WO2023000194A1 - Procédé pour régler un mode de fonctionnement d'un dispositif médical, et dispositifs associés - Google Patents

Procédé pour régler un mode de fonctionnement d'un dispositif médical, et dispositifs associés Download PDF

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Publication number
WO2023000194A1
WO2023000194A1 PCT/CN2021/107530 CN2021107530W WO2023000194A1 WO 2023000194 A1 WO2023000194 A1 WO 2023000194A1 CN 2021107530 W CN2021107530 W CN 2021107530W WO 2023000194 A1 WO2023000194 A1 WO 2023000194A1
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Prior art keywords
mode
target
medical device
working
mode switching
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PCT/CN2021/107530
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English (en)
Chinese (zh)
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谈琳
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深圳迈瑞生物医疗电子股份有限公司
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Priority to PCT/CN2021/107530 priority Critical patent/WO2023000194A1/fr
Priority to CN202180100552.8A priority patent/CN117642116A/zh
Publication of WO2023000194A1 publication Critical patent/WO2023000194A1/fr

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons

Definitions

  • the present application relates to the technical field of medical equipment, more specifically, a method for setting a working mode of a medical equipment and related equipment.
  • the main way to set the working mode is that the medical staff manually adjust the parameters of each device according to the monitoring needs.
  • this method results in a large manual workload and low setting efficiency.
  • the present application provides a method for setting a working mode of a medical device and related equipment, so as to efficiently set the working mode of the medical device.
  • an embodiment of the present application provides a method for setting a working mode of a medical device, the method is applied to a monitoring device, and the monitoring device communicates with a plurality of bedside medical devices, and the bedside medical device is provided with at least Two modes of operation; the methods described include:
  • At least one target bedside medical device corresponding to the target mode switching condition is triggered, and the operating mode parameters corresponding to the target mode switching condition are locally executed, so that the local operation of the target bedside medical device The mode is switched to the target working mode;
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the embodiment of the present application provides a method for setting a working mode of a medical device, the method is applied to a central station device, and the central station device communicates with at least one medical device, and the method includes:
  • each target medical device in at least one target medical device group corresponding to the target mode switching condition is triggered, and the working mode parameters corresponding to the target mode switching condition are executed locally, so that the target bedside medical The local working mode of the device is switched to the target working mode;
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the embodiment of the present application provides a method for setting the working mode of a medical device, the method is applied to any medical device in the medical device cluster, and each medical device in the medical device cluster is set with At least two working modes, the working mode has a corresponding preset working time, the mode switching condition corresponding to the working mode is a time condition, and the time condition corresponds to the preset working time; the method includes:
  • the target medical device is any medical device in the medical device cluster, the The target mode switching condition is any mode switching condition corresponding to the medical device;
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the embodiment of the present application provides a method for setting the working mode of a medical device, which is applied to a first medical device, the first medical device is a central station device or a monitoring device, and the first medical device is connected with at least one A second medical device is communicatively connected; the method comprising:
  • mode information corresponding to at least one working mode of the second medical device, wherein the mode information includes working mode parameters and/or mode switching conditions;
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the embodiment of the present application provides a method for setting the working mode of a medical device, which is applied to a first medical device, and the first medical device is communicatively connected with at least one second medical device, and the second medical device saves There is at least one working mode, and the working modes corresponding to different second medical devices are associated with the same working scene; the method includes:
  • the mode switching instruction is used to indicate the target working scene to be set for one or more target second medical devices
  • the embodiment of the present application provides a monitoring device, including:
  • a communication interface used for communicating with multiple bedside medical devices, the bedside medical devices are provided with at least two working modes;
  • a processor configured to determine the mode switching conditions and working mode parameters corresponding to each of the bedside medical devices in each working mode, wherein the mode switching conditions and/or working mode parameters corresponding to each of the bedside medical devices are the same or different; and based on the determined target mode switching condition, trigger at least one target bedside medical device corresponding to the target mode switching condition, locally execute the working mode parameters corresponding to the target mode switching condition, so that the target bedside medical device The local working mode of the medical device is switched to the target working mode;
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the embodiment of the present application provides a central station device, including:
  • a communication interface used for communicating with at least one medical device
  • a processor configured to determine the mode switching conditions corresponding to each medical device group in each working mode, wherein the mode switching conditions corresponding to each medical device group may be the same or different; and based on the determined target mode switching condition, trigger Each target medical device in at least one target medical device group corresponding to the target mode switching condition locally executes the working mode parameters corresponding to the target mode switching condition, thereby switching the local working mode of the target bedside medical device to the target working mode model;
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the embodiment of the present application provides a medical device, the medical device is any medical device in a medical device cluster, and each medical device in the medical device cluster is set with at least two working modes , the working mode has a corresponding preset working time, the mode switching condition corresponding to the working mode is a time condition, and the time condition corresponds to the preset working time; the medical device includes:
  • a processor configured to determine a target operating mode corresponding to the target mode switching condition when the current working time of the target medical device meets the target mode switching condition; the target medical device is any of the medical device clusters A medical device, the target mode switching condition is any mode switching condition corresponding to the medical device; and controlling the target medical device to switch according to the target mode within the preset working time corresponding to the target mode switching
  • the working mode parameter corresponding to the switching condition executes the target working mode
  • a communication interface configured to send a notification instruction to other medical equipment in the medical equipment cluster, so that the other medical equipment can, within the preset working time corresponding to the target mode switching condition,
  • the working mode parameter corresponding to the target working mode executes the target working mode
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the embodiment of the present application provides a medical device, the medical device is a central station device or a monitoring device, and the medical device is communicatively connected with at least one other medical device; the medical device includes:
  • a processor configured to obtain mode information corresponding to at least one working mode of the other medical device, wherein the mode information includes working mode parameters and/or mode switching conditions;
  • a communication interface configured to send mode information of the working mode to the other medical equipment, so that the other medical equipment can set a local working mode based on the mode information corresponding to the at least one working mode;
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the embodiment of the present application provides a medical device, the medical device communicates with at least one other medical device, and the other medical device saves at least one working mode, which is different from the corresponding working mode of other medical devices Associate the same work scene;
  • the medical equipment includes:
  • the human-computer interaction module is used to receive a mode switching instruction, and the mode switching instruction is used to indicate the target working scene to be set for one or more target other medical devices;
  • a processor configured to control the communication interface to send the mode switching instruction to the other target medical device, so that the other target medical device switches the current working mode to the target working mode corresponding to the target working scene.
  • the various embodiments of the present application can not only realize the automatic switching of working modes, but also can switch multiple medical devices in batches in the case of a large number of medical devices, and the mode setting efficiency is high.
  • FIG. 1 is a schematic diagram of a specific implementation of a method for setting a working mode of a medical device provided in an embodiment of the present application;
  • FIG. 2 is a schematic diagram of a specific implementation of another method for setting a working mode of a medical device provided in an embodiment of the present application;
  • FIG. 3 is a schematic diagram of a specific implementation of another method for setting a working mode of a medical device provided in an embodiment of the present application;
  • FIG. 4A is a structural diagram of central monitoring equipment and medical equipment provided by the embodiment of the present application.
  • 4B-4C are schematic diagrams of specific implementations of the two working mode setting methods provided by the embodiment of the present application.
  • Fig. 5 is a schematic structural diagram of a monitoring device provided by an embodiment of the present application.
  • different working modes may need to be set according to different clinical scenarios, so that medical staff can use medical equipment to serve patients more reasonably and appropriately.
  • the environment is relatively noisy during the day.
  • the medical staff need to set the sound and brightness of the medical equipment to Adjust the parameters appropriately.
  • the environment at night is relatively quiet.
  • medical staff often need to adjust the parameters such as the sound and brightness of the medical equipment to prevent the screen brightness of the medical equipment from being too bright or the prompt sound too loud, which will affect the patient. normal rest.
  • an embodiment of the present application provides a method for setting a working mode of a medical device, which can realize automatic switching of working modes.
  • the embodiment of the working mode setting method can be applied to the medical equipment system shown in FIG. 1 , and the medical equipment system includes a first medical equipment and at least one second medical equipment communicatively connected with the first medical equipment.
  • first and second are only to distinguish medical equipment, and do not constitute other limitations.
  • the method for setting the working mode of a medical device is specifically applied to a first medical device
  • the first medical device may specifically be a medical device with a monitoring function such as a monitor (for ease of description, the device is called a monitoring device), Or it can also be a medical device with therapeutic functions.
  • the second medical equipment may be a bedside medical equipment, such as a ventilator, an infusion pump, or other types of medical equipment.
  • a communication connection is established between the second medical device and the first medical device, which may be a communication connection established to meet the requirements of working mode settings, or it may be a communication connection established according to the needs of daily medical treatment or management .
  • the monitoring device communicates with multiple bedside medical devices, and the bedside medical devices are configured with at least two working modes.
  • the working mode may include a mode of executing a preset workflow, or not performing work may also be considered as a working mode.
  • a method for setting a working mode of a medical device applied to a monitoring device may include:
  • Step A1 Determine the mode switching conditions and working mode parameters corresponding to each bedside medical device in each working mode, wherein the mode switching conditions and/or working mode parameters corresponding to each bedside medical device are the same or different.
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the bedside medical equipment can switch between multiple working modes.
  • the monitoring equipment controls the bedside medical equipment to switch to a certain working mode.
  • the working modes and specify the switching conditions corresponding to each working mode and the mode parameters corresponding to the working modes, wherein the switching conditions can be specifically called mode switching conditions, and the mode parameters can be specifically called working mode parameters.
  • the settable working mode of the bedside medical device can be one or more.
  • different working modes are suitable for different working scenarios.
  • the working scenarios can be determined by the characteristics of the working environment or the working time period and other conditions.
  • the day mode is suitable for daytime monitoring scenarios
  • the night mode is suitable for night monitoring scenarios.
  • the mode parameters of the working modes of different bedside medical devices may be the same or different, and the mode switching conditions corresponding to different working modes may be the same or different.
  • One way for the monitoring device to determine the above information is that the local pre-stored by the monitoring device can be obtained locally. Alternatively, the information is read from each point of care medical device.
  • Step A2 Based on the determined target mode switching condition, trigger at least one target bedside medical device corresponding to the target mode switching condition, and locally execute the working mode parameters corresponding to the target mode switching condition, so that the local The working mode switches to the target working mode.
  • the target mode switching condition is any one of the mode switching conditions corresponding to the bedside medical equipment, and when the content of a certain mode switching condition is satisfied, the mode switching condition is the target mode switching condition.
  • the mode switching condition is a time condition
  • the certain mode switching condition is the target mode switching condition.
  • a specific implementation method is to determine whether there is a mode switching condition fulfilled based on the current working time of the monitoring device, and if so, determine the mode switching condition fulfilled as the target mode switching condition.
  • the way to determine the target mode switching condition is that the monitoring device can monitor the working status of each bedside medical device, and monitor whether the working status of the bedside medical device satisfies any of the corresponding working conditions of the bedside medical device.
  • the mode switching condition for the mode If the working state of any bedside medical device satisfies the mode switching condition of any working mode corresponding to the bedside medical device, the switching condition of any working mode is determined as the target mode switching condition.
  • the mode switching conditions can be various, for example, the mode switching conditions are related to various time periods of the day, related to the brightness and sound of the device, and so on.
  • the content of the working state corresponds to the content of the mode switching condition, and the working state of the corresponding content is monitored for which type of mode switching condition needs to be met. For example, if the mode switching condition is related to each time period of the day, the monitored working status is the equipment time of the bedside medical equipment; another example, if the mode switching condition is related to brightness and sound, then the monitored working status is the bedside medical equipment Ambient brightness and sound for work.
  • a specific implementation method is that the monitoring device can obtain the working parameters of the bedside medical device from the bedside medical device, such as the current device time, current mode parameters, etc., and judge the working status of the bedside medical device according to the obtained working parameters Whether the mode switching condition is met. It can be understood that, if a certain type of working state needs to be judged, the working parameters that can represent this type of working state can be obtained from the bedside medical device.
  • the monitoring device monitors its own working state, and determines its own working state as the working state of the bedside medical device.
  • different working modes correspond to different time periods, and the time periods of the working modes corresponding to each bedside medical device are the same.
  • each bedside medical device communicatively connected with the monitoring device can simultaneously enter the working mode corresponding to the same time period, and exit the working mode corresponding to the same time period at the same time.
  • the monitoring device monitors whether the working time point of the monitoring device itself reaches the time period of any working mode; if the monitoring result is yes, it indicates that the working status of any bedside medical device meets the requirements of any bedside medical device. Mode switching condition for any working mode.
  • the monitoring device uses its own working time point (device time) as the working time point (device time) of the bedside medical device connected to it in communication, and monitoring its own working time point can realize monitoring of the bedside medical device. Monitoring of working time points of medical equipment.
  • the clock calibration of the monitoring equipment and the bedside medical equipment can be performed in advance to synchronize the equipment time of each medical equipment.
  • the bedside medical device After determining the target mode switching condition, trigger the bedside medical device corresponding to the target mode switching condition (the bedside medical device may be called the target bedside medical device) to perform mode switching, for example, generate a mode switching instruction, and send it to the bedside medical device
  • the mode switching command is used to trigger switching.
  • the target bedside medical device may be any one or more of multiple bedside medical devices communicatively connected to the monitoring device, and the specific number is determined by the actual monitoring situation. Specifically, the monitoring device determines the bedside medical device that satisfies the mode switching condition, and after generating a corresponding mode switching instruction, sends the mode switching instruction to the bedside medical device.
  • the specific implementation process of triggering switching is that the mode switching command can carry the relevant information of the working mode that needs to be set (that is, the working mode corresponding to the target mode switching condition, which can be called the target working mode). information, such as the working mode identification, etc., after receiving the mode switching instruction, the bedside medical device sets its own working mode to the working mode according to the instruction of the mode switching instruction. It can be understood that the working mode is determined by the mode parameter, and after obtaining the mode parameter of the working mode, loading the mode parameter is equivalent to completing the setting of the working mode.
  • the specific implementation process of triggering switching is that the monitoring device sends a mode switching command corresponding to the mode switching to each bedside medical device corresponding to the target mode switching condition based on the determined target mode switching condition , to indicate that the bedside medical device corresponding to the target mode switching condition switches the local working mode to the target working mode corresponding to the target mode switching condition based on the corresponding working mode parameter.
  • the corresponding working mode parameter specifically refers to the working mode parameter corresponding to the target mode switching condition.
  • the working mode parameters can be pre-stored in the target bedside medical device, or can be sent from the monitoring device to the bedside medical device through a mode switching command. The following two cases will be described respectively.
  • the monitoring device After the monitoring device generates a mode switching command, it sends a mode switching command to the bedside medical device corresponding to the target mode switching condition to instruct the bedside medical device corresponding to the target mode switching condition based on the pre-stored local working mode parameters , switch the local working mode to the target working mode corresponding to the target mode switching condition.
  • the bedside medical device in Figure 1 may have pre-stored working mode parameters locally, then the specific implementation process of step 1.4 is that the bedside medical device determines the target working mode parameter corresponding to the target mode switching condition from the locally stored working mode parameters , execute the target working mode parameter to switch the local working mode to the target working mode.
  • the bedside medical device pre-stores the working mode parameters, which means that the bedside medical device may have stored the working mode parameters before receiving the mode switching instruction.
  • pre-storage may be that the operator pre-customizes the mode parameters of the working modes of each bedside medical device on each bedside medical device; another implementation is that the monitoring device determines the bedside medical device
  • the mode information of at least one working mode, the mode information includes working mode parameters and/or mode switching conditions; sending the mode information of at least one working mode to the bedside medical device, so that the bedside medical device saves the mode information of at least one working mode .
  • the mode information of the working mode stored in the monitoring device is not defined by the operator on the bedside medical device, but the mode information sent by the monitoring device is received and stored.
  • the mode information sent by the monitoring device can be uniformly defined by the operator on the monitoring device, that is, the monitoring device responds to the user's custom operation of the mode information, and determines the user-defined mode information as the bedside medical device. Mode information for the working mode.
  • the mode switching command generated by the monitoring device carries the working mode parameters corresponding to the target mode switching condition, and sends the mode switching command corresponding to the mode switching to the target bedside medical device corresponding to the target mode switching condition to indicate that the target mode is different from the target mode.
  • the target bedside medical device corresponding to the switching condition switches the local working mode to the target working mode corresponding to the target mode switching condition based on the working mode parameter carried in the mode switching instruction.
  • the working mode parameter is sent to the target bedside medical device together with the mode switching command.
  • the mode switching command sent in step 1.3 in Figure 1 can carry working mode parameters, then the specific implementation process of step 1.4 is that the bedside medical equipment executes the working mode parameters in the mode switching command to switch the local working mode to the target working mode model.
  • the bedside medical equipment determines the working mode parameters corresponding to the target mode switching conditions, and executes the working mode parameters corresponding to the target mode switching conditions locally, thereby switching the local working mode of the bedside medical equipment to target working mode.
  • the monitoring device determines the mode switching conditions and working mode parameters corresponding to each working mode of the bedside medical device connected to it in communication, and determines the target After the mode switching condition, at least one target bedside medical device corresponding to the target mode switching condition is triggered, and the working mode parameters corresponding to the target mode switching condition are executed locally, thereby switching the local working mode of the target bedside medical device to the target working mode .
  • This embodiment can not only realize automatic switching of working modes, but also can switch multiple bedside medical devices in batches when there are a large number of bedside medical devices, and the mode switching efficiency is high.
  • the monitoring device is also provided with at least two working modes, and the mode switching conditions and/or working mode parameters corresponding to each working mode are the same or different. If the monitoring device itself satisfies the target mode switching condition, for example, when the mode switching condition is a time condition, the working time point of the monitoring device reaches the time period of any working mode. In this case, the monitoring device may also determine a target working mode corresponding to any one of the working modes in its own working mode, and then set its own working mode as the target working mode.
  • the monitoring device and the bedside medical device can switch their work synchronously model.
  • the medical personnel customize the mode information of the working mode of the bedside medical equipment, specifically including mode parameters and mode switching conditions.
  • the medical personnel customize two working modes on the bedside medical device: a daytime mode and a nighttime mode.
  • the mode parameters of the two working modes such as volume, brightness, and alarm threshold, are different, and need to be set according to the characteristics of their respective monitoring scenarios. For example, at night, the basic sign value of some patients will be low due to sleep. In order to avoid worthless alarms caused by frequent overruns, the alarm threshold can be adjusted appropriately.
  • the mode parameters can also include the setting of some special functions, such as night mode can suspend non-invasive blood pressure measurement, day mode and night mode adopt different treatment modes, including but not limited to ventilation mode of ventilator, infusion pump mode of administration, etc.
  • medical staff can also customize the mode switching conditions of day mode and night mode, for example, define the time period corresponding to day mode as 07:00-19:00, and the time period corresponding to night mode as 19:00-07:00 (the next day); or, it can be set according to the shift time of the nurses. For example, if the nurses in the hospital use three shifts, they can set three working modes: day shift mode, evening shift mode and night shift mode, and the corresponding time periods are 8:00- 17:00, 17:00-22:00, 22:00-8:00 (next day).
  • the customized working mode may also include a private mode
  • the working scene associated with the private mode is a visiting scene.
  • some hospital departments are visiting time at 3-4 pm every day.
  • a privacy mode can be set.
  • the display interface in the privacy mode includes relatively few or rough contents.
  • the bedside medical device stores the mode information customized by the medical staff locally.
  • the monitoring device After the clock synchronization between the monitoring device and the bedside medical device, the monitoring device monitors its own device time, and if the device time enters a certain time period, it generates a mode switching instruction corresponding to the time period and sends it to each bedside medical device. After receiving the mode switching instruction, the bedside medical device loads the mode parameter corresponding to the mode switching instruction, so as to set its own working mode as the corresponding working mode.
  • the monitoring device monitors that the device time is 07:00, it will generate a mode switching instruction corresponding to the daytime mode and send it to the bedside medical device, and the bedside medical device will load the mode parameters of the daytime mode, such as volume, brightness, alarm threshold, and treatment mode , special function settings, etc., so as to set its own working mode to day mode.
  • the setting method of the night mode is the same, and the monitoring device controls each bedside medical device to enter the night mode according to its own device time.
  • the first medical device automatically monitors the working state of the bedside medical device, and switches the mode of the first medical device according to the working state of the second medical device.
  • the operator can also manually switch the working modes of each second medical device with one key.
  • the medical equipment system includes a first medical equipment and at least one second medical equipment communicatively connected with the first medical equipment.
  • the first medical device may be a monitor
  • the two second medical devices communicatively connected to the first medical device are bedside medical devices such as a ventilator and an infusion pump.
  • the second medical device has at least one working mode stored in advance. It can be understood that, if there are multiple second medical devices, the mode parameters of the working modes among the second medical devices may not be completely the same.
  • the ventilator can be set to two working modes, normal mode and quiet mode, but the infusion pump can be set to two working modes, day mode and night mode; the quiet mode of the ventilator includes the mode parameter of interface display content, but the infusion pump Night mode for pumps does not have this mode parameter; alarm thresholds for ventilators are not the same as alarm thresholds for infusion pumps, etc.
  • the working modes are not the same, there is a corresponding relationship between certain working modes of each medical device, and the corresponding relationship is reflected in that these working modes are associated with the same working scene. For example, both the normal mode of the ventilator and the daytime mode of the infusion pump are associated with the daytime scene, and the quiet mode of the ventilator and the nighttime mode of the infusion pump are both associated with the nighttime scene.
  • this embodiment of the working mode setting method is applied to the first medical device, specifically including steps 2.1-2.2.
  • the first medical device can receive a mode switching instruction from the operator, and when the operator thinks that each second medical device needs to be set to a working mode in a certain working scenario, the operator can input the mode switching instruction to the first medical device.
  • the first medical device can provide virtual buttons, such as setting controls displayed on the touch screen, or the first medical device is provided with physical buttons, and the operator touches the virtual buttons or physical buttons to input mode switching instructions;
  • the second A medical device is provided with a voice recognition module, and the operator can input mode switching instructions through voice;
  • the first medical device is provided with an image recognition module, and the operator can input mode switching instructions through actions or gestures;
  • the first medical device is provided with a communication module, The operator can send a mode switching instruction to the first medical device through the terminal device, so as to realize remote input.
  • the mode switching instruction is used to instruct the operator to set a target working scene, such as a daytime working scene.
  • a target working scene such as a daytime working scene.
  • the touch screen displays a "daytime scene" control, and the operator touches the control to input a mode switching instruction indicating that the target working scene is a daytime scene.
  • the first medical device After receiving the mode switching instruction, the first medical device sends the mode switching instruction to the second medical device communicated with itself. It should be noted that if the operator does not select the target second medical device to be sent, the mode switching instruction may be sent to the default second medical device, for example, sent to all second medical devices connected by communication. Of course, in the case where the operator designates a target second medical device, it may be transmitted only to the designated target second medical device.
  • the second medical device after the second medical device receives the mode switching instruction, it can determine its own working mode associated with the target scene according to the target working scene indicated by the mode switching command, so that its own working mode Set to the determined working mode.
  • the ventilator is set to the normal mode after receiving the mode switching command
  • the infusion pump is set to the daytime mode after receiving the mode switching command.
  • the first medical device can provide a mode setting function such as "one-key switching", through which the operator can perform batch mode setting for each second medical device , the operation mode is more flexible and convenient.
  • the first medical device can also set the working mode synchronously. Specifically, in response to the mode switching instruction, the first medical device sets the working mode of the first medical device to the working mode corresponding to the target working scene.
  • the first medical device also stores at least one configurable working mode. After receiving the mode switching instruction, it is similar to the switching of the second medical device, and determines the corresponding working mode from the working modes stored in itself for setting.
  • the operator can customize the mode information of the working mode of the second medical device on the first medical device.
  • the user-defined mode information is determined as the mode information of the working mode of the second medical device; wherein the mode information includes mode parameters and/or mode switching conditions, and the mode parameters include at least the following One item: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode, the mode switching condition includes the time period corresponding to the working mode; sending mode information of at least one working mode to the second medical device, so that the second medical device saves Mode information of at least one working mode.
  • the second medical device can also monitor itself and switch working modes. See Fig. 3, which shows the flow of another embodiment of the working mode setting method, which is applied to the first medical device. As shown in Figure 3, the method embodiment specifically includes steps 3.1-3.4.
  • the first medical device determines mode information of at least one working mode of the second medical device, and the mode information includes mode parameters and/or mode switching conditions.
  • the first medical device obtains the mode information of the working mode of the second medical device in advance, and the obtaining method may be sent by other devices (that is, receiving the mode information of at least one working mode sent by other devices communicatively connected with the first medical device, and the The mode information is determined as the mode information of the second medical device), and the operator can also customize the mode information of the second medical device on the first medical device (that is, in response to the user's mode information customization operation, the user-defined The mode information is determined as the mode information of the working mode of the second medical device).
  • the mode parameter includes at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode, and treatment mode, and the mode switching condition includes a time period corresponding to the working mode.
  • the first medical device sends the mode information of the working mode to the second medical device corresponding to the working mode.
  • the first medical device After obtaining the mode information of a second medical device, the first medical device sends the mode information to the second medical device. If the mode information of multiple second medical devices is obtained, the first medical device may send them to the second medical devices in batches, or send them to the second medical devices separately.
  • the second medical device stores mode information of at least one working mode.
  • the second medical device After the second medical device receives the mode information of at least one working mode sent by the first medical device, the second medical device saves the mode information.
  • the second medical device determines the target mode parameter and sets the working mode according to the target mode parameter.
  • the second medical device monitors whether its own working state meets the mode switching condition of a certain working mode. If the mode switching condition of a certain working mode is satisfied, the second medical device determines in the mode information of at least one working mode stored in itself.
  • the mode parameters corresponding to the working mode may be referred to as target mode parameters.
  • the second medical device loads the target mode parameter to set its own working mode as the working mode defined by the target mode parameter. The second medical device implements this working mode.
  • the second medical device can monitor whether the working time of the second medical device reaches the time period of any working mode; wherein the monitoring result is used to indicate that the working state of the second medical device satisfies any mode Toggle condition.
  • the first medical device sends the mode information of the working mode to the second medical device, and each second medical device monitors its own working status and Set its own working mode according to the working status.
  • the first medical device can be set to a certain working mode in cooperation with each second medical device, and of course, the first medical device itself can control itself to switch the working mode according to the monitoring results. No consideration is given to the control of the switching of the working mode of the second medical device.
  • the first medical device in each of the foregoing embodiments may specifically be a central monitoring device, and the central monitoring device may be called a central station or a central station device.
  • the central monitoring equipment can communicate with various types of medical equipment in each department and ward to realize the setting of the working mode of a large number of medical equipment.
  • the central station equipment can also switch the working mode of the medical equipment in batches through the medical equipment group.
  • the embodiment of the present application provides a method for setting the working mode of the medical equipment applied to the central station equipment, the method includes:
  • the mode switching conditions corresponding to each medical equipment group in each working mode can be the same or different; based on the determined target mode switching conditions, trigger the corresponding target mode switching conditions
  • Each target medical device in at least one target medical device group locally executes the working mode parameter corresponding to the target mode switching condition, thereby switching the local working mode of the target bedside medical device to the target working mode; wherein, the working mode parameter includes At least one of the following: operating volume, interface brightness, alarm threshold, monitoring mode, and therapy mode.
  • each working mode corresponds to an expected working time
  • each mode switching condition includes at least one time condition
  • the time condition corresponds to the working time
  • one or more medical devices can be divided into the same medical device group, and each medical device in the same medical device group uniformly accepts the mode switching instruction of the central station device, and the central station device controls the mode switching of the medical device group Reference may be made to the above-mentioned control process of the monitoring device on the bedside medical device.
  • the medical equipment group may also include monitoring equipment, and the mode switching control process of the medical equipment in the medical equipment group by the central station equipment may be transferred to the monitoring equipment for completion by the monitoring equipment.
  • the central station device sends the target mode switching condition to the monitoring equipment, and the target mode switching condition is used to instruct the monitoring equipment to send the mode to each medical equipment in the target medical equipment group.
  • a switching instruction, the mode switching instruction is used to instruct each medical device in the target medical device group to locally execute the working mode parameters corresponding to the target mode switching condition, so as to switch the local working mode of the target bedside medical device to the target working mode; And, monitor the current working mode of each medical device in the target medical device group through the monitoring device.
  • the central station equipment communicates with at least one medical equipment, and the working mode setting method may specifically include steps 4.1-4.4.
  • each medical device group corresponds to at least two working modes.
  • the central station device communicates with one or more medical devices, and the types of medical devices may be the same or different.
  • the central station equipment can communicate with the monitors, ventilators and infusion pumps in multiple departments and wards, as shown in Figure 4A and Figure 4B, specifically connecting the monitor in Ward 1, the ventilator in Ward 1, and the infusion pump in Ward 1.
  • the central station equipment can group medical equipment.
  • the medical equipment in the same group has unity and identity, and can perform the same treatment on the medical equipment in the same group.
  • the medical equipment in the same group can be set For the same working mode, the alternative working modes of the medical devices in the same group are the same, and so on.
  • At least one medical equipment group can be obtained.
  • One grouping method is user-defined grouping, that is, receiving a user's grouping instruction, grouping at least one medical device based on the grouping instruction, and obtaining at least one corresponding medical device group.
  • Another grouping method is grouping by type, that is, medical devices of the same type are determined as the same medical device group, and the device type can be divided according to the medical function of the device, and the devices that realize the same medical function can be considered as the same device type, so Specifically, the device type may also be referred to as a device function type.
  • the monitor in ward 1 is grouped with the monitor in ward 2
  • the ventilator in ward 1 is grouped
  • the infusion pump in ward 2 is grouped with the infusion pump in ward 3 .
  • Another grouping method is grouping by object, that is, based on medical objects, one or more medical devices associated with the same medical object or the same type of medical objects are determined as the same medical device group.
  • the object of the function the patient.
  • each device in the same ward is associated with the same medical object, the monitor in ward 1 and the ventilator in ward 1 can be grouped together, and the monitor in ward 2 and the infusion machine in ward 2 can be grouped together.
  • the pumps are grouped to group the infusion pumps in Ward 3.
  • Another grouping method is grouping by ward, that is, based on the ward where the medical equipment is located, one or more medical equipment belonging to a ward is determined as the same medical equipment group, and the ward refers to the area where the medical equipment is located.
  • the central station device monitors whether the working state of any medical equipment group meets the mode switching condition of any working mode corresponding to any medical equipment group. It should be noted that not all medical equipment groups may satisfy the mode switching conditions at the same time, and if any one or more medical equipment groups meet a certain mode switching condition, then a mode switching instruction for the medical equipment group may be generated.
  • a medical equipment group can be regarded as a medical equipment in the above embodiment, and the description of steps 4.2 to 4.4 in this embodiment can be referred to in the above embodiment Corresponding descriptions are not repeated here.
  • the working mode setting method applied to the central station equipment can manage a group of medical equipment in batches, and set the working mode of each medical equipment in the same medical equipment group in batches. Management efficiency is more efficient.
  • different working modes correspond to different time periods, and the time periods of the corresponding working modes of each medical equipment group are the same, then the central station equipment monitors whether the working time point of the central station equipment reaches any working time period. If the monitoring result is yes, it means that the working state of any medical equipment group meets the mode switching condition of any working mode corresponding to any medical equipment group.
  • the central station equipment can be set to at least one alternative working mode, and among the at least one alternative working mode, different working modes correspond to different Time period, the central station equipment monitors whether its own working time meets the time period of a certain working mode, and if so, instructs each medical device in the group to set the working mode.
  • day mode For the group consisting of the monitor in ward 1 and the ventilator in ward 1, there are two alternative working modes: day mode and night mode.
  • the time periods corresponding to day mode and night mode are different, and the central station monitors itself According to which time period the working time point enters, the monitors and ventilators in the group are uniformly set to the working mode corresponding to the time period, such as day mode or night mode.
  • the central station equipment can also uniformly set the mode parameters of the medical equipment in the medical equipment group, specifically, at the same time or before sending the mode switching instruction to the medical equipment included in any medical equipment group, to the medical equipment included in any medical equipment group
  • the medical device sends the mode parameter of the working mode.
  • the medical equipment included in any medical equipment group can store the mode parameters of the working mode after receiving the mode parameters. After receiving the mode switching command, it can use the mode parameters of the working mode to set its own working mode to the mode switching command. Indicates the operating mode.
  • the operator can uniformly set the mode parameters of each medical device in the same group on the central monitoring device, specifically, the central station device responds to the user's mode information customization operation,
  • the mode information is determined as the mode information of the working mode of the medical device group.
  • the operator may not directly set the mode parameters on the central station equipment, but set the mode parameters on other equipment such as mobile terminals, and then send the mode parameters to the central station equipment.
  • the mode information includes mode parameters and/or mode switching conditions.
  • the mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode, and treatment mode.
  • the mode switching conditions include the time period corresponding to the working mode. It should be noted that, when the medical devices in the same group are in the same working mode, the specific mode parameters may be the same, or may be different according to the characteristics of the respective devices. For example, although monitors and ventilators in the same group correspond to daytime mode, their respective mode parameters such as screen brightness and alarm threshold can be different.
  • the central station equipment can uniformly send the mode parameters of the same group to each medical device in the group, which is more convenient and efficient for the supervision of medical devices.
  • the central station device can also send mode information to its communication-connected medical device group, and the devices in the medical device group can monitor themselves and switch working modes.
  • the embodiment of the present application provides a method for setting a working mode of a medical device applied to a central station device, and the method may specifically include steps 5.1-5.5.
  • the central station device determines at least one medical device as at least one medical device group.
  • the medical equipment group can be determined in any of the following ways: receiving the user's grouping instruction, and determining the medical equipment corresponding to the grouping instruction as the same medical equipment group; determining the medical equipment with the same type of equipment as the same medical equipment group; or , determine the medical devices associated with the same type of medical objects as the same medical device group.
  • the medical device groups can also be divided according to other methods or standards according to actual needs.
  • the central station equipment determines the mode information of at least one working mode of the medical equipment group, and the mode information includes mode parameters and/or mode switching conditions.
  • the mode information of the working mode of each medical device in the same medical device group may be different, so the mode information of each medical device may be manually set respectively. Therefore, the mode information of the medical equipment group can be set by the operator through the central station equipment, specifically, in response to the user's mode information customization operation, the user-defined mode information is determined as the mode information of the working mode of the medical equipment group; wherein
  • the mode information includes mode parameters and/or mode switching conditions.
  • the mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode, and treatment mode.
  • the mode switching conditions include the time period corresponding to the working mode.
  • each medical device in the same medical device group has unity, and the same working mode is determined for the medical devices in the same medical device group. Therefore, the mode information of the medical device group can be set, and the medical Each medical device in the device group uniformly inherits the mode information of the medical device group. Specifically, obtain the working mode parameters and mode switching conditions of the working mode preset for each medical equipment group, and determine the mode of each medical equipment in each medical equipment group based on the working mode parameters and mode switching conditions of the working mode The working mode parameter corresponding to the switching condition.
  • the central station equipment sends the mode information of the working mode to the medical equipment included in the medical equipment group corresponding to the working mode.
  • sending mode information to a medical device group specifically means sending to each medical device in the medical device group.
  • the medical device saves the mode information of the working mode.
  • Each medical device in the medical device group stores the mode information after receiving it.
  • the mode information stored by the medical device includes mode switching conditions, and may also include mode parameters.
  • the mode switching condition is used to determine the timing of the mode setting.
  • the medical device monitors its own working state according to the mode switching condition. Determine the mode parameter corresponding to the certain mode switching condition, and set its own working mode according to the mode parameter, so as to realize the switching of the working mode.
  • one or more medical devices can be aggregated into a medical device cluster, and the medical devices in the medical device cluster can control each other, that is, when any medical device meets the mode switching conditions, it not only controls the medical device itself to perform the working mode switch, and notify other medical devices to switch working modes at the same time.
  • each medical device in the medical device cluster is provided with at least two working modes, the working modes have corresponding preset working hours, the mode switching conditions corresponding to the working modes are time conditions, and the time conditions correspond to the preset working hours. Therefore, the embodiment of the present application also provides a working mode setting method applied to any medical device in the medical device cluster, the method comprising:
  • the target medical device is any medical device in the medical device cluster, and the target mode switching condition is any mode switching condition corresponding to the medical device. It can be understood that the current working time of a certain medical device may meet a certain mode switching condition. When this situation is established, the certain medical device is called the target medical device, and the mode switching condition is called the target mode switching condition.
  • Control the target medical device to execute the target working mode according to the working mode parameters corresponding to the target mode switching condition within the preset working time corresponding to the target mode switching condition; and send a notification command to other medical devices in the medical device cluster, so that other medical
  • the device executes the target working mode according to the working mode parameters corresponding to the target working mode of other medical devices within the preset working time corresponding to the target mode switching condition.
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the mode switching condition is specifically a time condition
  • the medical device can refer to the above description for judging that the current working time satisfies the mode switching condition, and details are not repeated here.
  • the working time of the target medical device when the working time of the target medical device meets the mode switching condition, it can switch its own working mode to the working mode corresponding to the mode switching condition. Execute the working mode during the time period, for example, the working time period is the daytime time period, then the target medical device executes the daytime mode during the daytime.
  • the target medical device can also notify other medical devices in the cluster to execute the target working mode according to its own working mode parameters within the same preset time.
  • the working mode may include a daytime mode and a nighttime mode; wherein, during the daytime period, the medical device works in the daytime mode, and during the nighttime period, the medical device works in the nighttime mode Next; the working mode parameters corresponding to the day mode are different from the working mode parameters corresponding to the night mode; or, the working mode can include multiple working modes, and each working mode corresponds to a preset nursing shift, and each working mode corresponds to a working The mode parameter is associated with the nursing content of the corresponding nursing shift, and each nursing shift is located in a different time period; or, the working mode privacy mode and normal mode, the privacy mode and the normal mode respectively correspond to preset working hours, and the work corresponding to the privacy mode The mode parameter is different from the working mode parameter corresponding to the normal mode.
  • a monitoring device including:
  • a communication interface used for communicating with multiple bedside medical devices, the bedside medical devices are provided with at least two working modes;
  • a processor configured to determine the mode switching conditions and working mode parameters corresponding to each of the bedside medical devices in each working mode, wherein the mode switching conditions and/or working mode parameters corresponding to each of the bedside medical devices are the same or different; and based on the determined target mode switching condition, trigger at least one target bedside medical device corresponding to the target mode switching condition, locally execute the working mode parameters corresponding to the target mode switching condition, so that the target bedside medical device The local working mode of the medical device is switched to the target working mode;
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the processor is specifically configured to: based on the determined target mode switching condition, send a mode switching instruction to the target bedside medical device corresponding to the target mode switching condition, so as to indicate that the The target bedside medical device corresponding to the target mode switching condition switches the local working mode to the target working mode corresponding to the target mode switching condition based on the corresponding working mode parameter.
  • the processor is specifically configured to: based on the determined target mode switching condition, send a mode switching instruction corresponding to the mode switching to the target bedside medical device corresponding to the target mode switching condition, so as to Instructing the target bedside medical device corresponding to the target mode switching condition, based on the pre-stored local working mode parameters, switching the local working mode to the target working mode corresponding to the target mode switching condition.
  • the processor is specifically configured to: based on the determined target mode switching condition, send a mode switching instruction corresponding to the mode switching to the target bedside medical device corresponding to the target mode switching condition, and use Instructing the target bedside medical device corresponding to the target mode switching condition, based on the working mode parameter carried in the mode switching instruction, switching the local working mode to the target working mode corresponding to the target mode switching condition.
  • the processor is further configured to determine, based on the current working time of the monitoring device, whether there is a mode switching condition fulfilled by the condition, and if so, determine the mode switching condition achieved by the condition as the target mode switching condition .
  • the monitoring device further includes a memory; the memory is used to store mode switching conditions and/or working mode parameters of at least two working modes, and the mode switching conditions and/or working mode parameters corresponding to each working mode The mode parameters are the same or different; correspondingly, the processor is further configured to switch the local working mode of the monitoring device to the target mode switching condition based on the target working mode parameter corresponding to the determined target mode switching condition Corresponding target working mode.
  • the embodiment of the present application also provides a central station device, including:
  • a communication interface used for communicating with at least one medical device
  • a processor configured to determine the mode switching conditions corresponding to each medical device group in each working mode, wherein the mode switching conditions corresponding to each medical device group may be the same or different; and based on the determined target mode switching condition, trigger Each target medical device in at least one target medical device group corresponding to the target mode switching condition locally executes the working mode parameters corresponding to the target mode switching condition, thereby switching the local working mode of the target bedside medical device to the target working mode model;
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the processor is further configured to: determine the at least one medical device as at least one medical device group, where each medical device group corresponds to at least two working modes;
  • the method for determining equipment as at least one medical equipment group includes at least one of the following:
  • the processor is specifically configured to: based on the determined target mode switching condition, send a mode switching instruction to each medical device in the target medical device group corresponding to the target mode switching condition, to instruct the Each medical device in the target medical device group corresponding to the target mode switching condition switches the local working mode to the target working mode based on the corresponding working mode parameter.
  • the processor is specifically configured to: based on the determined target mode switching condition, send a mode switching instruction to each medical device in the target medical device group corresponding to the target mode switching condition, to instruct the Each medical device in the target medical device group corresponding to the target mode switching condition switches the local working mode to the target working mode based on the pre-stored local working mode parameters or the working mode parameters carried in the mode switching instruction .
  • the communication interface is also used to respond to the user's mode information custom operation, and receive the working mode parameters and/or mode switching conditions defined by the user for each medical device in the medical device group; the processing The device is further configured to, based on the received working mode parameters and/or mode switching conditions, determine the working mode parameters corresponding to the mode switching conditions of each medical device.
  • the processor is further configured to obtain working mode parameters and mode switching conditions of the working mode preset for each medical device group, and based on the working mode parameters and mode switching conditions of the working mode, Determine the working mode parameters corresponding to the mode switching conditions of each medical device in each medical device group.
  • each working mode corresponds to an expected working time
  • each mode switching condition includes at least one time condition, and the time condition corresponds to the working time.
  • the processor is further configured to, when the medical equipment in the target medical equipment group includes a monitoring equipment, send the target mode switching condition to the monitoring equipment, and use the target mode switching condition to Instructing the monitoring device to send a mode switching command to each medical device in the target medical device group, the mode switching command is used to instruct each medical device in the target medical device group to locally execute the target mode switching condition corresponding working mode parameters, so as to switch the local working mode of the target bedside medical device to the target working mode; and, through the monitoring device, monitor the current working mode of each medical device in the target medical device group .
  • the embodiment of the present application also provides a medical device, the medical device is any medical device in a medical device cluster, and each medical device in the medical device cluster is set with at least two working modes, the The working mode has a corresponding preset working time, and the mode switching condition corresponding to the working mode is a time condition, and the time condition corresponds to the preset working time; the medical device includes:
  • a processor configured to determine a target operating mode corresponding to the target mode switching condition when the current working time of the target medical device meets the target mode switching condition; the target medical device is any of the medical device clusters A medical device, the target mode switching condition is any mode switching condition corresponding to the medical device; and controlling the target medical device to switch according to the target mode within the preset working time corresponding to the target mode switching
  • the working mode parameter corresponding to the switching condition executes the target working mode
  • a communication interface configured to send a notification instruction to other medical equipment in the medical equipment cluster, so that the other medical equipment can, within the preset working time corresponding to the target mode switching condition,
  • the working mode parameter corresponding to the target working mode executes the target working mode
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the working mode is one of the following:
  • the working mode includes a daytime mode and a nighttime mode; wherein, during the daytime period, the medical device works in the daytime mode, and in the nighttime period, the medical device works in the nighttime mode; the The working mode parameters corresponding to the daytime mode are different from the working mode parameters corresponding to the night mode; The working mode parameter is associated with the nursing content of the corresponding nursing shift, and each nursing shift is located in a different time period; and, the working mode privacy mode and normal mode, the privacy mode and the normal mode respectively correspond to preset work time, the working mode parameters corresponding to the privacy mode are different from the working mode parameters corresponding to the normal mode.
  • An embodiment of the present application provides a medical device, the medical device is a central station device or a monitoring device, and the medical device communicates with at least one other medical device; the medical device includes:
  • a processor configured to obtain mode information corresponding to at least one working mode of the other medical device, wherein the mode information includes working mode parameters and/or mode switching conditions;
  • a communication interface configured to send mode information of the working mode to the other medical equipment, so that the other medical equipment can set a local working mode based on the mode information corresponding to the at least one working mode;
  • the working mode parameters include at least one of the following: working volume, interface brightness, alarm threshold, monitoring mode and treatment mode.
  • the processor is specifically configured to: respond to the mode information customization operation, determine user-defined mode information as the mode information of the working mode of the second medical device; or, receive the mode information related to the second medical device.
  • the mode information of at least one working mode sent by other devices in communication connection with a medical device, and the mode information is determined as the mode information of the second medical device.
  • the mode switching condition includes a time period corresponding to the working mode.
  • the embodiment of the present application also provides a medical device, the medical device is communicatively connected with at least one other medical device, the other medical device saves at least one working mode, and the working modes corresponding to different other medical devices are associated with the same Work scene;
  • the medical equipment includes:
  • the human-computer interaction module is used to receive a mode switching instruction, and the mode switching instruction is used to indicate the target working scene to be set for one or more target other medical devices;
  • a processor configured to control the communication interface to send the mode switching instruction to the other target medical device, so that the other target medical device switches the current working mode to the target working mode corresponding to the target working scene.
  • the processor is further configured to, in response to the mode switching instruction, switch the first medical device from a current working mode to a working mode corresponding to the target working scenario.
  • FIG. 5 provides a system frame diagram of a parameter processing module in a multi-parameter monitor.
  • the multi-parameter monitor has an independent shell, and there is a sensor interface area on the shell panel, which integrates multiple sensor interfaces for connecting with external various physiological sign parameter sensor accessories 511.
  • the shell panel also includes a small LCD display area, and the display 518, input interface circuit 520 and alarm circuit 519 (such as LED alarm area) and so on.
  • the parameter processing module is used for communicating with the host and taking power from the host for external communication and power interface.
  • the parameter processing module also supports an externally inserted parameter module.
  • the plug-in monitor host can be formed by inserting the parameter module. As a part of the monitor, it can also be connected to the host through a cable.
  • the externally inserted parameter module can be used as an external accessory of the monitor.
  • the multi-parameter monitor includes a memory 517 for storing computer programs and various data generated during the related monitoring process.
  • the internal circuit of the parameter processing module is placed in the housing, as shown in FIG. 5 , including a signal acquisition circuit 512 corresponding to at least two physiological sign parameters, a front-end signal processing circuit 513 and a main processor 515 .
  • the main processor 515 can implement various processing-related steps in the above-mentioned various apnea event monitoring methods.
  • the signal acquisition circuit 512 can be selected from an electrocardiogram circuit, a breathing circuit, a body temperature circuit, a blood oxygen circuit, a non-invasive blood pressure circuit, an invasive blood pressure circuit, etc., and these signal acquisition circuits 512 are respectively electrically connected with corresponding sensor interfaces for electrical Connected to sensor accessories 511 corresponding to different physiological sign parameters, its output terminal is coupled to the front-end signal processor, the communication port of the front-end signal processor is coupled to the main processor, and the main processor is electrically connected to the external communication and power interface.
  • the front-end signal processor completes the sampling and analog-to-digital conversion of the output signal of the signal acquisition circuit, and outputs control signals to control the measurement process of physiological signals.
  • These parameters include but not Limited to: ECG, respiration, body temperature, blood oxygen, non-invasive blood pressure and invasive blood pressure parameters.
  • the front-end signal processor can be realized by single-chip microcomputer or other semiconductor devices, and can also be realized by ASIC or FPGA.
  • the front-end signal processor can be powered by an isolated power supply. After simple processing and packaging, the sampled data is sent to the main processor through the isolated communication interface.
  • the front-end signal processor circuit can be coupled to the main processor 515 through the isolated power supply and the communication interface 514 .
  • the reason why the front-end signal processor is powered by the isolated power supply is that the DC/DC power supply isolated by the transformer plays the role of isolating the patient and the power supply equipment.
  • the main purpose is: 1. Isolate the patient, and float the application part through the isolation transformer to make The leakage current of the patient is small enough; 2. Prevent the voltage or energy during defibrillation or electrosurgical application from affecting the main control board and other intermediate circuit boards and devices (guaranteed by creepage distance and electrical clearance).
  • the main processor completes the calculation of the physiological sign parameters, and sends the calculation results and waveforms of the parameters to the host (such as a host with a display, a PC, a central station, etc.) through the external communication and power interface.
  • the external communication and power interface 516 can It is one or a combination of Ethernet (Ethernet), Token Ring (Token Ring), Token Bus (Token Bus) and the LAN interface (FDDI) as the backbone network of these three networks. It can be one or a combination of wireless interfaces such as infrared, bluetooth, wifi, WMTS communication, or one or a combination of wired data connection interfaces such as RS232 and USB.
  • the external communication and power supply interface 516 may also be one or a combination of a wireless data transmission interface and a wired data transmission interface.
  • the host can be any computer equipment such as the host of the monitor, an electrocardiograph, an ultrasonic diagnostic instrument, a computer, etc., and a monitoring device can be formed by installing matching software.
  • the host computer can also be a communication device, such as a mobile phone, and the parameter processing module sends data to the mobile phone supporting Bluetooth communication through the Bluetooth interface to realize remote data transmission.

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Abstract

L'invention concerne un procédé pour régler un mode de fonctionnement d'un dispositif médical. Le procédé comprend : un dispositif de surveillance détermine une condition de commutation de mode et un paramètre de mode de fonctionnement qui correspondent à chaque dispositif médical de chevet dans chaque mode de fonctionnement, la condition de commutation de mode et/ou le paramètre de mode de fonctionnement qui correspondent à chaque dispositif médical de chevet étant identiques ou différents ; et, sur la base d'une condition de commutation de mode cible déterminée, déclencher au moins un dispositif médical de chevet cible correspondant à la condition de commutation de mode cible, et exécuter localement un paramètre de mode de fonctionnement correspondant à la condition de commutation de mode cible, de façon à commuter un mode de fonctionnement local du dispositif médical de chevet cible vers un mode de fonctionnement cible. Par conséquent, la commutation automatique de modes de fonctionnement peut être réalisée ; et lorsqu'il y a un grand nombre de dispositifs médicaux de chevet, la pluralité de dispositifs médicaux de chevet sont commutés par lots, de telle sorte que l'efficacité de réglage de mode est plus élevée. De plus, l'invention concerne en outre un procédé de réglage de mode de dispositif médical appliqué à un dispositif de station centrale, ainsi qu'un dispositif de surveillance, un dispositif médical et un dispositif de station centrale.
PCT/CN2021/107530 2021-07-21 2021-07-21 Procédé pour régler un mode de fonctionnement d'un dispositif médical, et dispositifs associés WO2023000194A1 (fr)

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