所述监测值与该监测参数对应的监测标线数据进行比对而得到的结果;
    其中,所述控制所述显示屏在其显示界面上显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,包括:当该至少一种监测参数的监测值落入对应的参考区间内时,控制所述显示屏在其显示界面上以第一显示配置显示该监测值,以及,当该至少一种监测参数的监测值落入对应的参考区间外时,控制所述显示屏在其显示界面上以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
  27. 根据权利要求26所述的系统,其特征在于,所述第一显示配置包括第 一颜色,且所述第二显示配置包括第二颜色;和/或,
    所述第一显示配置包括第一字体,且所述第二显示配置包括第二字体;和/或,
    所述第一显示配置包括第一字号,且所述第二显示配置包括第二字号;和/或,
    所述第一显示配置包括不为该监测值显示附加标记,且所述第二显示配置包括为该监测值显示附加标记。
  28. 根据权利要求26所述的系统,其特征在于,所述处理器还用于:
    在检测到该至少一种监测参数中存在满足设定条件的特定监测参数的情况下,控制所述显示屏在其显示界面上显示所述特定监测参数对应的监测标线数据;其中,
    所述设定条件包括:
    检测到关于其它监测参数的选择指令;或者,检测到其它监测参数在所述多个时刻的监测值中存在落入对应的参考区间外的监测值。
  29. 根据权利要求28所述的系统,其特征在于,控制所述显示屏在其显示界面上显示该至少一种监测参数在多个时刻的监测值,包括:
    控制所述显示屏在其显示界面上显示该至少一种监测参数在所述多个时刻的监测值对应的趋势线,以呈现该至少一种监测参数在所述多个时刻的监测值;
    所述控制所述显示屏在其显示界面上显示所述特定监测参数对应的监测标线数据,包括:
    控制所述显示屏在其显示界面上通过填充区域和/或标线呈现所述特定监测参数对应的参考区间。
  30. 根据权利要求29所述的系统,其特征在于,所述控制所述显示屏在其显示界面上显示该至少一种监测参数在所述多个时刻的监测值对应的趋势线,包括:
    控制所述显示屏在其显示界面上以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线。
  31. 根据权利要求30所述的系统,其特征在于,所述控制所述显示屏在其显示界面上以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线,包括:
    通过颜色更深的视觉效果呈现所述特定监测参数对应的趋势线,以及通过颜色更浅的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线;和/或,。
    通过线宽更宽的视觉效果呈现所述特定监测参数对应的趋势线,以及通过线宽更窄的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线。
  32. 根据权利要求26至31任一项所述的系统,其特征在于,所述控制所述显示屏在其显示界面上同时显示诊疗任务信息以及所述多种监测参数中的至少一种监测参数在多个时刻的监测值,包括:控制所述显示屏在其显示界面上以与所述多台医疗设备相同的图像显示该至少一种监测参数在多个时刻的监测值。
  33. 根据权利要求26所述的系统,其特征在于,所述监测参数对应的监测标线数据包括:
    第一参考区间和/或第二参考区间;其中,
    所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受的范围。
  34. 根据权利要求26或33所述的系统,其特征在于,所述处理器还用于:对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步;
    其中,所述多台医疗设备包括第一医疗设备和第二医疗设备,所述第一医疗设备具有所述至少部分共有的所述监测参数中的第一监测参数对应的监测标线数据,所述第二医疗设备具有所述至少部分共有的所述监测参数中的第二监测参数对应的监测标线数据,所述对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,所述保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步,包括:
    响应于用户在所述患者诊疗信息系统中输入的第一指令,所述处理器在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,并控制所述通信模块向所述第一医疗设备推送修改后的监测标线数据;和/或,
    基于接收到的所述第二医疗设备推送的所述第二监测参数对应的监测标线数据,所述处理器在所述患者诊疗信息系统中修改所述第二监测参数对应的监测标线数据。
  35. 根据权利要求34所述的系统,其特征在于,所述第一指令用于设置所述第一监测参数对应的第一参考区间;
    所述响应于用户在所述患者诊疗信息系统中输入的第一指令,所述处理器在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,包括:
    响应于用户在所述患者诊疗信息系统输入的所述第一指令,所述处理器在所述患者诊疗信息系统中修改所述第一监测参数对应的第一参考区间;
    在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,所述联动设置操作基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间。
  36. 根据权利要求35所述的系统,其特征在于,所述基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间,包括:
    设置第一参考区间的上限值和/或下限值进行调整,以设置所述第二参考区间,所述调整参数包括:调整数值或调整百分比。
  37. 根据权利要求35或36所述的系统,其特征在于,所述在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,包括:
    在修改所述第一监测参数对应的第一参考区间之后,检测到第一功能处于使能状态的情况下,触发所述联动设置操作,
    所述第一功能处于使能状态下允许在修改所述第一参考区间之后触发所述联动设置操作。
  38. 根据权利要求33所述的系统,其特征在于,所述控制所述显示屏在其显示界面上输出所述统计分析结果,包括:
    至少针对该至少一种监测参数中的其中一种监测参数,控制所述显示屏在其显示界面上通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,以呈现该其中一种监测参数的所述多个监测值的分布情况与该其中一种监测参对应的第一参考区间之间的偏差。
  39. 如权利要求38所述的系统,其特征在于,所述控制所述显示屏在其显示界面上输出所述统计分析结果,还包括:
    控制所述显示屏在其显示界面上显示该其中一种监测参数的达标率,以呈现该其中一种监测参数在所述预设时间段内的所述多个监测值落入该其中一种监测参数对应的第一参考区间内的比率。
  40. 如权利要求38或39所述的系统,其特征在于,所述控制所述显示屏在其显示界面上通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:在用于呈现所述多个监测值的分布情况的图形中,通过不同的视觉效果呈现监测值出现的不同频繁程度。
  41. 如权利要求40所述的系统,其特征在于,所述通过不同的视觉效果呈现监测值出现的不同频繁程度,包括:通过颜色更深的视觉效果呈现出现的频繁程度更高的监测值对应的显示元素。
  42. 如权利要求38至41任一项所述的系统,其特征在于,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过条形图的方式呈现该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,所述条形图中的每个刻度条表示一个监测值。
  43. 如权利要求38至41任一项所述的系统,其特征在于,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过不同的显示方式呈现落入该其中一种监测参数对应的第一参考区间内的监测值和落入该其中一种监测参数对应的第一参考区间外的监测值。
  44. 如权利要求43所述的系统,其特征在于,所述通过不同的显示方式呈现落入该其中一种监测参数对应的第一参考区间内的监测值和落入该其中一种监测参数对应的第一参考区间外的监测值,包括:以第一颜色显示落入该其中一种监测参数对应的第一参考区间内的监测值对应的刻度条,以第二颜色显示落入该其中一种监测参数对应的第一参考区间外的监测值对应的刻度条。
  45. 如权利要求44所述的系统,其特征在于,所述以第一颜色显示落入该其中一种监测参数对应的第一参考区间内的监测值对应的刻度条,包括:以更深的第一颜色显示出现的频繁程度更高的监测值对应的刻度条;
    和/或
    所述以第二颜色显示落入该其中一种监测参数对应的第一参考区间外的监测值对应的刻度条,包括:以更深的第二颜色显示出现的频繁程度更高的监测值对应的刻度条。
  46. 如权利要求38至41任一项所述的系统,其特征在于,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况。
  47. 如权利要求38至41任一项所述的系统,其特征在于,所述通过至少一个图形呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况,包括:通过两个图形分别呈现该其中一种监测参数对应的第一参考区间及该其中一种监测参数在所述预设时间段内的多个监测值的分布情况。
  48. 根据权利要求26或33所述的系统,其特征在于,所述处理器还用于:
    在控制所述显示屏在其显示界面上输出所述统计分析结果之后,响应于用户在所述患者诊疗信息系统中输入的第二指令,在所述患者诊疗信息系统中至少修改该至少一种监测参数对应的监测标线数据。
  49. 根据权利要求48所述的系统,其特征在于,所述显示界面包括第一显示界面和第二显示界面,所述控制所述显示屏在其显示界面上同时显示诊疗任务信息以及所述多种监测参数中的至少一种监测参数在多个时刻的监测值,包括:控制所述显示屏在所述第一显示界面上同时显示诊疗任务信息以及该至少一种监测参数在多个时刻的监测值;所述控制所述显示屏在其显示界面上输出所述统计分析结果,包括:控制所述显示屏在所述第二显示界面上输出所述统计分析结果。
  50. 根据权利要求49所述的系统,其特征在于,所述在控制所述显示屏在其显示界面上输出所述统计分析结果之后,响应于用户在所述患者诊疗信息系统中输入的第二指令,在所述患者诊疗信息系统中至少修改该至少一种监测参数对应的监测标线数据,包括:
    响应于用户在所述第一显示界面中输入的所述第二指令,在所述患者诊疗信息系统中至少修改该至少一种监测参数对应的监测标线数据。
  51. 一种患者诊疗信息系统,其特征在于,所述患者诊疗信息系统包括:处理器、通信模块和显示屏,所述通信模块以及所述显示屏分别与所述处理器通信连接;
    所述通信模块,用于获取多台医疗设备采集或生成的患者的多种监测参数的监测值,并将获取的所述监测值传输给所述处理器;
    所述处理器,用于:
    确定所述患者的所述多种监测参数中各自对应的监测标线数据,所述监测标线数据包括:第一参考区间和第二参考区间;其中,所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间 表征所述患者在对应的监测参数上的监测值的可接受的范围;
    控制所述显示屏显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值;
    在检测到所述多种监测参数中存在满足设定条件的特定监测参数的情况下,控制所述显示屏显示所述特定监测参数的第一参考区间和第二参考区间;
    其中,所述显示屏显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,包括:当所述多种监测参数中的至少一种监测参数的监测值落入对应的第一参考区间内时,控制所述显示屏以第一显示配置显示该监测值,以及,当该至少一种监测参数的监测值落入对应的第一参考区间外时,控制所述显示屏以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
  52. 根据权利要求51所述的系统,其特征在于,所述第一显示配置包括第一颜色,且所述第二显示配置包括第二颜色;和/或,
    所述第一显示配置包括第一字体,且所述第二显示配置包括第二字体;和/或,
    所述第一显示配置包括第一字号,且所述第二显示配置包括第二字号;和/或,
    所述第一显示配置包括不为该监测值显示附加标记,且所述第二显示配置包括为该监测值显示附加标记。
  53. 根据权利要求51所述的系统,其特征在于,所述设定条件包括:
    检测到关于该特定监测参数的选择指令;或者,检测到该特定监测参数在所述多个时刻的监测值中存在落入对应的参考区间外的监测值。
  54. 根据权利要求51所述的系统,其特征在于,所述控制所述显示屏显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,还包括:
    控制所述显示屏显示该至少一种所述监测参数在所述多个时刻的监测值对应的趋势线,以呈现该至少一种监测参数在所述多个时刻的监测值。
  55. 根据权利要求54所述的系统,其特征在于,所述控制所述显示屏显示该至少一种所述监测参数在所述多个时刻的监测值对应的趋势线,包括:
    控制所述显示屏以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线。
  56. 根据权利要求55所述的系统,其特征在于,所述制所述显示屏以不同的视觉效果分别呈现所述特定监测参数对应的趋势线以及所述特定监测参数以外的其它监测参数对应的趋势线,包括:
    通过颜色更深的视觉效果呈现所述特定监测参数对应的趋势线,以及通过颜色更浅的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线;和/或,
    通过线宽更宽的视觉效果呈现所述特定监测参数对应的趋势线,以及通过线宽更窄的视觉效果呈现所述特定监测参数以外的其它监测参数对应的趋势线。
  57. 根据权利要求51所述的系统,其特征在于,所述控制所述显示屏显示所述特定监测参数的第一参考区间和第二参考区间,包括:
    控制所述显示屏通过填充区域和/或标线标记出所述特定监测参数对应的第一参考区间和第二参考区间。
  58. 根据权利要求57所述的系统,其特征在于,所述处理器还用于:
    控制所述显示屏将基于所述第一参考区间界定的区域以第一颜色填充,以及将基于所述第二参考区间界定的区域以第二颜色填充。
  59. 一种信息处理方法,其特征在于,包括:
    确定患者的多种监测参数各自对应的监测标线数据,所述监测标线数据用于界定其对应的监测参数的参考区间;
    在显示界面上同时显示诊疗任务信息、所述多种监测参数中的至少一种监测参数在多个时刻的监测值及该至少一种监测参数对应的监测标线数据,以呈现所述多个时刻的监测值是落入对应的所述监测标线数据的参考区间内还是该参考区间外,所述诊疗任务信息用于提示医护实施相应的诊疗任务;
    对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析以得到统计分析结果,在显示界面上输出所述统计分析结果;其中,所述统计分析结果至少包括:将在所述预设时间段内获取到的该至少一种监测参数的多个所述监测值与该监测参数对应的监测标线数据进行比对而得到的结果。
  60. 根据权利要求59所述的方法,其特征在于,所述监测参数对应的监测标线数据包括:
    第一参考区间和/或第二参考区间;其中,
    所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受的范围。
  61. 根据权利要求59或60所述的方法,其特征在于,多台医疗设备中的每台所述医疗设备具有所述多种监测参数中的一种或多种监测参数的监测值以及所述一种或多种监测参数对应的监测标线数据,所述方法还包括:
    对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步;
    其中,所述多台医疗设备包括第一医疗设备和第二医疗设备,所述第一医疗设备具有所述至少部分共有的所述监测参数中的第一监测参数对应的监测标线数据,所述第二医疗设备具有所述至少部分共有的所述监测参数中的第二监测参数对应的监测标线数据,所述对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步,包括:
    响应于用户在所述患者诊疗信息系统中输入的第一指令,在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,并控制所述通信模块向所述第一医疗设备推送修改后的监测标线数据;和/或,
    基于接收到的所述第二医疗设备推送的所述第二监测参数对应的监测标线数据,在所述患者诊疗信息系统中修改所述第二监测参数对应的监测标线数据。
  62. 根据权利要求61所述的方法,其特征在于,所述第一指令用于设置所 述第一监测参数对应的第一参考区间;
    所述响应于用户在所述患者诊疗信息系统中输入的第一指令,在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,包括:
    响应于用户在所述患者诊疗信息系统中输入的所述第一指令,在所述患者诊疗信息系统中修改所述第一监测参数对应的第一参考区间;
    在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,所述联动设置操作基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间。
  63. 一种信息处理方法,其特征在于,包括:
    确定患者的多种监测参数各自对应的监测标线数据,所述监测标线数据用于界定其对应的监测参数的参考区间;
    在显示界面上同时显示诊疗任务信息以及所述多种监测参数中的至少一种监测参数在多个时刻的监测值,所述诊疗任务信息用于提示医护实施相应的诊疗任务;
    对预设时间段内获取到的该至少一种监测参数的监测值进行统计分析以得到统计分析结果,在显示界面上输出所述统计分析结果;其中,所述统计分析结果至少包括:将在所述预设时间段内获取到的该至少一种监测参数的多个所述监测值与该监测参数对应的监测标线数据进行比对而得到的结果;
    其中,所述在显示界面上显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,包括:当该至少一种监测参数的监测值落入对应的参考区间内时,在显示界面上以第一显示配置显示该监测值,以及,当该至少一种监测参数的监测值落入对应的参考区间外时,在显示界面上以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
  64. 根据权利要求63所述的方法,其特征在于,所述监测参数对应的监测标线数据包括:
    第一参考区间和/或第二参考区间;其中,
    所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受的范围。
  65. 根据权利要求63或64所述的系统,其特征在于,多台医疗设备中的每台所述医疗设备具有所述多种监测参数中的一种或多种监测参数的监测值以及所述一种或多种监测参数对应的监测标线数据,所述方法还包括:
    对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,保持至少部分所述共有的监测参数对应的监测标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步;
    其中,所述多台医疗设备包括第一医疗设备和第二医疗设备,所述第一医疗设备具有所述至少部分共有的所述监测参数中的第一监测参数对应的监测标线数据,所述第二医疗设备具有所述至少部分共有的所述监测参数中的第二监测参数对应的监测标线数据,所述对于所述患者诊疗信息系统与所述多台医疗设备共有的所述监测参数,所述保持至少部分所述共有的监测参数对应的监测 标线数据在所述患者诊疗信息系统与所述多台医疗设备之间的同步,包括:
    响应于用户在所述患者诊疗信息系统中输入的第一指令,在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,并控制所述通信模块向所述第一医疗设备推送修改后的监测标线数据;和/或,
    基于接收到的所述第二医疗设备推送的所述第二监测参数对应的监测标线数据,在所述患者诊疗信息系统中修改所述第二监测参数对应的监测标线数据。
  66. 根据权利要求65所述的方法,其特征在于,所述第一指令用于设置所述第一监测参数对应的第一参考区间;
    所述响应于用户在所述患者诊疗信息系统中输入的第一指令,在所述患者诊疗信息系统中修改所述第一监测参数对应的监测标线数据,包括:
    响应于用户在所述患者诊疗信息系统输入的所述第一指令在所述患者诊疗信息系统中修改所述第一监测参数对应的第一参考区间;
    在修改所述第一监测参数对应的第一参考区间之后,触发联动设置操作,所述联动设置操作基于所述第一监测参数对应的调整参数以及修改后的第一参考区间,设置所述第一监测参数对应的第二参考区间。
  67. 一种信息处理方法,其特征在于,包括:
    确定患者的所种监测参数中各自对应的监测标线数据,所述监测标线数据包括:第一参考区间和第二参考区间;其中,所述第一参考区间表征对所述患者在对应的监测参数上的监测值期望落入的范围;所述第二参考区间表征所述患者在对应的监测参数上的监测值的可接受的范围;
    显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值;
    在检测到所述多种监测参数中存在满足设定条件的特定监测参数的情况下,显示所述特定监测参数的第一参考区间和第二参考区间;
    其中,所述显示所述多种监测参数中的至少一种所述监测参数在多个时刻的监测值,包括:当所述多种监测参数中的至少一种监测参数的监测值落入对应的第一参考区间内时,以第一显示配置显示该监测值,以及,当该至少一种监测参数的监测值落入对应的第一参考区间外时,以第二显示配置显示该监测值,所述第一显示配置与所述第二显示配置不同。
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CN111493885A (zh) * 2018-08-28 2020-08-07 深圳迈瑞生物医疗电子股份有限公司 生理体征参数显示方法、病人监护设备及介质
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