WO2020258320A1 - 通气设备配置管理装置、方法、通气设备和计算机存储介质 - Google Patents

通气设备配置管理装置、方法、通气设备和计算机存储介质 Download PDF

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Publication number
WO2020258320A1
WO2020258320A1 PCT/CN2019/093901 CN2019093901W WO2020258320A1 WO 2020258320 A1 WO2020258320 A1 WO 2020258320A1 CN 2019093901 W CN2019093901 W CN 2019093901W WO 2020258320 A1 WO2020258320 A1 WO 2020258320A1
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WIPO (PCT)
Prior art keywords
ventilation
configuration information
configuration
device configuration
ventilation device
Prior art date
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Ceased
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PCT/CN2019/093901
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English (en)
French (fr)
Inventor
黄成华
潘瑞玲
黄继萍
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Shenzhen Mindray Bio Medical Electronics Co Ltd
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Shenzhen Mindray Bio Medical Electronics Co Ltd
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Priority to PCT/CN2019/093901 priority Critical patent/WO2020258320A1/zh
Priority to CN201980093594.6A priority patent/CN113518638B/zh
Publication of WO2020258320A1 publication Critical patent/WO2020258320A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. ventilators; Tracheal tubes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. ventilators; Tracheal tubes
    • A61M16/01Devices for influencing the respiratory system of patients by gas treatment, e.g. ventilators; Tracheal tubes specially adapted for anaesthetising

Definitions

  • the present invention relates to the field of ventilation equipment, in particular to a ventilation equipment configuration management device, method, ventilation equipment and computer storage medium.
  • the ventilation device Before using ventilation equipment such as anesthesia machines, it is usually necessary to set the same configuration information according to actual application requirements. For example, it is necessary to set different ventilation control parameters, alarm limits and mechanical ventilation modes according to the physiological characteristics and conditions of different patient types; however, In related technologies, the ventilation device is a public device, and a user determines that the configuration information of the ventilation device is not applicable to another user. Therefore, a user's modification of the ventilation device configuration information will affect other users' use of the ventilation device.
  • the user usually needs to select the patient type (adult, pediatric or newborn) before using the anesthesia machine to start ventilation, because different patient types have different physiological characteristics and conditions, and may need to set different ventilation control parameters, alarm limits and Mechanical ventilation mode; in actual application, for the convenience of users, anesthesia ventilator manufacturers usually set a set of default ventilation control parameters, alarm limits and ventilation modes for each patient type; for example, for the tidal volume setting, the adult default value is 600ml , The default value for children is 120ml, and the default value for newborns is 20ml.
  • the default value for adults is 12L/min
  • the default value for children is 6L/min
  • the default value for newborns is 2L/min
  • the ventilation mode usually defaults to volume-controlled ventilation for adults, and pressure-controlled ventilation for children.
  • the default values of these different patient types can be customized by the user, that is, the user can change these default values; the change of the default values means that every time a new patient is started, the anesthesia
  • the default ventilation parameters, alarm limits and ventilation modes given by the machine will all change.
  • the anesthesia machine is a public device, not a private device, that is to say, it is possible that multiple anesthesiologists will use this device to perform operations on different patients at different times; changes to the default values of different patient types will definitely affect To other users.
  • doctor A may think that the default value of adult tidal volume is 600 is appropriate, and doctor B thinks that the default value of adult tidal volume is 500ml is more appropriate, that is, there is no national standard for the above-mentioned default value, and different users Usage habits and experience are different.
  • embodiments of the present invention provide a ventilation device configuration management device, method, ventilation device, and computer storage medium.
  • the embodiment of the present invention provides a device for configuration management of ventilation equipment, the device includes: an input device, a memory, and a processor;
  • the input device receives a configuration selection command and outputs it to the processor
  • the memory stores at least two sets of ventilation equipment configuration information
  • the processor selects corresponding ventilation device configuration information from at least two sets of stored ventilation device configuration information according to the received configuration selection command, and generates corresponding ventilation device configuration items.
  • the embodiment of the present invention also provides a ventilation device, including a driving device, a ventilation control device, and a patient breathing circuit, and the ventilation device includes the above-mentioned ventilation device configuration management device.
  • the embodiment of the present invention also provides a method for configuration management of a ventilation device, the method including:
  • the processor selects corresponding ventilation device configuration information from at least two sets of stored ventilation device configuration information according to the received configuration selection command, and generates corresponding ventilation device configuration items.
  • the embodiment of the present invention also provides a computer storage medium on which a computer program is stored, and when the computer program is executed by a processor, the foregoing ventilation device configuration management method is implemented.
  • At least two sets of ventilation device configuration information are stored; the configuration selection command is received and output to the processor; the processor according to the received configuration selection command, from the stored at least two sets of ventilation device configuration information Select the corresponding ventilation equipment configuration information to generate the corresponding ventilation equipment configuration items.
  • Figure 1 is a schematic diagram of the composition structure of a ventilation device in an embodiment of the present invention.
  • Figure 2 is an exemplary structural diagram of an anesthesia machine in an embodiment of the present invention
  • Fig. 3 is an exemplary structural diagram of a ventilator in an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a device for configuration management of ventilation equipment provided by an embodiment of the present invention.
  • Fig. 5 is a first schematic diagram of a ventilation mode configuration according to an embodiment of the present invention.
  • Fig. 6 is a second schematic diagram of a ventilation mode configuration according to an embodiment of the present invention.
  • FIG. 7 is a schematic diagram of sound setting according to an embodiment of the present invention.
  • FIG. 8 is a schematic diagram of loading a user configuration menu according to an embodiment of the present invention.
  • FIG. 9 is a schematic diagram of an entry for the creation, renaming and deletion of ventilation device configuration information according to an embodiment of the present invention.
  • FIG. 10 is a schematic diagram of a rename menu for ventilation device configuration information according to an embodiment of the present invention.
  • Fig. 11 is a flowchart of a method for configuration management of a ventilation device according to an embodiment of the present invention.
  • FIG. 1 is a schematic diagram of the composition structure of a ventilation device in an embodiment of the present invention.
  • the ventilation device 100 may include a driving device 101, a patient breathing circuit 102, and a ventilation control device 103, where:
  • the ventilation control device 103 controls the driving device 101 to provide ventilation support to the patient through the patient breathing circuit 102.
  • the ventilation control device 103 can control the driving device 101 to provide oxygen-enriched gas to the patient through the patient breathing circuit 102.
  • the patient breathing circuit 102 includes an inspiratory branch 1021 and an expiratory branch 1022; and the inspiratory branch 1021 is provided with an inhalation valve, and the expiratory branch 1022 is provided with an exhalation valve.
  • the ventilation device may be an anesthesia machine or a ventilator, or other ventilation devices.
  • FIG. 2 is an exemplary structural diagram of the anesthesia machine in the embodiment of the present invention.
  • the gas breathed by the patient is recycled in a closed patient breathing circuit 102 (this circuit can be implemented based on two one-way valves) with a soda lime tank 203 (used to absorb CO 2 exhaled by the human body); Consumption and leakage of medium gas (such as O 2 etc., absorbed by the human body) and leakage, so it needs to be supplemented continuously.
  • medium gas such as O 2 etc., absorbed by the human body
  • leakage so it needs to be supplemented continuously.
  • This supplementary gas is generally called fresh gas .
  • the formation of the above-mentioned fresh gas includes the following steps:
  • the first step oxygen and balance gas are mixed at different flow rates in the flow monitor 201; here, the balance gas can be air (Air) or N 2 O.
  • the balance gas can be air (Air) or N 2 O.
  • Step 2 After the mixed gas output by the flow monitor 201 passes through the anesthetic volatilization tank 202, fresh gas is formed and delivered to the patient breathing circuit 102;
  • the third step After the fresh gas is delivered to the patient breathing circuit 102, the patient breathing circuit 102 outputs the fresh gas along with the inhaled gas to the patient under the control of the ventilation control device 103, and receives the exhaled breath from the patient.
  • the anesthetic vaporization tank 202 transmits the anesthetic
  • the flow monitor 201 delivers fresh gas
  • the ventilation control device 103 is responsible for passing the patient's breathing circuit.
  • 102 provides mechanical ventilation to the patient, that is, provides the patient with inhaled air and receives the exhaled air from the patient.
  • the ventilator is a device that can artificially replace the autonomous ventilation function, and has been commonly used in respiratory failure, respiratory support treatment and emergency resuscitation caused by various reasons.
  • FIG. 3 is an exemplary structural diagram of the ventilator in the embodiment of the present invention.
  • the ventilator may further include a patient breathing circuit 102, a driving device 101, a ventilation control device 103, and a display 303.
  • the patient breathing circuit 102 is connected to the ventilation control device 103 through the driving device 101, and provides ventilation support to the patient under the control of the ventilation control device 103; optionally, the ventilator may also include a breathing recognition device 301, a breathing recognition device 301 and
  • the display 303 is connected to the ventilation control device 103 respectively.
  • the ventilator may further include a gas source 302 connected to the driving device 101 for providing gas required for the ventilation process under the driving of the driving device 101.
  • an embodiment of the present invention proposes a device for configuration management of a ventilator, which can be applied to the foregoing ventilator.
  • FIG. 4 which shows a ventilation device configuration management apparatus 40 provided by an embodiment of the present invention, which may include: an input device 400, a memory 401, and a processor 402; wherein,
  • the input device 400 receives a configuration selection command and outputs it to the processor 402;
  • the memory 401 stores at least two sets of ventilation equipment configuration information
  • the processor 402 selects corresponding ventilation device configuration information from at least two sets of stored ventilation device configuration information according to the received configuration selection command, and generates corresponding ventilation device configuration items.
  • the aforementioned input device 400 may be a keyboard, mouse, touch screen, microphone, etc., used to receive user instructions;
  • the aforementioned memory 401 may be a volatile memory, such as random access memory (Random Access Memory). , RAM); or non-volatile memory (non-volatile memory), such as read-only memory (Read-Only Memory, ROM), flash memory (flash memory), hard disk (Hard Disk Drive, HDD) or solid-state hard drive ( Solid-State Drive, SSD); or a combination of the foregoing types of memories, and provides instructions and data to the processor 402.
  • volatile memory such as random access memory (Random Access Memory). , RAM); or non-volatile memory (non-volatile memory), such as read-only memory (Read-Only Memory, ROM), flash memory (flash memory), hard disk (Hard Disk Drive, HDD) or solid-state hard drive ( Solid-State Drive, SSD); or a combination of the foregoing types of memories, and provides instructions and data
  • the aforementioned processor 402 may be an Application Specific Integrated Circuit (ASIC), a digital signal processor (Digital Signal Processor, DSP), a digital signal processing device (Digital Signal Processing Device, DSPD), and a programmable logic device (Programmable Logic Device). At least one of Logic Device (PLD), Field Programmable Gate Array (FPGA), Central Processing Unit (CPU), controller, microcontroller, microprocessor, etc. It is understandable that for different ventilation equipment configuration management apparatuses, the electronic devices used to implement the above-mentioned processor functions may also be other, which is not specifically limited in the embodiment of the present invention.
  • ASIC Application Specific Integrated Circuit
  • DSP Digital Signal Processor
  • DSPD Digital Signal Processing Device
  • PROM programmable logic device
  • PLD Logic Device
  • FPGA Field Programmable Gate Array
  • CPU Central Processing Unit
  • controller microcontroller
  • microprocessor microprocessor
  • each set of ventilation equipment configuration information includes the configuration of one or more configuration items for ventilation equipment regarding ventilation control, ventilation display, and equipment use, display, and control.
  • each set of ventilation device configuration information may include ventilation configuration information and/or device configuration information.
  • the implementation of each set of ventilation equipment configuration information can be illustrated by the following examples: example 1, ventilation equipment configuration information includes ventilation configuration information and equipment configuration information; example 2, ventilation equipment configuration information includes only ventilation configuration information; example 3. Ventilation equipment configuration information only includes equipment configuration information.
  • each user can define at least one set of ventilation device configuration information.
  • Different user-defined ventilation device configuration information or different ventilation device configuration information defined by the same user can be different, for example, different user-defined ventilation configuration information Or the device configuration information may be at least partially different.
  • doctor A sets a set of ventilation configuration information
  • doctor B can set a set of ventilation mode configurations different from that of doctor A, which can meet the personalized setting requirements of different doctors for ventilation configuration information
  • doctor A may want the interface to be concise and only display some key information, and doctor B may want to display more details on the interface; then, the technical solution of the embodiment of the present invention can satisfy both doctor A and doctor B.
  • each set of ventilation device configuration information may also include the name of the ventilation device configuration to distinguish different ventilation device configuration information.
  • the name of the ventilation device configuration can be a user-defined name.
  • the user can use his own name, surgical name, and any other name that the user thinks is easy to understand and remember as the default name of a ventilation mode, so that it is convenient for the user To proceed.
  • the ventilation configuration information may include at least one set of ventilation mode configurations; that is, a user can define one set of ventilation mode configurations or multiple sets of ventilation mode configurations according to actual application requirements.
  • users can define multiple sets of ventilation mode configurations for use scenarios such as surgery, postoperative recovery, ventilation support, etc., and can also define multiple sets of ventilation mode configurations for different patient types such as the elderly, adults, children, and newborns.
  • the disease type defines multiple ventilation mode configurations. For example, for laparoscopic surgery, because artificial pneumoperitoneum will cause CO2 to rise, relatively larger tidal volume and breathing rate can be set.
  • a user-defined set of ventilation mode configurations or multiple sets of ventilation mode configurations can correspond to a set of user-defined ventilation device configuration information, or can correspond to user-defined sets of ventilation device configuration information.
  • the ventilation configuration information when the ventilation device configuration information includes ventilation configuration information and device configuration information, the ventilation configuration information may include one or more sets of ventilation mode configurations; when the ventilation device configuration information includes only ventilation configuration information, the ventilation configuration information may include Multi-group ventilation mode configuration.
  • the ventilation mode configuration may include at least ventilation control parameter configuration.
  • the ventilation control parameter configuration is determined according to at least one of the patient type, disease type, usage scenario and other factors; in a specific example, the patient type includes but is not limited to elderly, adult, child, newborn, etc.; Types of diseases include but are not limited to: obesity, diabetes, etc.; usage scenarios include but are not limited to: types of surgery, postoperative recovery, ventilation support and other scenarios.
  • each group of ventilation mode configurations may also include a ventilation mode name to distinguish different ventilation mode configurations.
  • the name of the ventilation mode can be a user-defined name.
  • the user can use his own name, the name of the operation, and any other name that the user thinks is easy to understand and remember as the default name of a ventilation mode, so that it is convenient for the user to operate .
  • the ventilation mode configuration may not include the ventilation mode name.
  • the ventilation mode configuration may also include a ventilation alarm threshold.
  • the ventilation alarm threshold represents a condition that needs to be reached for an alarm; for example, an alarm can be issued when a certain ventilation control parameter reaches a corresponding ventilation alarm threshold.
  • the ventilation alarm threshold can be preset according to actual application requirements.
  • the device configuration information may include at least one set of device configurations.
  • a user can define a set of device configurations or multiple sets of device configurations according to actual application requirements.
  • users can define multiple sets of device configurations for use scenarios such as surgery, postoperative recovery, and ventilation support. They can also define multiple sets of device configurations for different patient types such as the elderly, adults, children, and newborns. Of course, they can also be targeted for The disease type defines multiple device configurations.
  • a user-defined set of device configurations or multiple sets of device configurations can correspond to a set of user-defined ventilation device configuration information, or it can correspond to multiple sets of user-defined ventilation device configuration information. For example, for extracorporeal circulation surgery, some unnecessary alarm settings can be shielded on the anesthesia machine.
  • the device configuration information when the ventilation device configuration information includes ventilation configuration information and device configuration information, the device configuration information may include one or more sets of device configurations; when the ventilation device configuration information includes only device configuration information, the device configuration information may include multiple sets of devices Configuration.
  • each device configuration may include one or more of interface layout, alarm setting, and display configuration.
  • the interface layout includes but is not limited to display information (including ventilation information, waveforms, parameters, patient information, etc.) arrangement, control area (control input interface, etc.) arrangement, etc.
  • alarm settings include but are not limited to alarm volume, alarm Lighting, etc., display configuration including but not limited to display brightness, display mode, etc.
  • each device configuration may also include the device configuration name to distinguish different device configurations.
  • the device configuration name can be a user-defined name.
  • the user can use his own name, surgical name, and any other name that the user thinks is easy to understand and remember as the default device configuration name, so that it is convenient for the user to operate .
  • the device configuration name may not be required.
  • the ventilation equipment configuration management apparatus 40 can obtain ventilation equipment configuration information; a few examples are used for description below.
  • the user can input at least one set of ventilation equipment configuration information to the ventilation equipment configuration management device 40 through the human-computer interaction device; in the second example, referring to FIG. 4, the above-mentioned device further includes a transmission device 403, The processor 402 receives at least one set of ventilation device configuration information from a third-party device through the transmission device 403; the third-party device and the ventilation device can communicate and interact in a wired or wireless manner.
  • the processor 402 may store the received ventilation device configuration information in the memory 401, or update the ventilation device configuration according to the received ventilation device configuration information item. In this way, according to the interaction between the third-party equipment and the ventilation equipment configuration management apparatus, a new way of obtaining the ventilation equipment configuration information can be provided, which is more convenient to implement.
  • the user can set the ventilator configuration information in the ventilator standby mode.
  • the following illustrates the ventilator configuration information set by the user through the drawings;
  • Figure 5 is a schematic diagram of the ventilation mode configuration according to the embodiment of the present invention.
  • 6 is the second schematic diagram of the ventilation mode configuration of the embodiment of the present invention, and
  • FIG. 7 is the schematic diagram of the sound setting of the embodiment of the present invention.
  • the third-party device can be a mobile phone, laptop, USB flash drive, etc.
  • the user can input or save at least one set of ventilation device configuration information in the third-party device in advance, and then can control the third-party device to The ventilation device sends the above-mentioned at least one set of ventilation device configuration information.
  • at least one set of ventilation device configuration information can be obtained by reading the content in an external memory such as a U disk; or, a third-party device can be controlled to send at least one set of ventilation equipment to the configuration information management device through wireless communication.
  • Device configuration information that is to say, in the embodiment of the present invention, the ventilation device configuration information can be input through a local creation method, or the ventilation device configuration information can be imported from a third-party device based on a U disk loading method or a communication method.
  • a ventilation device configuration management apparatus can set two user-defined ventilation device configuration information, such as user A customized ventilation device configuration information and user B customized ventilation device configuration information.
  • the ventilation device configuration information customized by user A includes: user name A, ventilation configuration information, and device configuration information.
  • the ventilation configuration information may include at least one set of ventilation mode configurations for different patient types such as adults, children, and newborns.
  • Each set of ventilation mode configurations includes ventilation mode names and ventilation control parameter configurations.
  • Ventilation control parameter configuration includes: ventilation parameters, ventilation mode, alarm limit and other configuration items.
  • the device configuration information includes at least one set of device configurations, and the device configuration may include: one or more configuration items of interface layout, volume, and brightness.
  • the ventilation device configuration information customized by user B includes: user name B, ventilation configuration information, and device configuration information.
  • the ventilation configuration information may include at least one set of ventilation mode configurations for different disease types, and each set of ventilation mode configurations includes ventilation mode names and ventilation control parameter configurations.
  • Each group of ventilation mode configuration includes ventilation mode name and ventilation control parameter configuration.
  • Ventilation control parameter configuration includes: ventilation parameters, ventilation mode, alarm limit and other configuration items.
  • the device configuration information includes two sets of device configurations for use in two different scenarios of surgery and postoperative recovery.
  • the device configuration may include one or more configuration items of interface layout, volume, and brightness.
  • the foregoing apparatus further includes a display device 404, a processor 402, and displays at least one set of stored ventilation device configuration information to the display device 404.
  • the user can use the display device 404 to display the corresponding ventilation device configuration information when customizing the ventilation device configuration information, so that the user can customize the ventilation device configuration information; in another example, the processor 402
  • the corresponding ventilation device configuration information can be displayed on the display device 404 according to the received instruction to display the configuration information of the ventilation device.
  • the processor 402 outputs at least one set of stored ventilation device configuration information to a third-party device through the transmission device 403.
  • the processor 404 may output the corresponding ventilation device configuration information to the third-party device according to the received instruction to output the ventilation device configuration information when receiving the instruction to output the ventilation device configuration information.
  • the ventilation device configuration information can be exported to a USB flash drive, or the ventilation device configuration information can be exported to other third-party devices through wireless communication.
  • the configuration selection command represents an instruction used to select the ventilation device configuration information from the stored ventilation device configuration information.
  • a configuration selection command can be input to the ventilation equipment configuration management apparatus through a human-computer interaction method, or the above-mentioned third-party device can be used to send a configuration selection command to the ventilation equipment configuration management apparatus.
  • FIG. 8 is a schematic diagram of loading a user configuration menu according to an embodiment of the present invention.
  • the user can select the corresponding ventilation device configuration information by loading the user configuration menu before the operation starts; in this way, it is convenient for the user to perform the operation.
  • each set of ventilation device configuration information is used to indicate at least one ventilation device configuration item; the processor of the ventilation device can create a corresponding ventilation device configuration item on the ventilation device according to each set of ventilation device configuration information.
  • each user can customize a set of default ventilation equipment configuration information according to his own experience or personal preferences. Since the corresponding ventilation equipment configuration items are generated for each set of ventilation equipment configuration information, The change of the default ventilation equipment configuration information will not affect the ventilation equipment configuration items corresponding to other ventilation equipment configuration information.
  • each user-defined ventilation device configuration information includes at least two sets of ventilation device configuration information
  • the corresponding ventilation device configuration items are generated for each set of ventilation device configuration information, each user can obtain more information.
  • Set of ventilation equipment configuration items since the corresponding ventilation device configuration items are generated for each set of ventilation device configuration information, each user can obtain more information.
  • the input device also receives a configuration modification instruction and outputs it to the processor 402, and the processor 402 also modifies the corresponding ventilation device configuration item in the ventilation device according to the received configuration modification instruction;
  • the configuration modification instruction may include one or more of the modification instruction and the deletion instruction; that is, the user may modify or delete at least one set of ventilation device configuration information.
  • the processor 402 may modify or delete the corresponding ventilation configuration information according to the received modification instruction or deletion instruction for the ventilation configuration information; The device 402 may also modify or delete the corresponding device configuration information according to the received modification instruction or deletion instruction for the device configuration information.
  • the processor 402 may modify or delete the corresponding ventilation configuration information according to the received modification instruction or deletion instruction for the ventilation configuration information.
  • the processor 402 may also modify or delete the corresponding device configuration information according to the received modification instruction or deletion instruction for the device configuration information.
  • a set of ventilation device configuration information also includes the name of the ventilation device configuration
  • the input device also receives a renaming instruction for the name of the ventilation device configuration, and outputs it to the processor 402, and the processor 402 can follow the received
  • the processor 402 can follow the received
  • the name of the ventilation device configuration is renamed.
  • the processor 402 may modify or delete the corresponding configuration modification instruction according to the received configuration modification instruction.
  • the ventilation mode configuration when a set of ventilation device configuration information includes ventilation configuration information, and the configuration modification instruction is a modification or deletion instruction for ventilation configuration information, the processor 402 may modify or delete the corresponding configuration modification instruction according to the received configuration modification instruction.
  • the ventilation mode configuration when a set of ventilation device configuration information includes ventilation configuration information, and the configuration modification instruction is a modification or deletion instruction for ventilation configuration information, the processor 402 may modify or delete the corresponding configuration modification instruction according to the received configuration modification instruction.
  • the input device when the ventilation configuration information includes the ventilation mode name, the input device also receives a renaming instruction for the ventilation mode name, and outputs it to the processor 402, and the processor 402 can according to the received renaming instruction for the ventilation mode name To rename the name of the ventilation mode.
  • the processor 402 may modify or delete the corresponding configuration modification instruction according to the received configuration modification instruction.
  • Device configuration when a set of ventilation device configuration information includes device configuration information, and the configuration modification instruction is a modification or deletion instruction for device configuration information, the processor 402 may modify or delete the corresponding configuration modification instruction according to the received configuration modification instruction.
  • Device configuration when a set of ventilation device configuration information includes device configuration information, and the configuration modification instruction is a modification or deletion instruction for device configuration information, the processor 402 may modify or delete the corresponding configuration modification instruction according to the received configuration modification instruction. Device configuration.
  • the input device when the device configuration information includes the device configuration name, the input device also receives a renaming instruction for the device configuration name and outputs it to the processor 402, and the processor 402 can follow the received renaming instruction for the device configuration name To rename the device configuration name.
  • FIG. 9 is a schematic diagram of an entry for the creation, renaming and deletion of ventilation device configuration information according to an embodiment of the present invention
  • FIG. 10 is a schematic diagram of a renaming menu for ventilation device configuration information according to an embodiment of the present invention, as shown in FIGS. 9 and 10 It shows that users can create, rename and delete ventilation equipment configuration information through the system menu.
  • the embodiment of the present invention can support user-defined ventilation device configuration information, but does not support user naming.
  • each set of ventilation device configuration information they are named according to a predetermined naming method, for example, , Name the 3 sets of ventilation equipment configuration information as configuration 1, configuration 2, and configuration 3.
  • the embodiment of the present invention also proposes a ventilation device, including a driving device 101, a patient breathing circuit 102, and a ventilation control device 103, and also includes any one of the ventilation device configuration management devices described in the foregoing embodiments.
  • the embodiment of the present invention also proposes a ventilation device configuration management method, which can be used for the configuration of the ventilation device.
  • FIG. 11 is a flowchart of a method for configuration and management of a ventilation device according to an embodiment of the present invention. As shown in FIG. 11, the process may include:
  • Step 1101 Store configuration information of at least two sets of ventilation equipment.
  • each set of ventilation equipment configuration information includes the configuration of one or more configuration items for ventilation equipment regarding ventilation control, ventilation display, and equipment use, display, and control.
  • each set of ventilation device configuration information may include ventilation configuration information and/or device configuration information.
  • the implementation of each set of ventilation equipment configuration information can be illustrated by the following examples: example 1, ventilation equipment configuration information includes ventilation configuration information and equipment configuration information; example 2, ventilation equipment configuration information includes only ventilation configuration information; example 3. Ventilation equipment configuration information only includes equipment configuration information.
  • each user can define at least one set of ventilation device configuration information.
  • Different user-defined ventilation device configuration information or different ventilation device configuration information defined by the same user can be different, for example, different user-defined ventilation configuration information Or the device configuration information may be at least partially different.
  • doctor A sets a set of ventilation configuration information
  • doctor B can set a set of ventilation mode configurations different from that of doctor A, which can meet the personalized setting requirements of different doctors for ventilation configuration information
  • doctor A may want the interface to be concise and only display some key information, and doctor B may want to display more details on the interface; then, the technical solution of the embodiment of the present invention can satisfy both doctor A and doctor B.
  • each set of ventilation device configuration information may also include the name of the ventilation device configuration to distinguish different ventilation device configuration information.
  • the name of the ventilation device configuration can be a user-defined name.
  • the user can use his own name, surgical name, and any other name that the user thinks is easy to understand and remember as the default name of a ventilation mode, so that it is convenient for the user To proceed.
  • the ventilation configuration information may include at least one set of ventilation mode configurations; that is, a user can define one set of ventilation mode configurations or multiple sets of ventilation mode configurations according to actual application requirements.
  • users can define multiple sets of ventilation mode configurations for use scenarios such as surgery, postoperative recovery, ventilation support, etc., and can also define multiple sets of ventilation mode configurations for different patient types such as the elderly, adults, children, and newborns.
  • the disease type defines multiple ventilation mode configurations. For example, for laparoscopic surgery, because artificial pneumoperitoneum will cause CO2 to rise, relatively larger tidal volume and breathing rate can be set.
  • a user-defined set of ventilation mode configurations or multiple sets of ventilation mode configurations can correspond to a set of user-defined ventilation device configuration information, or can correspond to user-defined sets of ventilation device configuration information.
  • the ventilation configuration information when the ventilation device configuration information includes ventilation configuration information and device configuration information, the ventilation configuration information may include one or more sets of ventilation mode configurations; when the ventilation device configuration information includes only ventilation configuration information, the ventilation configuration information may include Multi-group ventilation mode configuration.
  • the ventilation mode configuration may include at least ventilation control parameter configuration.
  • the ventilation control parameter configuration is determined according to at least one of the patient type, disease type, usage scenario and other factors; in a specific example, the patient type includes but is not limited to elderly, adult, child, newborn, etc.; Types of diseases include but are not limited to: obesity, diabetes, etc.; usage scenarios include but are not limited to: types of surgery, postoperative recovery, ventilation support and other scenarios.
  • each group of ventilation mode configurations may also include a ventilation mode name to distinguish different ventilation mode configurations.
  • the name of the ventilation mode can be a user-defined name.
  • the user can use his own name, the name of the operation, and any other name that the user thinks is easy to understand and remember as the default name of a ventilation mode, so that it is convenient for the user to operate .
  • the ventilation mode configuration may not include the ventilation mode name.
  • the ventilation mode configuration may also include a ventilation alarm threshold.
  • the ventilation alarm threshold represents a condition that needs to be reached for an alarm; for example, an alarm can be issued when a certain ventilation control parameter reaches a corresponding ventilation alarm threshold.
  • the ventilation alarm threshold can be preset according to actual application requirements.
  • the device configuration information may include at least one set of device configurations.
  • a user can define a set of device configurations or multiple sets of device configurations according to actual application requirements.
  • users can define multiple sets of device configurations for use scenarios such as surgery, postoperative recovery, and ventilation support. They can also define multiple sets of device configurations for different patient types such as the elderly, adults, children, and newborns. Of course, they can also be targeted for The disease type defines multiple device configurations.
  • a user-defined set of device configurations or multiple sets of device configurations can correspond to a set of user-defined ventilation device configuration information, or it can correspond to multiple sets of user-defined ventilation device configuration information. For example, for extracorporeal circulation surgery, some unnecessary alarm settings can be shielded on the anesthesia machine.
  • the device configuration information when the ventilation device configuration information includes ventilation configuration information and device configuration information, the device configuration information may include one or more sets of device configurations; when the ventilation device configuration information includes only device configuration information, the device configuration information may include multiple sets of devices Configuration.
  • each device configuration may include one or more of interface layout, alarm setting, and display configuration.
  • the interface layout includes but is not limited to display information (including ventilation information, waveforms, parameters, patient information, etc.) arrangement, control area (control input interface, etc.) arrangement, etc.
  • Alarm settings include but are not limited to alarm volume, alarm Lighting, etc., display configuration including but not limited to display brightness, display mode, etc.
  • each device configuration may also include the device configuration name to distinguish different device configurations.
  • the device configuration name can be a user-defined name.
  • the user can use his own name, surgical name, and any other name that the user thinks is easy to understand and remember as the default device configuration name, so that it is convenient for the user to operate .
  • the device configuration name may not be required.
  • the ventilation equipment configuration management device can obtain ventilation equipment configuration information; a few examples will be used to illustrate.
  • the user can input at least one set of ventilation equipment configuration information to the ventilation equipment configuration management apparatus through the human-computer interaction device; in the second example, referring to FIG.
  • At least one set of ventilation equipment configuration information of the third-party equipment; the third-party equipment and the ventilation equipment can communicate and interact in a wired or wireless manner.
  • the processor 402 may store the received ventilation device configuration information in the memory 401, or update the ventilation device configuration according to the received ventilation device configuration information item. In this way, according to the interaction between the third-party equipment and the ventilation equipment configuration management apparatus, a new way of obtaining the ventilation equipment configuration information can be provided, which is more convenient to implement.
  • the user can set the ventilation device configuration information in the ventilation device standby mode.
  • the third-party device can be a mobile phone, laptop, USB flash drive, etc.
  • the user can input or save at least one set of ventilation device configuration information in the third-party device in advance, and then can control the third-party device to The ventilation device sends the above-mentioned at least one set of ventilation device configuration information.
  • at least one set of ventilation device configuration information can be obtained by reading the content in an external memory such as a USB flash drive; or, a third-party device can be controlled to send at least one set of ventilation device configuration information to the configuration information management device through wireless communication.
  • Device configuration information that is to say, in the embodiment of the present invention, the ventilation device configuration information can be input through a local creation method, or the ventilation device configuration information can be imported from a third-party device based on a U disk loading method or a communication method.
  • the processor 402 also displays at least one set of stored ventilation device configuration information to the display device 404.
  • the user can use the display device 404 to display the corresponding ventilation device configuration information when customizing the ventilation device configuration information, so that the user can customize the ventilation device configuration information; in another example, the processor 402
  • the corresponding ventilation device configuration information can be displayed on the display device 404 according to the received instruction to display the configuration information of the ventilation device.
  • the processor 402 outputs at least one set of stored ventilation device configuration information to a third-party device through the transmission device 403.
  • the processor 404 may output the corresponding ventilation device configuration information to the third-party device according to the received instruction to output the ventilation device configuration information when receiving the instruction to output the ventilation device configuration information.
  • the ventilation device configuration information can be exported To a USB flash drive, or you can export the ventilation device configuration information to other third-party devices through wireless communication.
  • this step can be implemented using the memory in the ventilation equipment configuration management device.
  • Step 1102 Receive a configuration selection command and output it to the processor.
  • the configuration selection command represents an instruction used to select the ventilation device configuration information from the stored ventilation device configuration information.
  • the configuration selection command can be input to the ventilation equipment configuration management device through human-computer interaction, or the configuration selection command can be sent to the ventilation equipment configuration management device using the above-mentioned third-party equipment.
  • the user can input configuration selection commands to the ventilation device by loading the user configuration menu; in an actual application scenario, the user can select the corresponding ventilation device configuration information by loading the user configuration menu before the operation starts; In this way, it is convenient for the user to perform surgery.
  • this step can be implemented using the input device in the ventilation device configuration management device.
  • Step 1103 The processor selects corresponding ventilation device configuration information from at least two sets of stored ventilation device configuration information according to the received configuration selection command, and generates corresponding ventilation device configuration items.
  • each set of ventilation device configuration information is used to indicate at least one ventilation device configuration item; the processor of the ventilation device can create a corresponding ventilation device configuration item on the ventilation device according to each set of ventilation device configuration information.
  • each user can customize a set of default ventilation equipment configuration information according to his own experience or personal preferences. Since the corresponding ventilation equipment configuration items are generated for each set of ventilation equipment configuration information, The change of the default ventilation equipment configuration information will not affect the ventilation equipment configuration items corresponding to other ventilation equipment configuration information.
  • each user-defined ventilation device configuration information includes at least two sets of ventilation device configuration information
  • the corresponding ventilation device configuration items are generated for each set of ventilation device configuration information, each user can obtain more information.
  • Set of ventilation equipment configuration items since the corresponding ventilation device configuration items are generated for each set of ventilation device configuration information, each user can obtain more information.
  • the input device also receives a configuration modification instruction and outputs it to the processor 402, and the processor 402 also modifies the corresponding ventilation device configuration item in the ventilation device according to the received configuration modification instruction;
  • the configuration modification instruction may include one or more of the modification instruction and the deletion instruction; that is, the user may modify or delete at least one set of ventilation device configuration information.
  • the processor 402 may modify or delete the corresponding ventilation configuration information according to the received modification instruction or deletion instruction for the ventilation configuration information; The device 402 may also modify or delete the corresponding device configuration information according to the received modification instruction or deletion instruction for the device configuration information.
  • the processor 402 may modify or delete the corresponding ventilation configuration information according to the received modification instruction or deletion instruction for the ventilation configuration information.
  • the processor 402 may also modify or delete the corresponding device configuration information according to the received modification instruction or deletion instruction for the device configuration information.
  • a set of ventilation device configuration information also includes the name of the ventilation device configuration
  • the input device also receives a renaming instruction for the name of the ventilation device configuration, and outputs it to the processor 402, and the processor 402 can follow the received
  • the processor 402 can follow the received
  • the name of the ventilation device configuration is renamed.
  • the processor 402 may modify or delete the corresponding configuration modification instruction according to the received configuration modification instruction.
  • the ventilation mode configuration when a set of ventilation device configuration information includes ventilation configuration information, and the configuration modification instruction is a modification or deletion instruction for ventilation configuration information, the processor 402 may modify or delete the corresponding configuration modification instruction according to the received configuration modification instruction.
  • the ventilation mode configuration when a set of ventilation device configuration information includes ventilation configuration information, and the configuration modification instruction is a modification or deletion instruction for ventilation configuration information, the processor 402 may modify or delete the corresponding configuration modification instruction according to the received configuration modification instruction.
  • the input device when the ventilation configuration information includes the ventilation mode name, the input device also receives a renaming instruction for the ventilation mode name, and outputs it to the processor 402, and the processor 402 can according to the received renaming instruction for the ventilation mode name To rename the name of the ventilation mode.
  • the processor 402 may modify or delete the corresponding configuration modification instruction according to the received configuration modification instruction.
  • Device configuration when a set of ventilation device configuration information includes device configuration information, and the configuration modification instruction is a modification or deletion instruction for device configuration information, the processor 402 may modify or delete the corresponding configuration modification instruction according to the received configuration modification instruction.
  • Device configuration when a set of ventilation device configuration information includes device configuration information, and the configuration modification instruction is a modification or deletion instruction for device configuration information, the processor 402 may modify or delete the corresponding configuration modification instruction according to the received configuration modification instruction. Device configuration.
  • the input device when the device configuration information includes the device configuration name, the input device also receives a renaming instruction for the device configuration name and outputs it to the processor 402, and the processor 402 can follow the received renaming instruction for the device configuration name To rename the device configuration name.
  • this step can be implemented by the processor in the ventilation equipment configuration management device.
  • the computer program instructions corresponding to a ventilation device configuration management method in this embodiment may be stored on storage media such as optical disks, hard disks, U disks, etc., when the storage medium contains computer program instructions corresponding to a ventilation device configuration management method When being read or executed by an electronic device, any one of the ventilation device configuration management methods in the foregoing embodiments is implemented.
  • the technical solution of the present invention essentially or the part that contributes to the existing technology can be embodied in the form of a software product, and the computer software product is stored in a storage medium (such as ROM/RAM, magnetic disk, The optical disc) includes a number of instructions to make a terminal (which may be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.) execute the method of each embodiment of the present invention.
  • a storage medium such as ROM/RAM, magnetic disk, The optical disc
  • a terminal which may be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.

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Abstract

一种通气设备配置管理装置、方法、通气设备和计算机存储介质,所述装置包括:输入设备、存储器和处理器;所述输入设备,接收配置选择命令,并输出给所述处理器;所述存储器,存储至少两套通气设备配置信息;所述处理器,根据接收到的配置选择命令,从存储的至少两套通气设备配置信息中选择相应的通气设备配置信息,生成对应的通气设备配置项。通过设置至少两套通气设备配置信息,可以使不同用户各自按照的独立的一套通气设备配置信息使用通气设备,一个用户对一套通气设备配置信息的更改不会影响到其他用户。

Description

通气设备配置管理装置、方法、通气设备和计算机存储介质 技术领域
本发明涉及通气设备领域,尤其涉及一种通气设备配置管理装置、方法、通气设备和计算机存储介质。
背景技术
通气设备如麻醉机在使用之前,通常需要根据实际应用需求,设置相同的配置信息,例如,需要根据不同病人类型生理特点和病情,设置不同的通气控制参数,报警限和机械通气模式等;然而,在相关技术中,通气设备是公共设备,一个用户确定通气设备的配置信息并不适用于另一个用户,因而,一个用户对通气设备的配置信息的更改会影响到其他用户使用通气设备。
示例性地,用户在使用麻醉机开始通气之前,通常需要选择病人类型(成人,小儿或新生儿),因为不同的病人类型生理特点和病情不同,可能需要设置不同的通气控制参数、报警限和机械通气模式;实际应用中,麻醉呼吸机厂商为了方便用户,通常都会为每个病人类型设置一组默认的通气控制参数、报警限和通气模式;例如,对于潮气量设置,成人默认值为600ml,小儿默认值为120ml,新生儿默认值为20ml,对于分钟通气量的报警高限:成人默认值为12L/min,小儿默认值为6L/min,新生儿默认值为2L/min;对于默认通气模式,通常默认成人采用容量控制通气模式,小儿默认采用压力控制通气模式。在麻醉机的配置管理方案中,这些不同病人类型的默认值用户可以进行自定义,也就是说用户可以更改这些默认值;默认值的更改,意味着之后每次开始一个新病人的时候,麻醉机给出的默认通气参数,报警限和通气模式都会发生变化。进一步地,麻醉机是一个 公共设备,并非私人设备,也就是说有可能多个麻醉医生都会使用这一台设备在不同时间给不同的病人做手术;对不同病人类型默认值的更改必定会影响到其它用户。例如,医生A有可能认为成人潮气量默认值为600是才合适,医生B有觉得成人潮气量默认值为500ml是比较适合的,也就是说,上述这种默认值没有国家标准,不同的用户使用习惯和经验不一样。
发明内容
为解决上述技术问题,本发明实施例提供了一种通气设备配置管理装置、方法、通气设备和计算机存储介质。
本发明实施例提供了一种通气设备配置管理装置,所述装置包括:输入设备、存储器和处理器;
所述输入设备,接收配置选择命令,并输出给所述处理器;
所述存储器,存储至少两套通气设备配置信息;
所述处理器,根据接收到的配置选择命令,从存储的至少两套通气设备配置信息中选择相应的通气设备配置信息,生成对应的通气设备配置项。
本发明实施例还提供了一种通气设备,包括驱动设备、通气控制设备、病人呼吸回路,所述通气设备包括上述通气设备配置管理装置。
本发明实施例还提供了一种通气设备配置管理方法,所述方法包括:
存储至少两套通气设备配置信息;
接收配置选择命令,并输出给处理器;
所述处理器根据接收到的配置选择命令,从存储的至少两套通气设备配置信息中选择相应的通气设备配置信息,生成对应的通气设备配置项。
本发明实施例还提供了一种计算机存储介质,其上存储有计算机程序,该计算机程序被处理器执行时实现上述通气设备配置管理方法。
本发明实施例提供的技术方案中,存储至少两套通气设备配置信息;接收配置选择命令,并输出给处理器;处理器根据接收到的配置选择命 令,从存储的至少两套通气设备配置信息中选择相应的通气设备配置信息,生成对应的通气设备配置项。如此,本发明实施例的技术方案中通过设置至少两套通气设备配置信息,可以使不同用户各自按照的独立的一套通气设备配置信息使用通气设备,一个用户对一套通气设备配置信息的更改不会影响到其他用户。
附图说明
图1为本发明实施例中通气设备的组成结构示意图;
图2为本发明实施例中麻醉机的一个示例性的结构示意图;
图3为本发明实施例中呼吸机的一种示例性的结构示意图;
图4为本发明实施例提供的一种通气设备配置管理装置的结构示意图;
图5为本发明实施例的通气模式配置的示意图一;
图6为本发明实施例的通气模式配置的示意图二;
图7为本发明实施例的声音设置示意图;
图8为本发明实施例的加载用户配置菜单的示意图;
图9为本发明实施例的针对通气设备配置信息的创建、重命名和删除的入口示意图;
图10为本发明实施例的针对通气设备配置信息的重命名菜单示意图;
图11为本发明实施例的通气设备配置管理方法的流程图。
具体实施方式
为了能够更加详尽地了解本发明实施例的特点与技术内容,下面结合附图对本申请实施例的实现进行详细阐述,所附附图仅供参考说明之用,并非用来限定本发明实施例。
图1为本发明实施例中通气设备的组成结构示意图,如图1所示,通气设备100可以包括驱动设备101、病人呼吸回路102和通气控制设备103, 其中:
通气控制设备103,控制驱动设备101通过病人呼吸回路102向病人提供通气支持。这里,通气控制设备103,可以控制驱动设备101通过病人呼吸回路102向病人提供富氧气体。
病人呼吸回路102,包括吸气支路1021和呼气支路1022;并且吸气支路1021设置有吸气阀,呼气支路1022设置有呼气阀。
本发明实施例中,通气设备可以是麻醉机或呼吸机,也可以是其他的通气设备。
相关技术中,麻醉机的功能是手术期间对病人进行吸入麻醉和机械通气;图2为本发明实施例中麻醉机的一个示例性的结构示意图,如图2所示,在麻醉机工作期间,病人呼吸的气体是在一个带有钠石灰罐203(用来吸取人体呼出的CO 2)的密闭式的病人呼吸回路102(该回路可以基于两个单向阀实现)中循环利用的;由于回路中气体的消耗(如O 2等,被人体吸收)和泄露,因此需要不断进行补充,麻醉机中有一条独立的通道持续的补充气体到病人呼吸回路,这路补充气体我们一般称为新鲜气体。
参照图2,上述新鲜气体的形成包括以下步骤:
第一步:氧气和平衡气体在流量监控器201中以不同的流量进行混合;这里,平衡气体可以是空气(Air)或N 2O。
第二步:流量监控器201输出的混合气体经过麻药挥发罐202后,形成新鲜气体,输送到病人呼吸回路102;
第三步:新鲜气体输送到病人呼吸回路102后,病人呼吸回路102在通气控制设备103的控制下,将新鲜气体随吸入气体输出给病人,并接收病人呼出的呼出气体。
在麻醉机中,麻药挥发罐202、流量监控器201和通气控制设备103是关键组件,其中,麻药挥发罐202传输送麻药,流量监控器201输送新鲜 气体,通气控制设备103负责通过病人呼吸回路102向病人提供机械通气,即向病人提供吸入气体,并接收病人呼出的呼出气体。
呼吸机是一种能人工替代自主通气功能的器件,已普遍用于各种原因所致的呼吸衰竭、呼吸支持治疗和急救复苏中。图3为本发明实施例中呼吸机的一种示例性的结构示意图,参照图3,呼吸机还可以包括病人呼吸回路102、驱动设备101、通气控制设备103和显示器303。其中,病人呼吸回路102通过驱动设备101与通气控制设备103连接,在通气控制设备103的控制下向病人提供通气支持;可选地,呼吸机还可以包括呼吸识别装置301,呼吸识别装置301和显示器303分别与通气控制设备103连接。这里,在实现时,可以通过与病人连接的传感器检测病人呼吸实现,也可以通过设于病人呼吸回路的传感器,检测病人吸气流速、吸气压力,呼气流速、呼气压力等实现;可选地,呼吸机还可以包括气源302,气源302与驱动设备101连接,用于在驱动设备101的驱动下提供通气过程所需的气体。
基于上述记载的内容,本发明实施例提出了一种通气设备配置管理装置,可以应用于上述通气设备中。
参见图4,其示出了本发明实施例提供的一种通气设备配置管理装置40,可以包括:输入设备400、存储器401和处理器402;其中,
输入设备400,接收配置选择命令,并输出给处理器402;
存储器401,存储至少两套通气设备配置信息;
处理器402,根据接收到的配置选择命令,从存储的至少两套通气设备配置信息中选择相应的通气设备配置信息,生成对应的通气设备配置项。
在实际应用中,上述输入设备400可以是键盘、鼠标、触摸屏、麦克风等用于接收用户指令的设备;上述存储器401可以是易失性存储器(volatile memory),例如随机存取存储器(Random Access Memory,RAM);或者非易失性存储器(non-volatile memory),例如只读存储器(Read-Only  Memory,ROM),快闪存储器(flash memory),硬盘(Hard Disk Drive,HDD)或固态硬盘(Solid-State Drive,SSD);或者上述种类的存储器的组合,并向处理器402提供指令和数据。
上述处理器402可以为特定用途集成电路(Application Specific Integrated Circuit,ASIC)、数字信号处理器(Digital Signal Processor,DSP)、数字信号处理装置(Digital Signal Processing Device,DSPD)、可编程逻辑装置(Programmable Logic Device,PLD)、现场可编程门阵列(Field Programmable Gate Array,FPGA)、中央处理器(Central Processing Unit,CPU)、控制器、微控制器、微处理器等中的至少一种。可以理解地,对于不同的通气设备配置管理装置,用于实现上述处理器功能的电子器件还可以为其它,本发明实施例不作具体限定。
这里,每套通气设备配置信息包括针对通气设备关于通气控制、通气显示,以及设备使用、显示和控制等方面的一个或多个配置项的配置。
作为一种实施方式,每套通气设备配置信息可以包括通气配置信息和/或设备配置信息。也就是说,每套通气设备配置信息实现方式可以通过以下几个示例说明:示例1,通气设备配置信息包括通气配置信息和设备配置信息;示例2,通气设备配置信息只包括通气配置信息;示例3,通气设备配置信息只包括设备配置信息。
在实际应用中,每个用户可以定义至少一套通气设备配置信息,不同用户定义的通气设备配置信息或者同一用户定义的不同通气设备配置信息可以是不同的,例如,不同用户定义的通气配置信息或设备配置信息可以是至少部分不同的。
在一个示例中,医生A设置一组通气配置信息,医生B可以设置与医生A不同的一组通气模式配置,这样可以满足不同医生对通气配置信息的个性化设置需求;在另一个示例中,对于麻醉机的界面布局,医生A 可能希望界面简洁,只显示一些关键信息,医生B可能希望界面上显示更多的细节;那么,采用本发明实施例的技术方案,可以同时满足医生A和医生B对麻醉机的界面布局的个性化设置需求。
可选地,每套通气设备配置信息还可以包括通气设备配置的名称,以区分不同的通气设备配置信息。这里,通气设备配置的名称可以是用户自定义的名称,例如,用户可以以自己的姓名,手术名称和其它任何用户认为容易理解和记忆的名称作为默认的一种通气模式名称,如此,便于用户进行操作。
作为一种实施方式,通气配置信息可以包括至少一组通气模式配置;也就是说,一个用户可以根据实际应用需求定义一组通气模式配置或多组通气模式配置。例如,用户可以针对手术、术后恢复、通气支持等使用场景定义多组通气模式配置,也可以针对老人、成人、儿童、新生儿等不同病人类型定义多组通气模式配置,还可以根据需要针对疾病类型定义多组通气模式配置。例如,对于腹腔镜手术,由于人工气腹会引起CO2升高,可以设置相对更大的潮气量和呼吸率。
这里,一个用户定义的一组通气模式配置或多组通气模式配置可以对应该用户定义的一套通气设备配置信息,也可以对应该用户定义的多套通气设备配置信息。
示例性地,当通气设备配置信息包括通气配置信息和设备配置信息时,通气配置信息可以包括一组或多组通气模式配置;当通气设备配置信息只包括通气配置信息时,通气配置信息可以包括多组通气模式配置。
可选地,通气模式配置可以至少包括通气控制参数配置。
可选地,通气控制参数配置根据病人类型、疾病类型、使用场景等因素中的至少一种因素确定;在具体的示例中,病人类型包括但不限于老人、成人、儿童、新生儿等类型;疾病类型包括但不限于:肥胖、糖 尿病等类型;使用场景包括但不限于:手术类型、术后恢复、通气支持等场景。
可选地,对于通气配置信息包括多组通气模式配置的情况,各组通气模式配置还可以包括通气模式名称,以区分不同的通气模式配置。这里,通气模式名称可以是用户自定义的名称,例如,用户可以以自己的姓名,手术名称和其它任何用户认为容易理解和记忆的名称作为默认的一种通气模式名称,如此,便于用户进行操作。当然,对于通气配置信息只包括一组通气模式配置的情况,通气模式配置可以不包括通气模式名称。
进一步地,通气模式配置还可以包括通气报警阈值,这里,通气报警阈值表示为进行报警需要达到的条件;例如,在某一种通气控制参数达到相应的通气报警阈值时,可以发出报警。
实际应用中,通气报警阈值可以根据实际应用需求预先设置。
作为一种实施方式,设备配置信息可以包括至少一组设备配置。也就是说,一个用户可以根据实际应用需求定义一组设备配置或多组设备配置。例如,用户可以针对手术、术后恢复、通气支持等使用场景定义多组设备配置,也可以针对老人、成人、儿童、新生儿等不同病人类型定义多组设备配置,当然,还可以根据需要针对疾病类型定义多组设备配置。一个用户定义的一组设备配置或多组设备配置可以对应该用户定义的一套通气设备配置信息,也可以对应该用户定义的多套通气设备配置信息。例如,对于体外循环手术,可以在麻醉机上屏蔽掉一些不必要的报警设置。
这里,当通气设备配置信息包括通气配置信息和设备配置信息时,设备配置信息可以包括一组或多组设备配置;当通气设备配置信息只包括设备配置信息时,设备配置信息可以包括多组设备配置。
可选地,各设备配置可以包括:界面布局、报警设置和显示配置中的一个或多个。
可选地,界面布局包括但不限于显示信息(包括通气信息、波形、参数、病人信息等)排布、操控区域(操控输入界面等)排布等,报警设置包括但不限于报警音量、报警灯光等,显示配置包括但不限于显示亮度、显示模式等。
当然,对于设备配置信息包括多组设备配置的情况,各设备配置还可以包括设备配置名称,以区别不同的设备配置。这里,设备配置名称可以是用户自定义的名称,例如,用户可以以自己的姓名,手术名称和其它任何用户认为容易理解和记忆的名称作为默认的一种设备配置名称,如此,便于用户进行操作。当然,对于设备配置信息只包括一组设备配置的情况,可以并不需要设备配置名称。
实际实施时,可以采用多种方式使通气设备配置管理装置40获取通气设备配置信息;下面通过几个示例进行说明。在第一个示例中,用户可以通过人机交互设备向通气设备配置管理装置40输入至少一套通气设备配置信息;在第二个示例中,参照图4,上述装置还包括传输设备403,上述处理器402通过传输设备403接收来自第三方设备的至少一套通气设备配置信息;第三方设备与通气设备可以通过有线或无线的方式进行通信交互。这里,当处理器402接收来自第三方设备的至少一套通气设备配置信息后,可以将接收到的通气设备配置信息存储在存储器401中,或者,根据接收到的通气设备配置信息更新通气设备配置项。如此,根据第三方设备与通气设备配置管理装置的交互,可以提供对通气设备配置信息的一种新的获取方式,实现更为方便。
对于上述第一个示例,用户可以在通气设备待机模式下设置通气设备配置信息,下面通过附图说明用户设置的通气设备配置信息;图5为 本发明实施例的通气模式配置的示意图一,图6为本发明实施例的通气模式配置的示意图二,图7为本发明实施例的声音设置示意图。
对于上述第二个示例,第三方设备可以是手机、笔记本电脑、U盘等设备,用户可以预先在第三方设备中输入或存入至少一套通气设备配置信息,然后,可以控制第三方设备向通气设备发送上述至少一套通气设备配置信息。在具体实施时,可以通过读取外置存储器如U盘中的内容,来获取至少一套通气设备配置信息;或者,可以控制第三方设备通过无线通信方式向配置信息管理装置发送至少一套通气设备配置信息。也就是说,本发明实施例中,既可以通过本地创建方式输入通气设备配置信息,也可以基于U盘加载方式或通信方式从第三方设备导入通气设备配置信息。
示例性地,一台通气设备配置管理装置可以设置两个用户自定义的通气设备配置信息,例如用户A自定义的通气设备配置信息和用户B自定义的通气设备配置信息。用户A自定义的通气设备配置信息包括:用户名A、通气配置信息和设备配置信息。具体的,通气配置信息可以包括针对成人、小儿、新生儿等不同病人类型的至少一组通气模式配置,各组通气模式配置包括通气模式名称和通气控制参数配置。通气控制参数配置包括:通气参数,通气模式,报警限等配置项。设备配置信息包括至少一组设备配置,设备配置可以包括:界面布局、音量和亮度中的一个或多个配置项。用户B自定义的通气设备配置信息包括:用户名B、通气配置信息和设备配置信息。具体的,通气配置信息可以包括针对不同疾病类型的至少一组通气模式配置,各组通气模式配置包括通气模式名称和通气控制参数配置。各组通气模式配置包括通气模式名称和通气控制参数配置。通气控制参数配置包括:通气参数,通气模式,报警限等配置项。设备配置信息包括针对手术和术后恢复两种不同场景使用的 两组设备配置,设备配置可以包括:界面布局、音量和亮度中的一个或多个配置项。
作为一种实现方式,上述装置还包括显示设备404,处理器402,还将存储的至少一套通气设备配置信息显示到显示设备404。在一个示例中,用户可以在自定义通气设备配置信息时,利用显示设备404显示相应的通气设备配置信息,以便于用户进行通气设备配置信息的自定义设置;在另一个示例中,处理器402可以在接收到显示通气设备配置信息的指令时,根据接收到的显示通气设备配置信息的指令,将相应的通气设备配置信息显示到显示设备404。
作为一种实现方式,处理器402通过传输设备403将存储的至少一套通气设备配置信息输出至第三方设备。示例性地,处理器404可以在接收到输出通气设备配置信息的指令时,根据接收的输出通气设备配置信息的指令,将相应的通气设备配置信息输出到第三方设备。
可以理解的是,通过将存储的至少一套通气设备配置信息显示或者输出至第三方设备,这样,便于用户随时随地查看通气设备配置信息;
在一个具体的示例中,可以将通气设备配置信息导出至U盘,或者,可以将通气设备配置信息通过无线通信方式导出至其它第三方设备。
本发明实施例中,配置选择命令表示用于从存储的通气设备配置信息选择通气设备配置信息的指令。
在实际应用中,可以通过人机交互方式向通气设备配置管理装置输入配置选择命令,也可以利用上述第三方设备向通气设备配置管理装置发送配置选择命令。
在一个具体的示例中,用户可以通过加载用户配置菜单向通气设备输入配置选择命令,图8为本发明实施例的加载用户配置菜单的示意图。
在一个实际的应用场景中,用户可以在手术开始前,通过加载用户配 置菜单选择相应的通气设备配置信息;这样,便于用户进行手术。
本发明实施例中,每套通气设备配置信息用于表示至少一个通气设备配置项;通气设备的处理器可以根据每套通气设备配置信息,在通气设备上创建对应的通气设备配置项。
本发明实施例中,每个用户都可以根据自己经验或个人喜好自定义一套默认的通气设备配置信息,由于针对每套通气设备配置信息均生成对应的通气设备配置项,因而,对自已定义默认的通气设备配置信息的更改不会影响到其它通气设备配置信息对应的通气设备配置项。
这里,当每个用户自定义的通气设备配置信息包括至少两套通气设备配置信息时,由于针对每套通气设备配置信息均生成对应的通气设备配置项,因而,可以使每个用户获取到多套通气设备配置项。
作为一种实现方式,输入设备还接收配置修改指令并输出给处理器402,处理器402还根据接收的配置修改指令,修改通气设备中对应的通气设备配置项;
本发明实施例中,配置修改指令可以包括修改指令和删除指令中的一种或多种;也就是说,用户可以针对至少一套通气设备配置信息进行修改或删除等操作。
示例性地,当一套通气设备配置信息包括通气配置信息和设备配置信息时,处理器402可以根据接收到的针对通气配置信息的修改指令或删除指令,修改或删除相应的通气配置信息;处理器402也可以根据接收到的针对设备配置信息的修改指令或删除指令,修改或删除相应的设备配置信息。当一套通气设备配置信息只包括通气配置信息时,处理器402可以根据接收到的针对通气配置信息的修改指令或删除指令,修改或删除相应的通气配置信息。当一套通气设备配置信息只包括设备配置信息时,处理器402也可以根据接收到的针对设备配置信息的修改指令或删除指令,修改或 删除相应的设备配置信息。
可选地,当一套通气设备配置信息还包括通气设备配置的名称时,输入设备还接收针对通气设备配置的名称的重命名指令,并输出给处理器402,处理器402可以根据接收到的针对通气设备配置的名称的重命名指令,对通气设备配置的名称进行重命名。
作为一种实现方式,当一套通气设备配置信息包括通气配置信息,且上述配置修改指令为针对通气配置信息的修改或删除指令时,处理器402可以根据接收的配置修改指令,修改或删除相应的通气模式配置。
可选地,当通气配置信息包括通气模式名称时,输入设备还接收针对通气模式名称的重命名指令,并输出给处理器402,处理器402可以根据接收到的针对通气模式名称的重命名指令,对通气模式名称进行重命名。
作为一种实现方式,当一套通气设备配置信息包括设备配置信息,且上述配置修改指令为针对设备配置信息的修改或删除指令时,处理器402可以根据接收的配置修改指令,修改或删除相应的设备配置。
可选地,当设备配置信息包括设备配置名称时,输入设备还接收针对设备配置名称的重命名指令,并输出给处理器402,处理器402可以根据接收到的针对设备配置名称的重命名指令,对设备配置名称进行重命名。
图9为本发明实施例的针对通气设备配置信息的创建、重命名和删除的入口示意图,图10为本发明实施例的针对通气设备配置信息的重命名菜单示意图,如图9和图10所示,用户可以通过系统菜单的方式对通气设备配置信息进行创建、重命名和删除等操作。
作为一种实现方式,本发明实施例可以支持用户自定义通气设备配置信息,但是不支持用户进行命名,这样,在对各套通气设备配置信息进行命名时,按照预先确定命名方式进行命名,例如,将3套通气设备配置信息依次命名为配置1、配置2、配置3。
本发明实施例还提出了一种通气设备,包括驱动设备101、病人呼吸回路102和通气控制设备103,还包括前述实施例记载的任意一种通气设备配置管理装置。
在本发明实施例提出的通气设备配置管理装置的基础上,本发明实施例还提出了通气设备配置管理方法,可以用于通气设备的配置。
图11为本发明实施例的通气设备配置管理方法的流程图,如图11所示,该流程可以包括:
步骤1101:存储至少两套通气设备配置信息。
这里,每套通气设备配置信息包括针对通气设备关于通气控制、通气显示,以及设备使用、显示和控制等方面的一个或多个配置项的配置。
作为一种实施方式,每套通气设备配置信息可以包括通气配置信息和/或设备配置信息。也就是说,每套通气设备配置信息实现方式可以通过以下几个示例说明:示例1,通气设备配置信息包括通气配置信息和设备配置信息;示例2,通气设备配置信息只包括通气配置信息;示例3,通气设备配置信息只包括设备配置信息。
在实际应用中,每个用户可以定义至少一套通气设备配置信息,不同用户定义的通气设备配置信息或者同一用户定义的不同通气设备配置信息可以是不同的,例如,不同用户定义的通气配置信息或设备配置信息可以是至少部分不同的。
在一个示例中,医生A设置一组通气配置信息,医生B可以设置与医生A不同的一组通气模式配置,这样可以满足不同医生对通气配置信息的个性化设置需求;在另一个示例中,对于麻醉机的界面布局,医生A可能希望界面简洁,只显示一些关键信息,医生B可能希望界面上显示更多的细节;那么,采用本发明实施例的技术方案,可以同时满足医生A和医生B对麻醉机的界面布局的个性化设置需求。
可选地,每套通气设备配置信息还可以包括通气设备配置的名称,以区分不同的通气设备配置信息。这里,通气设备配置的名称可以是用户自定义的名称,例如,用户可以以自己的姓名,手术名称和其它任何用户认为容易理解和记忆的名称作为默认的一种通气模式名称,如此,便于用户进行操作。
作为一种实施方式,通气配置信息可以包括至少一组通气模式配置;也就是说,一个用户可以根据实际应用需求定义一组通气模式配置或多组通气模式配置。例如,用户可以针对手术、术后恢复、通气支持等使用场景定义多组通气模式配置,也可以针对老人、成人、儿童、新生儿等不同病人类型定义多组通气模式配置,还可以根据需要针对疾病类型定义多组通气模式配置。例如,对于腹腔镜手术,由于人工气腹会引起CO2升高,可以设置相对更大的潮气量和呼吸率。
这里,一个用户定义的一组通气模式配置或多组通气模式配置可以对应该用户定义的一套通气设备配置信息,也可以对应该用户定义的多套通气设备配置信息。
示例性地,当通气设备配置信息包括通气配置信息和设备配置信息时,通气配置信息可以包括一组或多组通气模式配置;当通气设备配置信息只包括通气配置信息时,通气配置信息可以包括多组通气模式配置。
可选地,通气模式配置可以至少包括通气控制参数配置。
可选地,通气控制参数配置根据病人类型、疾病类型、使用场景等因素中的至少一种因素确定;在具体的示例中,病人类型包括但不限于老人、成人、儿童、新生儿等类型;疾病类型包括但不限于:肥胖、糖尿病等类型;使用场景包括但不限于:手术类型、术后恢复、通气支持等场景。
可选地,对于通气配置信息包括多组通气模式配置的情况,各组通 气模式配置还可以包括通气模式名称,以区分不同的通气模式配置。这里,通气模式名称可以是用户自定义的名称,例如,用户可以以自己的姓名,手术名称和其它任何用户认为容易理解和记忆的名称作为默认的一种通气模式名称,如此,便于用户进行操作。当然,对于通气配置信息只包括一组通气模式配置的情况,通气模式配置可以不包括通气模式名称。
进一步地,通气模式配置还可以包括通气报警阈值,这里,通气报警阈值表示为进行报警需要达到的条件;例如,在某一种通气控制参数达到相应的通气报警阈值时,可以发出报警。
实际应用中,通气报警阈值可以根据实际应用需求预先设置。
作为一种实施方式,设备配置信息可以包括至少一组设备配置。也就是说,一个用户可以根据实际应用需求定义一组设备配置或多组设备配置。例如,用户可以针对手术、术后恢复、通气支持等使用场景定义多组设备配置,也可以针对老人、成人、儿童、新生儿等不同病人类型定义多组设备配置,当然,还可以根据需要针对疾病类型定义多组设备配置。一个用户定义的一组设备配置或多组设备配置可以对应该用户定义的一套通气设备配置信息,也可以对应该用户定义的多套通气设备配置信息。例如,对于体外循环手术,可以在麻醉机上屏蔽掉一些不必要的报警设置。
这里,当通气设备配置信息包括通气配置信息和设备配置信息时,设备配置信息可以包括一组或多组设备配置;当通气设备配置信息只包括设备配置信息时,设备配置信息可以包括多组设备配置。
可选地,各设备配置可以包括:界面布局、报警设置和显示配置中的一个或多个。
可选地,界面布局包括但不限于显示信息(包括通气信息、波形、 参数、病人信息等)排布、操控区域(操控输入界面等)排布等,报警设置包括但不限于报警音量、报警灯光等,显示配置包括但不限于显示亮度、显示模式等。
当然,对于设备配置信息包括多组设备配置的情况,各设备配置还可以包括设备配置名称,以区别不同的设备配置。这里,设备配置名称可以是用户自定义的名称,例如,用户可以以自己的姓名,手术名称和其它任何用户认为容易理解和记忆的名称作为默认的一种设备配置名称,如此,便于用户进行操作。当然,对于设备配置信息只包括一组设备配置的情况,可以并不需要设备配置名称。
实际实施时,可以采用多种方式使通气设备配置管理装置获取通气设备配置信息;下面通过几个示例进行说明。在第一个示例中,用户可以通过人机交互设备向通气设备配置管理装置输入至少一套通气设备配置信息;在第二个示例中,参照图4,上述处理器402通过传输设备403接收来自第三方设备的至少一套通气设备配置信息;第三方设备与通气设备可以通过有线或无线的方式进行通信交互。这里,当处理器402接收来自第三方设备的至少一套通气设备配置信息后,可以将接收到的通气设备配置信息存储在存储器401中,或者,根据接收到的通气设备配置信息更新通气设备配置项。如此,根据第三方设备与通气设备配置管理装置的交互,可以提供对通气设备配置信息的一种新的获取方式,实现更为方便。
对于上述第一个示例,用户可以在通气设备待机模式下设置通气设备配置信息。对于上述第二个示例,第三方设备可以是手机、笔记本电脑、U盘等设备,用户可以预先在第三方设备中输入或存入至少一套通气设备配置信息,然后,可以控制第三方设备向通气设备发送上述至少一套通气设备配置信息。在具体实施时,可以通过读取外置存储器如U 盘中的内容,来获取至少一套通气设备配置信息;或者,可以控制第三方设备通过无线通信方式向配置信息管理装置发送至少一套通气设备配置信息。也就是说,本发明实施例中,既可以通过本地创建方式输入通气设备配置信息,也可以基于U盘加载方式或通信方式从第三方设备导入通气设备配置信息。
作为一种实现方式,处理器402,还将存储的至少一套通气设备配置信息显示到显示设备404。在一个示例中,用户可以在自定义通气设备配置信息时,利用显示设备404显示相应的通气设备配置信息,以便于用户进行通气设备配置信息的自定义设置;在另一个示例中,处理器402可以在接收到显示通气设备配置信息的指令时,根据接收到的显示通气设备配置信息的指令,将相应的通气设备配置信息显示到显示设备404。
作为一种实现方式,处理器402通过传输设备403将存储的至少一套通气设备配置信息输出至第三方设备。示例性地,处理器404可以在接收到输出通气设备配置信息的指令时,根据接收的输出通气设备配置信息的指令,将相应的通气设备配置信息输出到第三方设备。
可以理解的是,通过将存储的至少一套通气设备配置信息显示或者输出至第三方设备,这样,便于用户随时随地查看通气设备配置信息;在一个具体的示例中,可以将通气设备配置信息导出至U盘,或者,可以将通气设备配置信息通过无线通信方式导出至其它第三方设备。
在实际应用中,本步骤可以利用通气设备配置管理装置中的存储器实现。
步骤1102:接收配置选择命令,并输出给处理器。
本发明实施例中,配置选择命令表示用于从存储的通气设备配置信息选择通气设备配置信息的指令。
在实际应用中,可以通过人机交互方式向通气设备配置管理装置输 入配置选择命令,也可以利用上述第三方设备向通气设备配置管理装置发送配置选择命令。
在一个具体的示例中,用户可以通过加载用户配置菜单向通气设备输入配置选择命令;在一个实际的应用场景中,用户可以在手术开始前,通过加载用户配置菜单选择相应的通气设备配置信息;这样,便于用户进行手术。
在实际应用中,本步骤可以利用通气设备配置管理装置中的输入设备实现。
步骤1103:处理器根据接收到的配置选择命令,从存储的至少两套通气设备配置信息中选择相应的通气设备配置信息,生成对应的通气设备配置项。
本发明实施例中,每套通气设备配置信息用于表示至少一个通气设备配置项;通气设备的处理器可以根据每套通气设备配置信息,在通气设备上创建对应的通气设备配置项。
本发明实施例中,每个用户都可以根据自己经验或个人喜好自定义一套默认的通气设备配置信息,由于针对每套通气设备配置信息均生成对应的通气设备配置项,因而,对自已定义默认的通气设备配置信息的更改不会影响到其它通气设备配置信息对应的通气设备配置项。
这里,当每个用户自定义的通气设备配置信息包括至少两套通气设备配置信息时,由于针对每套通气设备配置信息均生成对应的通气设备配置项,因而,可以使每个用户获取到多套通气设备配置项。
作为一种实现方式,输入设备还接收配置修改指令并输出给处理器402,处理器402还根据接收的配置修改指令,修改通气设备中对应的通气设备配置项;
本发明实施例中,配置修改指令可以包括修改指令和删除指令中的一 种或多种;也就是说,用户可以针对至少一套通气设备配置信息进行修改或删除等操作。
示例性地,当一套通气设备配置信息包括通气配置信息和设备配置信息时,处理器402可以根据接收到的针对通气配置信息的修改指令或删除指令,修改或删除相应的通气配置信息;处理器402也可以根据接收到的针对设备配置信息的修改指令或删除指令,修改或删除相应的设备配置信息。当一套通气设备配置信息只包括通气配置信息时,处理器402可以根据接收到的针对通气配置信息的修改指令或删除指令,修改或删除相应的通气配置信息。当一套通气设备配置信息只包括设备配置信息时,处理器402也可以根据接收到的针对设备配置信息的修改指令或删除指令,修改或删除相应的设备配置信息。
可选地,当一套通气设备配置信息还包括通气设备配置的名称时,输入设备还接收针对通气设备配置的名称的重命名指令,并输出给处理器402,处理器402可以根据接收到的针对通气设备配置的名称的重命名指令,对通气设备配置的名称进行重命名。
作为一种实现方式,当一套通气设备配置信息包括通气配置信息,且上述配置修改指令为针对通气配置信息的修改或删除指令时,处理器402可以根据接收的配置修改指令,修改或删除相应的通气模式配置。
可选地,当通气配置信息包括通气模式名称时,输入设备还接收针对通气模式名称的重命名指令,并输出给处理器402,处理器402可以根据接收到的针对通气模式名称的重命名指令,对通气模式名称进行重命名。
作为一种实现方式,当一套通气设备配置信息包括设备配置信息,且上述配置修改指令为针对设备配置信息的修改或删除指令时,处理器402可以根据接收的配置修改指令,修改或删除相应的设备配置。
可选地,当设备配置信息包括设备配置名称时,输入设备还接收针对 设备配置名称的重命名指令,并输出给处理器402,处理器402可以根据接收到的针对设备配置名称的重命名指令,对设备配置名称进行重命名。
在实际应用中,本步骤可以利用通气设备配置管理装置中的处理器实现。
本实施例中的一种通气设备配置管理方法对应的计算机程序指令可以被存储在光盘,硬盘,U盘等存储介质上,当存储介质中的与一种通气设备配置管理方法对应的计算机程序指令被一电子设备读取或被执行时,实现前述实施例的任意一种通气设备配置管理方法。
上文对各个实施例的描述倾向于强调各个实施例之间的不同之处,其相同或相似之处可以互相参考,为了简洁,本文不再赘述
本申请所提供的各方法实施例中所揭露的方法,在不冲突的情况下可以任意组合,得到新的方法实施例。
本申请所提供的各产品实施例中所揭露的特征,在不冲突的情况下可以任意组合,得到新的产品实施例。
本申请所提供的各方法或设备实施例中所揭露的特征,在不冲突的情况下可以任意组合,得到新的方法实施例或设备实施例。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本发明各个实施例的方法。
上面结合附图对本发明的实施例进行了描述,但是本发明并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制 性的,本领域的普通技术人员在本发明的启示下,在不脱离本发明宗旨和权利要求所保护的范围情况下,还可做出很多形式,这些均属于本发明的保护之内。

Claims (25)

  1. 一种通气设备配置管理装置,用于通气设备的配置管理,其中,所述装置包括:输入设备、存储器和处理器;
    所述输入设备,接收配置选择命令,并输出给所述处理器;
    所述存储器,存储至少两套通气设备配置信息;
    所述处理器,根据接收到的配置选择命令,从存储的至少两套通气设备配置信息中选择相应的通气设备配置信息,生成对应的通气设备配置项。
  2. 根据权利要求1所述的装置,其中,所述通气设备配置信息包括:通气配置信息和/或设备配置信息。
  3. 根据权利要求2所述的装置,其中,所述通气配置信息包括至少一组通气模式配置。
  4. 根据权利要求3所述的装置,其中,所述通气模式配置至少包括通气控制参数配置。
  5. 根据权利要求4所述的装置,其中,所述通气模式配置还包括通气报警阈值。
  6. 根据权利要求2所述的装置,其中,所述设备配置信息包括:至少一组设备配置。
  7. 根据权利要求6所述的装置,其中,所述设备配置包括:界面布局、报警设置和显示配置中的一个或多个。
  8. 根据权利要求2至7任一项所述的装置,其中,
    所述输入设备还接收配置修改指令并输出给所述处理器;
    所述处理器根据接收到的所述配置修改指令,修改所述通气设备中对应的通气设备配置项。
  9. 根据权利要求8所述的装置,其中,所述配置修改指令包括重命 名指令、修改指令和删除指令中的一种或多种。
  10. 根据权利要求1所述的装置,其中,所述装置还包括显示设备;
    所述处理器,还将存储的至少一套通气设备配置信息显示到所述显示设备。
  11. 根据权利要求1所述的装置,其中,所述装置还包括传输设备;
    所述处理器通过所述传输设备将存储的至少一套通气设备配置信息输出至第三方设备;或者,
    所述处理器通过所述传输设备接收来自第三方设备的至少一套通气设备配置信息,将接收到的通气设备配置信息存储在所述存储器中,或,根据接收到的通气设备配置信息更新所述通气设备配置项。
  12. 一种通气设备,包括驱动设备、通气控制设备、病人呼吸回路和权利要求1至11任一项所述的通气设备配置管理装置。
  13. 根据权利要求12所述的通气设备,其中,所述通气设备为麻醉机或呼吸机。
  14. 一种通气设备配置管理方法,用于通气设备的配置管理,其中,所述方法包括:
    存储至少两套通气设备配置信息;
    接收配置选择命令,并输出给处理器;
    所述处理器根据接收到的配置选择命令,从存储的至少两套通气设备配置信息中选择相应的通气设备配置信息,生成对应的通气设备配置项。
  15. 根据权利要求14所述的方法,其中,所述通气设备配置信息包括:通气配置信息和/或设备配置信息。
  16. 根据权利要求15所述的方法,其中,所述通气配置信息包括至少一组通气模式配置。
  17. 根据权利要求16所述的方法,其中,所述通气模式配置至少包括:通气模式名称和通气控制参数配置。
  18. 根据权利要求17所述的方法,其中,所述通气模式配置还包括通气报警阈值。
  19. 根据权利要求15所述的方法,其中,所述设备配置信息包括至少一组设备配置。
  20. 根据权利要求19所述的方法,其中,所述设备配置包括:界面布局、报警设置和显示配置中的一个或多个。
  21. 根据权利要求15至20任一项所述的方法,其中,所述方法还包括:
    接收配置修改指令并输出给所述处理器;
    所述处理器根据接收到的所述配置修改指令,修改所述通气设备中对应的通气设备配置项。
  22. 根据权利要求21所述的方法,其中,所述配置修改指令包括重命名指令、修改指令和删除指令中的一种或多种。
  23. 根据权利要求14所述的方法,其中,所述方法还包括:
    将存储的至少一套通气设备配置信息显示到显示设备。
  24. 根据权利要求14所述的方法,其中,所述处理器通过传输设备将存储的至少一套通气设备配置信息输出至第三方设备;或者,
    所述处理器通过所述传输设备接收来自第三方设备的至少一套通气设备配置信息,将接收到的通气设备配置信息存储在所述存储器中,或,根据接收到的通气设备配置信息更新所述通气设备配置项。
  25. 一种计算机存储介质,其上存储有计算机程序,其中,该计算机程序被处理器执行时实现权利要求14至24任一项所述的方法。
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