Monitoring equipment, medical central station system and monitoring data review method

By simultaneously displaying images of real-time and historical monitoring data on the monitoring interface of the monitoring equipment, using virtual mannequins and trend curves, the problem of difficulty for medical staff to quickly browse the overall situation of patients is solved, and the effect of simplification of operation, time-consuming and timely detection of the disease is achieved.

CN120000162AActive Publication Date: 2025-05-16SHENZHEN MINDRAY BIO MEDICAL ELECTRONICS CO LTD
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Patent Information

Application Number
CN202510038352.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2020-12-25
Filing Date
2021-10-18
Publication Date
2025-05-16
Estimated Expiration
2041-10-18

AI Technical Summary

Technical Problem

When existing monitoring equipment monitors patients' vital signs, it is difficult for medical staff to quickly view the overall situation of the patient, resulting in complex operations and time-consuming, increasing the risk of delay in the disease.

Method used

Design a monitoring device equipped with sensors, displays and processors that can collect and display a variety of patient monitoring data in real time, including real-time and historical data. By simultaneously displaying real-time monitoring images and monitoring and evaluation images on the monitoring interface, using virtual mannequins and trend curves, graphical updates and evaluations of monitoring parts are achieved.

Benefits of technology

It realizes that medical staff quickly browse the overall situation of patient monitoring data, simplifies the operation process, reduces time-consuming, improves the efficiency of timely detection and diagnosis of changes in the disease, and reduces the risk of delay in the disease.

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Abstract

The invention discloses monitoring equipment, a medical central station system and a monitoring data review method. The monitoring device comprises a sensor, a display and a processor. The sensor is used for collecting monitoring data of a patient. The display is used for displaying a monitoring interface. The processor is used for acquiring monitoring data; according to the monitoring data, a real-time monitoring image and a monitoring evaluation image are displayed on a monitoring interface, and the monitoring evaluation image is used for presenting a parameter trend curve and a virtual human body model of the multiple parameters and optionally used for presenting preset evaluation parameter values of the multiple parameters; the virtual human body model is used for graphically displaying a monitored part; responding to a review operation for any target monitoring point on the parameter trend curve, and determining a target parameter value corresponding to the target monitoring point; according to the target parameter value, the virtual human body model and the selectable preset evaluation parameter value are updated and displayed, the browsing operation is simple, the monitored part can be observed at a fixed point, and the interpretation efficiency of medical staff on related monitoring data is improved.
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Description

[0001] This application is a divisional application of the invention patent application with the application date of October 18, 2021, application number 202111214058.2, and invention name "Monitoring equipment, medical central station system and method for reviewing monitoring data". Technical Field

[0002] The present invention relates to the technical field of medical monitoring, and in particular to a monitoring device, a medical central station system and a monitoring data review method. Background Art

[0003] Monitoring equipment can monitor the patient's vital signs in real time, and therefore can provide important patient information for medical clinical diagnosis. Medical staff can view the patient's historical monitoring data by browsing the data review, and then locate abnormal data. However, when a doctor needs to pay attention to a patient's information at different times, it is necessary to switch different interfaces to realize multiple monitoring data reviews to locate abnormal data, so that medical staff cannot quickly browse the patient's overall condition, resulting in complicated browsing operations and more time-consuming, thereby increasing the risk of delayed illness. Furthermore, on the monitoring interface of the monitoring device, the monitoring part cannot be graphically updated and displayed according to the monitoring data corresponding to a certain monitoring point reviewed, so that medical staff cannot quickly and effectively evaluate or diagnose the patient's condition and / or understand the connection status of the monitoring device. Summary of the invention

[0004] In view of this, the present invention is necessary to provide a monitoring device, a medical central station system and a method for reviewing monitoring data to solve the above technical problems.

[0005] In a first aspect, an embodiment of the present invention provides a monitoring device for monitoring a patient's physiological state. The monitoring device includes a sensor, a display, and a processor. The sensor is used to collect monitoring data of the patient, the monitoring data includes parameter values ​​of multiple parameters, and the parameter values ​​of the multiple parameters include real-time parameter values ​​and historical parameter values. The display is used to display a monitoring interface. The processor is used to: obtain the monitoring data from the sensor; display a real-time monitoring image and a monitoring evaluation image on the monitoring interface according to the monitoring data, wherein the real-time monitoring image is used to present the real-time parameter value and / or real-time parameter waveform, and the monitoring evaluation image is used to present the parameter trend curve and virtual human model of the multiple parameters, and optionally also to present the preset evaluation parameter values ​​of the multiple parameters; the virtual human model is used to graphically display the monitoring part according to the parameter values ​​or parameter trend curves of the multiple parameters; in response to the review operation of any target monitoring point on the parameter trend curve, determine the target parameter value corresponding to the target monitoring point; and update and display the virtual human model and the optional preset evaluation parameter value according to the target parameter value.

[0006] In a second aspect, the present application provides a monitoring data review method, which is applied to a monitoring device in a medical central station system. The review method comprises the following steps:

[0007] Collecting monitoring data of the patient, wherein the monitoring data includes parameter values ​​of multiple parameters, and the parameter values ​​of the multiple parameters include real-time parameter values ​​and historical parameter values;

[0008] Display a monitoring interface;

[0009] Acquiring the monitoring data;

[0010] According to the monitoring data, a real-time monitoring image and a monitoring evaluation image are displayed on the monitoring interface, wherein the real-time monitoring image is used to present the real-time parameter value and / or the real-time parameter waveform, and the monitoring evaluation image is used to present the parameter trend curves of the multiple parameters and a virtual human body model, and optionally also used to present the preset evaluation parameter values ​​of the multiple parameters; the virtual human body model is used to graphically display the monitoring part according to the parameter values ​​or parameter trend curves of the multiple parameters;

[0011] In response to a review operation on any target monitoring point on the parameter trend curve, determining a target parameter value corresponding to the target monitoring point;

[0012] According to the target parameter value, the virtual human body model and the optional preset evaluation parameter value are updated and displayed.

[0013] In a third aspect, the present application provides a medical central station system, comprising a central station device, the central station device is communicatively connected to a monitoring device, the central station device obtains monitoring data from the monitoring device, and the central station device comprises a display, a processor and a memory. The memory is used to store programs. The display is used to display a monitoring interface. The processor is used to execute the program in the memory and is configured to:

[0014] According to the monitoring data, a real-time monitoring image and a monitoring evaluation image are displayed on the monitoring interface, wherein the real-time monitoring image is used to present the real-time parameter value and / or the real-time parameter waveform, and the monitoring evaluation image is used to present the parameter trend curves of the multiple parameters and a virtual human body model, and optionally also used to present the preset evaluation parameter values ​​of the multiple parameters; the virtual human body model is used to graphically display the monitoring part according to the parameter values ​​or parameter trend curves of the multiple parameters;

[0015] In response to a review operation on any target monitoring point on the parameter trend curve, determining a target parameter value corresponding to the target monitoring point;

[0016] According to the target parameter value, the virtual human body model and the optional preset evaluation parameter value are updated and displayed.

[0017] The embodiment of the present application provides a monitoring device, a medical central station system and a method for reviewing monitoring data, based on the simultaneous display of real-time monitoring images and monitoring evaluation images on the monitoring interface of the monitoring device, so that medical staff can quickly browse historical monitoring data, and combine real-time monitoring data to diagnose and infer the patient's condition. Further, the user can review multiple groups of monitoring data corresponding to any target monitoring point on the parameter trend curve. The browsing operation is simple and less time-consuming, and changes in the condition can be discovered more promptly, reducing the risk of delayed condition. In addition, on the monitoring interface of the monitoring device, the monitoring site and the optional preset evaluation parameter values ​​can be updated and displayed based on the reviewed historical monitoring data to achieve fixed-point observation and management of the monitoring site, and the relevant changes between the monitoring data corresponding to any monitoring point can be presented in a centralized manner, thereby improving the efficiency of medical staff in interpreting the relevant monitoring data. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative labor.

[0019] Figure 1 It is a schematic diagram of a program module of a medical central station system provided in an embodiment of the present invention.

[0020] Figure 2 It is a flowchart of the steps of the method for displaying monitoring data provided by an embodiment of the present invention.

[0021] Figure 3 It is an interface diagram of a monitoring interface displayed by a monitoring device in a medical central station system provided in an embodiment of the present invention.

[0022] Figure 4 This is an interface diagram of a pop-up window interface on a monitoring interface of a monitoring device in response to a preset first operation provided by the first embodiment of the present invention.

[0023] Figure 5 This is an interface diagram of a pop-up window interface on a monitoring interface of a monitoring device in response to a preset first operation provided by a second embodiment of the present invention.

[0024] Figure 6 The monitoring device provided in the embodiment of the present invention responds to Figure 5 Interface diagram of the monitoring interface displayed by rotating the virtual human body model in the monitoring interface.

[0025] Figure 7 It is a flowchart of the steps of the monitoring data review method provided by an embodiment of the present invention.

[0026] Figure 8 It is an interface diagram of a monitoring interface displayed by the monitoring device provided by an embodiment of the present invention in response to a review operation on any target monitoring point on a parameter trend curve.

[0027] Fig. 9 yes Figure 8 Schematic diagram of the window interface of the monitoring interface. DETAILED DESCRIPTION

[0028] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.

[0029] It can be understood that the terms in the specification and claims of the present application and the above-mentioned drawings are only for describing specific embodiments and are not intended to limit the present application. The terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish different objects, rather than to describe a specific order. Unless the context clearly states otherwise, the singular forms "one" and "said" are also intended to include plural forms. The term "including" and any of their variations are intended to cover non-exclusive inclusions. For example, a process, method, system, product or device that includes a series of steps or units is not limited to the listed steps or units, but optionally also includes steps or units that are not listed, or optionally also includes other steps or units inherent to these processes, methods, products or devices. In addition, the present application can be implemented in a variety of different forms and is not limited to the embodiments described in this embodiment. The purpose of providing the following specific embodiments is to facilitate a clearer and more thorough understanding of the disclosure of the present application, wherein the words indicating directions such as upper, lower, left, and right are only for the position of the structure shown in the corresponding drawings. The term "monitoring interface" may be an interface of the monitoring device that displays parameter trends and / or parameter values; or, it may be an interface displayed after the monitoring device is turned on; or, it may be an interface that is used more frequently by the monitoring device.

[0030] The following description is a preferred embodiment of the present invention, but the above description is for the purpose of explaining the general principles of the present invention and is not intended to limit the scope of the present invention. The scope of protection of the present invention shall be determined by the appended claims.

[0031] The embodiment of the present invention provides a method for displaying monitoring data, a monitoring device, and a medical central station system. The method for displaying monitoring data is applied to the medical central station system or the monitoring device, and the medical central station system or the monitoring device displays a monitoring interface. The display method comprises the following steps:

[0032] Acquire monitoring data, wherein the monitoring data includes parameter values ​​of multiple parameters, and the parameter values ​​of the multiple parameters include real-time parameter values ​​and historical parameter values; in response to a preset first operation for the monitoring interface, display the real-time monitoring image in a first display area of ​​the monitoring interface, and display a monitoring evaluation image in a second display area of ​​the monitoring interface; wherein the real-time monitoring image is used to present at least one of the real-time parameter values ​​and the real-time parameter waveform, and the monitoring evaluation image is used to present a parameter trend curve and a virtual human body model of at least some of the multiple parameters, and optionally also to present preset evaluation parameter values ​​of the multiple parameters; the display time length of the parameter trend curve is greater than the display time length of the real-time parameter waveform; the virtual human body model is used to graphically display the monitoring part according to the parameter values ​​or parameter trend curves of the multiple parameters; the preset evaluation parameter value is the real-time parameter value; or, it is the historical parameter value.

[0033] In this way, the monitoring interface can display the real-time monitored monitoring data and the changing trends of part or all of the monitoring data that the medical staff is interested in on the same screen, and can present the presentation of the relevant changes between the preset evaluation parameter values ​​corresponding to a certain monitoring point, so that the medical staff can quickly browse the overall situation of the patient's monitoring data, and the browsing operation is simple, less time-consuming, and can more timely discover changes in the condition and reduce the risk of delayed treatment. In addition, based on the preset evaluation parameter values, the monitoring site is graphically displayed on the monitoring interface of the monitoring device, so that the medical staff can quickly and effectively evaluate or diagnose the patient's condition and / or understand the connection status of each component in the monitoring device.

[0034] An embodiment of the present invention provides a monitoring data review method. The monitoring data review method is applied to the medical central station system or the monitoring device, and the medical central station system or the monitoring device displays a monitoring interface. The review method includes the following steps: collecting the patient's monitoring data, wherein the monitoring data includes parameter values ​​of multiple parameters, and the parameter values ​​of the multiple parameters include real-time parameter values ​​and historical parameter values; displaying a monitoring interface; acquiring the monitoring data; displaying a real-time monitoring image and a monitoring evaluation image on the monitoring interface according to the monitoring data, wherein the real-time monitoring image is used to present the real-time parameter value and / or real-time parameter waveform, and the monitoring evaluation image is used to present the parameter trend curve and virtual human body model of the multiple parameters, and optionally also used to present the preset evaluation parameter values ​​of the multiple parameters; the virtual human body model is used to graphically display the monitoring part according to the parameter values ​​or parameter trend curves of the multiple parameters; in response to the review operation for any target monitoring point on the parameter trend curve, determining the target parameter value corresponding to the target monitoring point; according to the target parameter value, updating and displaying the virtual human body model and the optional preset evaluation parameter value.

[0035] In this way, based on the simultaneous display of real-time monitoring images and monitoring evaluation images on the monitoring interface of the monitoring device, medical staff can quickly browse historical monitoring data, and combine real-time monitoring data to diagnose and infer the patient's condition. Furthermore, the user can review multiple sets of monitoring data corresponding to any target monitoring point on the parameter trend curve. The browsing operation is simple and less time-consuming, and changes in the condition can be discovered more promptly, reducing the risk of delayed treatment. In addition, on the monitoring interface of the monitoring device, the monitoring site and the optional preset evaluation parameter values ​​can be updated and displayed graphically based on the reviewed historical monitoring data to achieve fixed-point observation and management of the monitoring site, and the relevant changes between the monitoring data corresponding to any monitoring point can be presented in a centralized manner, thereby improving the efficiency of medical staff in interpreting the relevant monitoring data.

[0036] See also Figure 1 , Figure 1 The figure shows a schematic diagram of the structure of a medical central station system 1000 provided in an embodiment of the present application. The medical central station system 1000 includes a monitoring device 100 and a third-party device 300 communicatively connected to the monitoring device 100. Both the monitoring device 100 and the third-party device 300 can be used to obtain monitoring data of a patient.

[0037] The monitoring device 100 may be, but is not limited to, any one or a combination of a monitor, a local central station device, a remote central station device, a cloud service system, and a mobile terminal. In this embodiment, the monitoring device 100 may be a monitor, which is used to monitor the patient's monitoring parameters in real time. The monitor may include a bedside monitor, a wearable monitor, and the like. The third-party device 300 includes a central station device. The central station device is used to receive the monitoring data sent by the monitor and centrally monitor the monitoring data. The central station device may include at least one of a local central station device and a remote central station device.

[0038] It should be noted that the central station device connects the monitors in one or more departments through a network to achieve the purpose of real-time centralized monitoring and mass data storage. For example, the central station device stores, but is not limited to, monitoring data, basic information of patients, medical history information and diagnosis information.

[0039] In some embodiments, the monitor and the central station device can form an interconnection platform through BeneLink to achieve data communication between the monitor and the central station device. For example, the central station device can access the monitoring data monitored by the monitor. In some other embodiments, the monitor and the central station device can also establish a data connection through a communication module. The communication module can be, but is not limited to, a wifi, Bluetooth or mobile communication 2G, 3G, 4G, 5G and other communication modules.

[0040] Specifically, in this embodiment, the monitoring device 100 includes a ventilator monitor, an anesthesia monitor, a defibrillator monitor, an intracranial pressure monitor, an electrocardiogram monitor, etc. The monitoring device 100 includes, but is not limited to, a processor 20 and a display 30. The display 30 is used to display a monitoring interface. The monitoring device 100 can be a portable monitoring device, a transport monitoring device, or a mobile monitoring device.

[0041] It should be understood by those skilled in the art that Figure 1 The components of the medical central station system 1000 are merely examples and do not constitute a limitation on the medical central station system 1000. The monitoring device 100 and the medical central station system 1000 may include Figure 1 More or fewer components, or a combination of certain components, or different components as shown, for example, the monitoring device 100 may also include a power module, etc., and the medical central station system 1000 may also include a positioning navigation device, a printing device, etc.

[0042] In some embodiments, the processor 20 is used to: obtain monitoring data, wherein the monitoring data includes parameter values ​​of multiple parameters, and the parameter values ​​of the multiple parameters include real-time parameter values ​​and historical parameter values; and in response to a preset first operation for the monitoring interface, display a real-time monitoring image in a first display area of ​​the monitoring interface, and display a monitoring evaluation image in a second display area of ​​the monitoring interface; wherein the real-time monitoring image is used to present at least one of the real-time parameter values ​​and the real-time parameter waveform, and the monitoring evaluation image is used to present a parameter trend curve of at least some of the multiple parameters and a virtual human body model and / or preset evaluation parameter values; the display time length of the parameter trend curve is greater than the display time length of the real-time parameter waveform; the virtual human body model is used to graphically display the monitoring part according to the preset evaluation parameter value; the preset evaluation parameter value is the real-time parameter value; or, it is the historical parameter value.

[0043] In this way, the monitoring interface can display the real-time monitored monitoring data and the change trends of part or all of the monitoring data that the medical staff is interested in on the same screen, and can present the presentation of the relevant changes between the preset evaluation parameter values ​​corresponding to a certain monitoring point, so that the medical staff can quickly browse the overall situation of the patient's monitoring data, and the browsing operation is simple, less time-consuming, and can more timely discover changes in the condition and reduce the risk of delayed treatment. In addition, according to the preset evaluation parameter values, the monitoring site is graphically displayed on the monitoring interface of the monitoring device, so that the medical staff can quickly and effectively evaluate or diagnose the patient's condition and / or understand the connection status of each component in the monitoring device.

[0044] In some embodiments, the processor 20 is also used to: obtain monitoring data, wherein the monitoring data includes parameter values ​​of multiple parameters, and the parameter values ​​of the multiple parameters include real-time parameter values ​​and historical parameter values; based on the monitoring data, display a real-time monitoring image and a monitoring evaluation image on the monitoring interface of the monitoring device, wherein the real-time monitoring image is used to present at least one of the real-time parameter values ​​and the real-time parameter waveform, and the monitoring evaluation image is used to present the parameter trend curve of the multiple parameters and a virtual human body model and / or preset evaluation parameter values; the virtual human body model is used to graphically display the monitoring part according to the preset evaluation parameter values; in response to a review operation on any target monitoring point on the parameter trend curve, determine the target parameter value corresponding to the target monitoring point; and update and display the virtual human body model and the optional preset evaluation parameter value according to the target parameter value.

[0045] In this way, based on the simultaneous display of real-time monitoring images and monitoring evaluation images on the monitoring interface of the monitoring device, medical staff can quickly browse historical monitoring data, and combine real-time monitoring data to diagnose and infer the patient's condition. Furthermore, the user can review multiple sets of monitoring data corresponding to any target monitoring point on the parameter trend curve. The browsing operation is simple and less time-consuming, so that changes in the condition can be discovered more promptly and the risk of delayed treatment can be reduced. In addition, on the monitoring interface of the monitoring device, the monitoring site and the optional preset evaluation parameter values ​​can be updated and displayed based on the reviewed historical monitoring data to achieve fixed-point observation and management of the monitoring site, and the relevant changes between the monitoring data corresponding to any monitoring point can be presented in a centralized manner, thereby improving the efficiency of medical staff in interpreting the relevant monitoring data.

[0046] In some embodiments, the monitoring device 100 further includes a sensor 10. The sensor 10 and the processor 20 and the display 30 may be connected via a wired communication protocol or a wireless communication protocol, so that data can be exchanged between the sensor 10 and the processor 20 and the display 30. The wireless communication technology includes, but is not limited to, various generations of mobile communication technologies (2G, 3G, 4G and 5G), wireless networks, Bluetooth, ZigBee, ultra-wideband UWB, NFC, etc.

[0047] Specifically, the sensor 10 is used to collect monitoring data of the patient. The monitoring parameters may include physiological parameters. The physiological parameters include, but are not limited to, one or more vital sign parameters of electrocardiogram, respiration, pulse oxygen saturation, heart rate, blood oxygen, non-invasive blood pressure, and invasive blood pressure.

[0048] In some embodiments, the sensor 10 can be independently arranged outside the monitoring device 100 and detachably connected to the monitoring device 100. The sensor 10 can be used to collect patient monitoring data in real time. The processor 20 is also used to process the monitoring data signal from the sensor 10. The sensor 10 includes, but is not limited to, monitoring parameters monitoring accessories such as electrocardiogram, respiration, blood oxygen, blood pressure, cerebral blood flow, cerebral blood oxygen, electroencephalogram and cerebrovascular regulation. Among them, the monitoring device 100 is provided with a number of connection interfaces. The several connection ports can be, but are not limited to, electrocardiogram / respiration interface, blood oxygen interface, invasive blood pressure interface, non-invasive blood pressure interface, cerebral blood flow interface, cerebral blood oxygen interface, electroencephalogram interface and cerebrovascular regulation interface. The monitoring parameter monitoring accessories are electrically connected to the monitoring device 100 through the connection interface. In some other embodiments, the sensor 10 can also be integrated into the monitoring device 100.

[0049] In some other embodiments, the monitoring device 100 may not include the sensor 10, and the monitoring device 100 may receive monitoring data collected by an external monitoring accessory through a communication module.

[0050] The processor 20 can also be used to control the cooperation of various functional components in the monitoring device 100. Specifically, the processor 20 is used to process the vital sign parameters such as electrocardiogram, respiration, blood oxygen, blood pressure, cerebral blood flow, cerebral blood oxygen, electroencephalogram and cerebrovascular regulation collected by the sensor 10 to obtain monitoring data, and control the display 30 to display the monitoring data. The monitoring data includes, but is not limited to, at least one of a parameter value and a parameter trend.

[0051] In this embodiment, the display 30 is used to provide a user with a visual display output. Specifically, the display 30 can be used to provide a user with a visual display interface, such as, but not limited to, a monitoring interface, a monitoring parameter setting interface, an alarm parameter interface, an alarm parameter setting interface, etc. The monitoring interface displayed by the display 30 is used to display the monitoring data monitored within a preset time period.

[0052] Specifically, the display 30 may be a touch display, or a display 30 with an input panel, that is, the display 30 may serve as an input-output device.

[0053] In some embodiments, the monitoring device 100 also includes an alarm module 50 connected to the processor 20. The alarm module 50 is used to output an alarm prompt so that medical staff can perform corresponding rescue measures, and can understand the patient's condition and the working status of the equipment in real time, thereby avoiding the phenomenon of negligence of medical staff or patients, and improving the safety of monitoring. The alarm module 50 is, for example, but not limited to an alarm light, an alarm speaker, etc. In this embodiment, the alarm module includes a light emitting diode and / or a buzzer, and is used to generate an audible and visual alarm signal. When one or more monitoring parameter values ​​exceed a preset threshold, for example, the heart rate is lower than the heart rate threshold, and the blood pressure is higher than the preset threshold, the alarm module 50 is triggered, thereby sending an alarm to the medical staff, and the specific alarm information can be displayed on the display 30, or the alarm information can be played through an audio alarm speaker, or the alarm information can be printed out through a printing device.

[0054] In order to realize the user interface and data exchange, in addition to the display 30, the monitoring device 100 may also include an input / output device 60 connected to the processor 20. The input / output device 60 can be used for the user to input operation instructions and output a visual display interface to the user. The input / output device 60 includes, but is not limited to, input devices such as a keyboard, a mouse, a touch screen, a remote control, and output devices such as a printer, a voice playback device, a USB port, an Ethernet connection, or other interfaces, network ports, etc. for transmitting monitoring data to and from a connected computer or any other device in a hospital local area network HLAN. Specifically, in some embodiments, the input / output device 60 enables the monitoring device 100 to be connected to a computer interface, and the user can input configuration parameters, etc. through the computer and the input / output device 60. In some other embodiments, the input / output device 60 enables the monitoring device 100 to be connected to a network interface of the HLAN, and can receive additional time-stamped clinical information, such as blood gas data, laboratory results, etc., which the user can use as additional input configuration parameters, etc. through the HLAN and the input / output device 60.

[0055] The monitoring device 100 may further include a communication module 70 connected to the processor 20. The processor 20 is also used to control the communication module 70 to send the vital sign monitoring data collected by the sensor 10 to the third-party device 300. In some embodiments, as described above, the display 30 may also serve as an input / output device 60, such as a touch display screen.

[0056] In some embodiments, the monitoring device 100 can establish data communication with the third-party device 300 through the communication module 70. The communication module 70 can be, but is not limited to, WiFI, Bluetooth, NFC, ZigBee, ultra-wideband UWB or 2G, 3G, 4G, 5G and other mobile communication modules. Therefore, the patient's monitoring parameters and alarm prompt information and other monitoring information can be wirelessly transmitted to the hospital's third-party device 300 for centralized monitoring through the communication module 70 of the monitoring device 100. In some other embodiments, the monitoring device 100 can also establish a connection with the third-party device 300 through a cable. The third-party device 300 can be, but is not limited to, a central monitoring service station device or a bedside monitor. The third-party device 300 can also be a cloud service system or a mobile terminal such as a mobile phone, a tablet computer, or a personal computer.

[0057] Among them, the number of monitoring devices 100 may include one or more. The third-party device 300 establishes data communication with at least one monitoring device 100. The third-party device 300 includes a processor 302, a display 304, a memory 306 and an alarm module 308. In some embodiments, the functions of the processor 302, the display 304, the memory 306 and the alarm module 308 of the third-party device 300 may include the same functions as the processor 20, the display 30, the memory 40 and the alarm module 50 of the monitoring device 100, which are not repeated here. For example, the processor 302 can also be used to process the monitoring data collected by the sensor 10 and control the display 304 to display the monitoring data. The functions of the processor 302, the display 304 and the memory 306 of the third-party device 300 can also include the functions that the processor 20, the display 30 and the memory 40 of the monitoring device 100 do not have, for example, the processor 20 can receive and process the monitoring data directly sent by different monitoring devices 100 through the communication module 70.

[0058] The processor 20, 302 may be a central processing unit (CPU), or other general-purpose processors, digital signal processors (DSP), application-specific integrated circuits (ASIC), field-programmable gate arrays (FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. A general-purpose processor may be a microprocessor or the processor may be any conventional processor, etc. The processor 20 is the control center of the monitoring device 100, and various interfaces and lines are used to connect various parts of the entire monitoring device 100. The processor 20 is the control center of the third-party device 300, and various interfaces and lines are used to connect various parts of the entire third-party device 300.

[0059] The processor 20, 302 is also used to execute all steps in the following monitoring data display method and the following monitoring data review method. For example, Figure 2 Steps S201 to S205 in Figure 7 Specifically, the memory 40 stores a program 401, the memory 306 stores a program 307, and the processors 20, 302 are used to call the programs 401, 307 in the memory 40, 306 to execute all steps in the following monitoring data display method and the following monitoring data review method.

[0060] The memory 40, 306 can be used to store patient monitoring data. The memory 40, 306 can be used to store computer programs and / or modules. The processor 20, 302 implements various functions of the monitoring device 100 and the third-party device 300 by running or executing the computer programs and / or modules stored in the memory 40, 306, and calling the data stored in the memory 40, 306. The memory 40, 306 can mainly include a program storage area and a data storage area, wherein the program storage area can store an operating system, application programs required for multiple functions (such as sound playback function, image playback function, etc.); the data storage area can store data created according to the use of the mobile phone (such as audio data, phone book, etc.). In addition, the memory 40, 306 can include a high-speed random access memory, and can also include a non-volatile memory, such as a hard disk, a memory, a plug-in hard disk, a smart memory card (Smart Media Card, SMC), a secure digital (Secure Digital, SD) card, a flash card (Flash Card), multiple disk storage devices, flash memory devices, or other volatile solid-state storage devices.

[0061] The embodiment of the present invention discloses a method for displaying monitoring data, which can not only display the monitoring data monitored in real time and the changing trends of part or all of the monitoring data that the medical staff is interested in on the same screen, but also can present the presentation of the relevant changes between the preset evaluation parameter values ​​corresponding to a certain monitoring point, so that the medical staff can quickly browse the overall situation of the patient's monitoring data, and the browsing operation is simple and less time-consuming, so that the changes in the condition can be discovered more timely and the risk of delayed treatment can be reduced. In addition, based on the preset evaluation parameter values, the monitoring parts are graphically displayed on the monitoring interface of the monitoring device, so that the medical staff can quickly and effectively evaluate or diagnose the patient's condition and / or understand the connection status of each component in the monitoring device. The following is a detailed description.

[0062] Please also read Figure 1 and Figure 2 , Figure 2 The flowchart of a method for displaying monitoring data provided by an embodiment of the present application is shown. The method for displaying monitoring data is applied to the above-mentioned medical central station system 1000. Specifically, the method for displaying monitoring data can be applied to the above-mentioned monitoring device 100 alone, can also be applied to the above-mentioned third-party device 300 alone, and can also be applied to the above-mentioned monitoring device 100 and the third-party device 300 at the same time. In this embodiment, the method for displaying monitoring data is applied to the above-mentioned monitoring device 100 as an example for explanation. The monitoring device 100 displays a monitoring interface, and the method for displaying monitoring data includes the following steps.

[0063] Step S201, displaying a monitoring interface.

[0064] It is understandable that when the method for displaying monitoring data is applied to the above-mentioned monitoring device 100, before step S201, the display method further includes: collecting the monitoring data of the patient. In this embodiment, the monitoring data of the patient is collected by the sensor 10 of the monitoring device 100. The processor 20 obtains the monitoring data from the sensor 10. When the method for displaying monitoring data is applied to the central station device of the above-mentioned medical central station system 1000, the central station device displays the interface, and the central station device obtains the monitoring data from the monitoring device 100. It should be noted that step S201 can be performed before step S203; or, it can also be performed after step S203.

[0065] Step S203, acquiring monitoring data, wherein the monitoring data includes parameter values ​​of multiple parameters, and the parameter values ​​of the multiple parameters include real-time parameter values ​​and historical parameter values.

[0066] In some embodiments, the acquisition of monitoring data specifically includes: acquiring monitoring data monitored within a preset time period. The preset time period can be customized through the setting menu of the monitoring device 100, or it can be a factory default preset of the monitoring device 100, such as 1 hour, 2 hours, 5 hours, etc. In this embodiment, the preset time period refers to the set of all times that the monitoring device 100 monitors the patient's vital sign parameters continuously or at preset time intervals. The monitoring data may also include parameter trends corresponding to the parameter values ​​of the multiple parameters. The parameter trends are continuously generated over time. The parameter trends include real-time parameter waveforms displayed in real time on the monitoring device 100 and hidden or shielded historical parameter trends. The monitoring data includes brain protection related monitoring data.

[0067] It should be noted that the embodiments of the present application are described using brain protection monitoring as an example. Those skilled in the art should understand that the interface display scheme of the present application can also be applied to protection monitoring of other organs, systems or their combination.

[0068] See also Figure 3 , Figure 3The interface diagram of the monitoring interface 301 displayed by the monitoring device 100 is shown. The monitoring interface 301 displays brain protection related monitoring data. The brain protection related monitoring data includes cerebral blood flow related monitoring data, EEG related monitoring data, cerebral oxygen saturation related monitoring data and cerebrovascular regulation related monitoring data. The brain protection related monitoring data also includes electrocardiogram (ECG), blood oxygen saturation (SpO2), etc. In this embodiment, cerebral vascular regulation (cerebral autoregulation, CA) refers to cerebrovascular reactivity (cerebrovascular reactivity, CVR). CVR refers to the ability of cerebral blood vessels to dilate or contract under the influence of various factors affecting vascular movement. Among them, the cerebral blood flow related monitoring data include, but are not limited to, intracranial pressure (intracranial pressure, ICP), cerebral perfusion pressure (cerebral perfusion pressure, CPP), mean arterial pressure (mean arterial pressure, MAP), etc. The EEG-related monitoring data include, but are not limited to, electroencephalogram (EEG), bispectral index (BIS), amplitude-integrated electroencephalogram (aEEG), digital substraction angiography (DSA) spectrum, PRx (Presion reactivity index), etc. The cerebral blood oxygen-related monitoring data include, but are not limited to, regional cerebral oxygen saturation (rSO2), transcranial Doppler (TCD) ultrasound data, etc. The cerebrovascular regulation-related monitoring data include, but are not limited to, end-tidal carbon dioxide concentration or partial pressure (EtCO2) and body temperature (TEMP).

[0069] In some embodiments, the monitoring interface 301 includes a status bar 31, a menu bar 33, and a task bar 35 disposed between the status bar 31 and the menu bar 33. Among them, the status bar 31 is displayed on the top bar of the monitoring interface 301, the menu bar 33 is displayed on the bottom bar of the monitoring interface 301, and the task bar 35 can be displayed between the top bar and the bottom bar of the monitoring interface 301, that is, displayed in the middle position, to facilitate user observation and operation. The status bar 31 can be used to display a status identification icon. The status identification icon may include, but is not limited to, a network identification icon, a power identification icon, a monitoring type icon, a patient basic information icon, and the like.

[0070] The menu bar 33 may be used to display function menu item icons. The function menu item icons may include a control icon 331. The user may operate the control icon 331 to adjust the content displayed on the monitoring interface 301. In some embodiments, the control icon 331 may also be set in the status bar 31 of the monitoring interface 301, or the task bar 35 of the monitoring interface 301. In some other embodiments, the menu bar icons 33 may also include a volume adjustment icon, a power on / off icon, a menu setting item icon, and the like.

[0071] Step S205, in response to a preset first operation for the monitoring interface, display the real-time monitoring image in the first display area of ​​the monitoring interface, and display the monitoring evaluation image in the second display area of ​​the monitoring interface; wherein the real-time monitoring image is used to present at least one of the real-time parameter value and the real-time parameter waveform, and the monitoring evaluation image is used to present the parameter trend curve and the virtual human body model of at least some of the multiple parameters, and optionally also used to present the preset evaluation parameter values ​​of the multiple parameters; the display time length of the parameter trend curve is greater than the display time length of the real-time parameter waveform; the virtual human body model is used to graphically display the monitoring part according to the parameter values ​​or parameter trend curves of the multiple parameters; the preset evaluation parameter value is the real-time parameter value; or, it is the historical parameter value.

[0072] In an embodiment of the present application, the parameter trend curve and virtual human model of at least some of the multiple parameters are displayed in the second display area of ​​the monitoring interface, and the virtual human model is used to graphically display the monitoring part according to the parameter values ​​or parameter trend curves of the multiple parameters, so that medical staff can quickly understand the status of the monitoring part by the virtual human model and parameter trend curve corresponding to the monitoring point of interest, thereby improving the doctor's interpretation efficiency of multiple parameters. In addition, the preset evaluation parameter values ​​of the multiple parameters are optionally displayed in the second display area, so as to further assist medical staff in understanding the patient's status and perform corresponding manual intervention, thereby improving the work efficiency of medical staff.

[0073] Optionally, in some embodiments, the response to a preset first operation of the monitoring interface displays the real-time monitoring image in a first display area of ​​the monitoring interface, and displays a monitoring and evaluation image in a second display area of ​​the monitoring interface, specifically including: according to the monitoring data, controlling the simultaneous display of the real-time monitoring image and the monitoring and evaluation image, and displaying the real-time monitoring image in the first display area of ​​the monitoring interface, and displaying the monitoring and evaluation image in the second display area of ​​the monitoring interface.

[0074] Optionally, in some embodiments, before responding to the preset first operation on the monitoring interface, the display method further comprises: displaying the real-time monitoring image on the monitoring interface according to the monitoring data. In this way, the corresponding display interface of the real-time monitoring image can be controlled to display the monitoring evaluation image.

[0075] Wherein, the real-time monitoring image is displayed in the task bar 35. In the present embodiment, the real-time parameter waveforms of the multiple parameters are displayed in the upper left area of ​​the task bar 35, and the real-time parameter values ​​of the multiple parameters are displayed in the right area and the lower left area of ​​the task bar 35. In some other embodiments, the real-time parameter waveforms of the multiple parameters can be displayed in the left area of ​​the task bar 35, and the real-time parameter values ​​of the multiple parameters can be displayed in the right area of ​​the task bar 35. The real-time parameter values ​​and real-time parameter waveforms are arranged from left to right and from top to bottom according to the user's attention, which conforms to the user's usual observation habits and is convenient for users to view, which also greatly saves the time for medical staff to diagnose the disease. It should be noted that the specific display arrangement of the real-time parameter values ​​and the real-time parameter waveforms in the task bar 35 is not specifically limited in this application. In some embodiments, the real-time monitoring image is only used to present the real-time parameter values ​​or real-time parameter waveforms.

[0076] In this embodiment, the multiple parameters include, but are not limited to, at least one of ECG, ICP, CPP, MAP, EEG, BIS, aEEG, rSO2, and etCO2. In some other embodiments, the multiple parameters may also include, but are not limited to, monitoring parameters related to cardiac protection, monitoring parameters related to lung protection, monitoring parameters related to the nervous system, monitoring parameters related to the blood system, monitoring parameters related to the urinary system, etc. The monitoring parameter categories of the multiple parameters may be user-defined or factory default settings of the monitoring device.

[0077] It should be noted that the term "real-time" may refer to the most recently collected timestamp sample, which is not necessarily the value at the current moment. For example, if a new SPO2 sample is collected every two seconds, the real-time parameter value displayed in the evaluation parameter value area may be collected until two seconds before the current moment. Among them, the real-time parameter value refers to the value collected most recently to the current moment. The real-time parameter waveform refers to the parameter trend corresponding to the preset time period before the current moment. The preset time period is the display time length of the real-time parameter waveform defined by the user, or the factory default setting of the monitoring device 100, such as 10min, 20min, 30min, etc.

[0078] Among them, the preset evaluation parameter value can be the parameter value corresponding to the latest monitoring point on the parameter trend curve (that is, the real-time parameter value); or, the historical parameter value can also be the parameter value corresponding to a historical monitoring point on the parameter trend curve.

[0079] In this embodiment, the trend type and the number of trends of the real-time parameter waveform are greater than the trend type and the number of trends of the parameter trend curve. The trend type of the real-time parameter waveform corresponds to the parameter type. The trend type of the real-time parameter waveform may include at least part of the trend type of the parameter trend curve.

[0080] Specifically, the monitoring and evaluation image presents a parameter trend curve corresponding to the trend type of all the real-time parameter waveforms, or the monitoring and evaluation image presents a parameter trend curve corresponding to the trend type of some of the real-time parameter waveforms; or the monitoring and evaluation image presents a parameter trend curve other than the trend type of some of the real-time parameter waveforms. For example, the trend type of the parameter trend curve includes MAP trend, rSO2-1 trend and rSO2-2 trend, while the trend type of the real-time parameter waveform does not include MAP trend, rSO2-1 trend and rSO2-2 trend, and the trend type of the parameter trend curve and the trend type of the real-time parameter waveform both include ICP trend, Fp1-T3 trend, Fp2-T4 trend, C3-01 trend, C4-02 trend and EtCO2 trend. In some embodiments, the trend type and the number of trends of the real-time parameter waveform correspond to the trend type and the number of trends of the parameter trend curve.

[0081] The preset first operation may also be, but is not limited to, single-click, double-click, right-click, long-press, or slide operations. In this embodiment, the preset first operation refers to an operation in which the first operation meets the preset parameter conditions, for example, a trigger operation in a preset area, or an operation in which the first operation parameter value corresponding to the first operation meets the preset parameter threshold, thereby avoiding the problem that the user performs other erroneous operations on the monitoring interface 301 and triggers changes in the display content of the monitoring interface 301, thereby enhancing the safety of the monitoring device 100.

[0082] In one embodiment, in response to a preset first operation on the monitoring interface, displaying the real-time monitoring image in a first display area of ​​the monitoring interface, and displaying a monitoring evaluation image in a second display area of ​​the monitoring interface, comprises:

[0083] In response to a preset first operation for the monitoring interface, the display size of the real-time monitoring image is reduced to display the reduced real-time monitoring image in the first display area, and the monitoring and evaluation image is displayed in the second display area, wherein the real-time monitoring image and the monitoring and evaluation image do not overlap.

[0084] Please also read Figures 2 to 4 , Figure 4 FIG. 1 is an interface diagram showing a pop-up window interface 340 on the monitoring interface 301 of the monitoring device 100 provided in the first embodiment of the present invention in response to a preset first operation. Figure 4 As shown, the monitoring interface 301 includes a first display area 32 and a second display area 34, and the first display area 32 and the second display area 34 are adjacent and do not overlap, that is, the monitoring and evaluation image does not overlap with the real-time monitoring image. Specifically, based on the response to the preset first operation for the monitoring interface 301, the task bar 35 is divided into a first display area 32 and a second display area 34. Among them, the first display area 32 is located in the left area of ​​the task bar 35, and the second display area 34 is located in the right area of ​​the task bar 35. In this embodiment, the second display area 34 displays a window interface 340. The monitoring and evaluation image is displayed in the window interface 340. In some other embodiments, the monitoring and evaluation image can also be directly displayed in the second display area 34.

[0085] In some embodiments, in response to a preset first operation on the monitoring interface, reducing the display size of the real-time monitoring image to display the reduced real-time monitoring image in the first display area, and displaying the monitoring evaluation image in the second display area, includes:

[0086] In response to a preset first operation on the monitoring interface, the display size of the real-time monitoring image is reduced to display the reduced real-time monitoring image in the first display area, and a window interface is correspondingly displayed in the second display area.

[0087] And the monitoring and evaluation image is displayed in the window interface.

[0088] Specifically, in this embodiment, in response to the preset first operation for the control icon 331, the display size of the real-time monitoring image is reduced to display the reduced real-time monitoring image in the first display area 32, and a window interface 340 is correspondingly displayed in the second display area 34, and the monitoring and evaluation image is displayed in the window interface 340.

[0089] In some embodiments, the response to the preset first operation for the monitoring interface may also be a response to the preset first operation for the real-time monitoring image, for example, a response to the preset first operation for the corresponding position of the real-time parameter waveform of the real-time monitoring image.

[0090] In another embodiment, in response to a preset first operation on the monitoring interface, displaying the real-time monitoring image in a first display area of ​​the monitoring interface, and displaying a monitoring evaluation image in a second display area of ​​the monitoring interface, comprises:

[0091] In response to a preset first operation for the monitoring interface, the real-time monitoring image is displayed in a first display area of ​​the monitoring interface, and a window interface is correspondingly displayed in the second display area, and the monitoring and evaluation image is displayed in the window interface, wherein the real-time monitoring image is at least partially covered by the monitoring and evaluation image.

[0092] Please also read Figures 2 to 5 , Figure 5 FIG. 1 is an interface diagram of a monitoring device 100 provided in a second embodiment of the present invention that responds to a preset first operation and pops up a window interface 340 on a monitoring interface 301. Figure 5 As shown, the monitoring interface 301 includes a first display area 32 and a second display area 34, and the first display area 32 overlaps with the second display area 34. Specifically, based on the response to the preset first operation for the monitoring interface 301, a window interface 340 pops up above the task bar 35, and the window interface 340 covers part of the real-time monitoring image. The first display area 32 covers the entire task bar 35, and the second display area 34 is located in the right area of ​​the task bar 35, that is, the second display area 34 overlaps at least partially with the first display area 32. In some embodiments, the monitoring and evaluation image partially overlaps with the real-time monitoring image, and the monitoring and evaluation image partially covers the real-time monitoring image. In some deformable embodiments, the second display area 34 completely overlaps with the first display area 32, that is, the monitoring and evaluation image completely overlaps with the real-time monitoring image, and the monitoring and evaluation image covers the top of the real-time monitoring image. In this embodiment, the monitoring and evaluation image covers the real-time parameter waveform in the real-time monitoring image, improving the visual effect of the user observing the monitoring and evaluation image. In this embodiment, the second display area 34 displays a window interface 340. The monitoring and evaluation image is displayed in the window interface 340. In some other embodiments, the monitoring and evaluation image may also be directly displayed in the second display area 34.

[0093] In some embodiments, the display method further includes:

[0094] When an adjustment operation on the window interface is detected, the display position and / or display size of the window interface is adjusted, and the display position and / or display size of the monitoring and evaluation image is adjusted, wherein the adjustment operation includes, but is not limited to, at least one of a move operation, a zoom-in operation, and a zoom-in operation.

[0095] The window interface 340 can move, reduce or enlarge the monitoring and evaluation image based on the adjustment operation input by the user. For example, the user is defined to operate the window interface 340 with a single finger to realize the moving operation, and the user is defined to operate the window interface 340 with two or more fingers to realize the enlarging operation and the reducing operation. The moving operation, the reducing operation and the enlarging operation can adopt the image adjustment operation of the prior art, and the present invention does not make specific limitations.

[0096] The display method further includes:

[0097] In response to a preset second operation for the monitoring interface, the real-time monitoring image is displayed on the monitoring interface, and the monitoring evaluation image is not displayed, wherein the real-time monitoring image covers the first display area and the second display area.

[0098] Among them, the preset second operation can also be, but not limited to, single-click, double-click, right-click, long press, or sliding operations. The preset second operation can be different from or the same as the preset second operation. For example, the preset first operation is clicking the control icon 331, and the second operation is clicking the close button 341 set on the window interface 340 or clicking the control icon 331. The preset second operation refers to an operation in which the second operation meets the preset parameter conditions, for example, a trigger operation in a preset area, or an operation in which the second operation parameter value corresponding to the second operation meets the preset parameter threshold, thereby avoiding the problem that the user performs other erroneous operations on the monitoring interface 301 and triggers changes in the display content of the monitoring interface 301, thereby enhancing the safety of the monitoring device 100.

[0099] like Figure 4 and Figure 5 As shown, the window interface 340 includes a close button 341. The display method further includes:

[0100] In response to a closing operation on the closing button, the display size of the real-time monitoring image is enlarged or the display size of the real-time monitoring image is kept unchanged, so that the real-time monitoring image covers the first display area and the second display area.

[0101] In response to the closing operation on the close button 341, the monitoring interface 301 resumes displaying the real-time monitoring image, i.e., displays it in full screen in the task bar 35, so that the real-time monitoring image covers the first display area 32 and the second display area 34. In this way, medical staff can more intuitively view the real-time changes of the monitoring data.

[0102] See also Figure 4 and Figure 5 The first display area 32 includes a first area 322 and a second area 324, and the second display area 34 includes a parameter trend curve area 342 adjacent to the first area 322. The display method further includes:

[0103] According to the monitoring data within a preset first display time length, the real-time parameter waveform is displayed in the first area, and the real-time parameter value is displayed in the second area;

[0104] The parameter trend curve is displayed in the parameter trend curve area according to the monitoring data within a preset second display time length, wherein the first display time length is shorter than the second display time length.

[0105] The preset first display time length and the preset second display time length can be user-defined or factory default settings of the monitoring device, for example, the preset first display time length is 20 minutes, 30 minutes, etc., and the preset second display time length is 2 hours, 3 hours, etc. In this embodiment, the first area 322 and the second area 324 are adjacently arranged, and the second display area 324 is located in the right area and the bottom area of ​​the first display area 322. In some embodiments, the first area 322 can also be arranged side by side with the second area 324, so as to avoid the phenomenon that the parameter trend curve and the real-time parameter waveform are connected together to cause visual confusion, and provide users with better parameter trend curve and real-time parameter waveform observation effects.

[0106] It can be understood that, since the second display time length is greater than the first display time length, medical staff can intuitively observe and understand the change trend of the patient's monitored parts from the parameter trend curve, which is helpful for medical staff to diagnose the patient's condition.

[0107] The parameter trend curve area includes at least one trend display area, and the display method further includes:

[0108] Determining a trend type corresponding to the parameter trend curve;

[0109] Parameter trend curves of the same trend type are displayed in the same trend display area, and parameter trend curves of different trend types are displayed in different trend display areas respectively.

[0110] like Figure 4 As shown, in this embodiment, the at least one trend display area 3421 includes four trend display areas. The four trend display areas respectively display cerebral blood flow related trends, cerebral blood oxygen related trends, EEG related trends and cerebrovascular regulation related trends. The cerebral blood flow related trends include MAP trends, CPP trends and ICP trends, etc. The cerebral blood oxygen related trends include rSO2-1 and rSO2-2 trends, etc., and the EEG related trends include Fp1-T3 trends, Fp2-T4 trends, C3-01 trends and C4-02 trends, etc. The cerebrovascular regulation related trends include EtCO2 trends, etc.

[0111] Optionally, the display method further includes: highlighting the closed area 3421 formed by the cerebral blood oxygen trend curve and the cerebral blood oxygen threshold baseline. The highlighting includes highlighting, flashing, changing color, adding prompts, changing transparency, and changing background color of the closed area 3421. It should be noted that the cerebral blood oxygen threshold baseline refers to a straight line that passes the cerebral blood oxygen lower limit threshold or the cerebral blood oxygen upper limit threshold and is parallel to the time axis corresponding to the cerebral blood oxygen trend curve. It should be noted that the trend type of the parameter trend curve can be distinguished according to, and the corresponding monitoring data is obtained by a sensor or a special instrument; or, it can also be divided according to the monitoring site, etc. The type and number of the parameter trend curve can be customized by the user, or the factory default setting of the monitoring device 100, and the present invention does not make specific limitations. For example, the parameter trend curve may only include the MAP trend and CPP trend in the cerebral blood flow related trend, or may not include the cerebral blood flow related trend. In some other embodiments, the window interface 340 also includes a setting item 3413, which controls the display of a property setting interface in response to a trigger operation on the setting item 3413, and can set the trend type and trend quantity of the parameter trend curve through the property setting interface.

[0112] The display method further includes:

[0113] A first title corresponding to the trend type is displayed in each of the trend display areas.

[0114] Among them, the first title displayed in the trend display area corresponding to the cerebral blood flow related trend is, for example, but not limited to "cerebral blood flow", "cerebral blood flow related trends", etc. The first title displayed in the trend display area corresponding to the cerebral blood oxygen related trend is, for example, but not limited to "cerebral blood oxygen", "brain oxygen", "cerebral blood oxygen related trends", etc. The first title displayed in the trend display area corresponding to the EEG related trend is, for example, but not limited to "EEG", "brain waves", "EEG related trends", etc. The first title displayed in the trend display area corresponding to the cerebrovascular regulation related trend is, for example, but not limited to "cerebrovascular regulation", "cerebrovascular reactivity", "cerebrovascular regulation related trends", etc.

[0115] In this embodiment, a time control 3415 is displayed in the second display area 34. The displaying of the parameter trend curve in the parameter trend curve area according to the monitoring data within the preset second display time length specifically includes:

[0116] When detecting that the time control receives a time selection instruction, determining a target display time length, and using the target display time length as the second display time length;

[0117] The at least one parameter trend curve is displayed in the parameter trend curve area according to the monitoring data within a preset second display time length.

[0118] The second display time length can be user-defined or set by factory default of the monitoring device 100, such as 2 hours, 1.5 hours, etc. In this embodiment, the time control 3415 can be displayed in the parameter trend curve area 342, or in an area outside the parameter trend curve area 342 in the second display area 34. In some other embodiments, the time control 3415 can also be displayed in the property setting interface.

[0119] The step of displaying the at least one parameter trend curve in the parameter trend curve area according to the monitoring data within the preset second display time length specifically includes:

[0120] The parameter trend curve is displayed in the parameter trend curve area according to the monitoring data within the second display time length before the current moment.

[0121] For example, assuming that the second display time length is 2 hours, the parameter trend curve displayed in the parameter trend curve area 342 is a compressed trend formed based on the monitoring data within 2 hours before the current moment. In this way, medical staff can quickly understand the changing trend of the current monitoring data based on the parameter trend curve to predict future measurement results.

[0122] The step of displaying the parameter trend curve in the parameter trend curve area according to the monitoring data within the target display time length before the current moment specifically includes:

[0123] A two-dimensional coordinate graph is constructed in the parameter trend curve area, wherein the horizontal axis of the two-dimensional coordinate graph is a time axis, the vertical axis of the two-dimensional coordinate graph is a parameter axis, the time axis represents the recording time corresponding to all monitoring points at each acquisition time within the target display time length, and the parameter axis represents the parameter values ​​corresponding to all monitoring points at each acquisition time within the target display time length;

[0124] The recording time and the parameter value are mapped into the two-dimensional coordinate graph to display the parameter trend curve in the two-dimensional coordinate graph, wherein the parameter trend curve is arranged along a direction parallel to the time axis.

[0125] In this embodiment, in the two-dimensional coordinate graph, all parameter trend curves can share the same time axis, different types of parameter trend curves correspond to different parameter axes, and the same type of parameter trend curves correspond to the same or different parameter axes. For example, the parameter axes corresponding to the MAP trend and the CPP trend are the same, and the parameter axis corresponding to the ICP trend is different from the parameter axes corresponding to the MAP trend and the CPP trend.

[0126] It should be noted that different parameter axes can be determined based on the data type of the parameter value corresponding to each parameter; or, they can also be distinguished based on whether they are obtained through sensors or special instruments, and so on.

[0127] In an embodiment of the present application, the parameter trend curve is arranged in a direction parallel to the time axis, so that it is convenient for users to compare different parameters, so that medical staff can observe and understand the relevant changes between the various parameters corresponding to the patient, so that medical staff can quickly and effectively evaluate or diagnose the patient's condition.

[0128] In some embodiments, the display method further includes:

[0129] When it is determined that the preset evaluation parameter value is the real-time parameter value, the virtual human body model displays the real-time status of the monitoring part with a graphical dynamic effect;

[0130] When it is determined that the preset evaluation parameter value is the historical parameter value, the virtual human body model displays the historical status of the monitored part in a graphical static effect.

[0131] Specifically, when the preset evaluation parameter values ​​are determined as the real-time parameter values ​​corresponding to each parameter, the virtual human model can graphically display the monitoring part to provide real-time feedback on the status of the patient's monitoring part, thereby facilitating medical staff to observe and predict the monitoring results. Among them, the dynamic effect can be, but is not limited to, color change, thickness change, highlighting, arrows and other indicator icons. For example, assuming that the MAP monitored by the patient at the current moment is 80 mmHg and the CPP is 70 mmHg, and the MAP monitored by the patient within the preset time before the current moment is 90 mmHg and the CPP is 80 mmHg, at this time, the blood vessels in the virtual human model will become thicker to remind the user that the pressure of the patient's blood flow on the blood vessel wall is increasing. Conversely, when the blood vessels in the virtual human model become thinner, it indicates that the pressure of the patient's blood flow on the blood vessel wall is decreasing. Among them, the thickness of the blood vessel and the pressure value or pressure change value can establish a corresponding relationship. The preset time may be user-defined or a factory default setting of the monitoring device 100. For example, the preset time may be a time point corresponding to the patient monitoring data input closest to the current time point, that is, the shortest time corresponding to the measurement signal collected by the sensor 10 or other special instrument of the monitoring device 100; or, it may also be a time point of a preset time length before the current time point, such as 1 minute, 3 minutes, 5 minutes, etc., wherein the preset time length is greater than the shortest time corresponding to the measurement signal collected by the sensor 10 or other special instrument of the monitoring device 100.

[0132] When the preset evaluation parameter value is determined to be the historical parameter value, the virtual human body model displays the historical status of the monitoring part in a graphical static effect. In this way, medical staff can select the historical monitoring point of interest to understand the virtual human body model corresponding to the historical monitoring point of interest. In this way, the historical status of the monitoring part can be understood based on the virtual human body model corresponding to the monitoring point of interest, so as to improve the efficiency of doctors' interpretation of the electroencephalogram.

[0133] Please refer again Figure 5 In some embodiments, the second display area 34 may only include the parameter trend curve area 342 and the image display area 344. Specifically, the second display area 34 also includes the image display area 344 adjacent to the parameter trend curve area 342, and the display method further includes:

[0134] The virtual human body model is displayed in the image display area, and the preset evaluation parameter value is displayed in an area outside the virtual human body model.

[0135] In this embodiment, the image display area 344 is located on a side of the parameter trend curve area 342 away from the first area 422 , and the parameter trend curve area 342 and the image display area 344 are arranged side by side.

[0136] like Figure 4 As shown, in this embodiment, the second display area 34 also includes an evaluation parameter value area 346 adjacent to the parameter trend curve area 342 and the image display area 344, and the display method further includes:

[0137] Displaying the virtual human body model in the image display area;

[0138] The preset evaluation parameter value is displayed in the evaluation parameter value area, wherein the preset evaluation parameter value is a preset real-time parameter value or a preset historical parameter value.

[0139] Specifically, in this embodiment, the image display area 344 and the evaluation parameter value area 346 are arranged side by side, and the image display area 344 and the evaluation parameter value area 346 are arranged adjacent to the parameter trend curve area 242. In some embodiments, the image display area 344 and the evaluation parameter value area 346 can also be arranged side by side or overlapped. The invention does not specifically limit the arrangement and setting of the parameter trend curve area 342, the image display area 344, and the evaluation parameter value area 346.

[0140] The parameter type corresponding to the preset evaluation parameter value can be user-defined or factory default setting of the monitoring device. In this embodiment, the parameter type corresponding to the preset evaluation parameter value includes at least the parameter type corresponding to the parameter trend curve, that is, the parameter type corresponding to the preset evaluation parameter value may include parameter values ​​corresponding to other parameters. For example, the parameter types corresponding to the cerebral blood oxygen related trend are rSO2-1 and rSO2-2, and the cerebral blood oxygen related parameter values ​​include, but are not limited to rSO2-1, rSO2-2, AUC, etc. Among them, AUC (Area Under Curve) is defined as the area under the ROC curve and the coordinate axis (time axis). In this embodiment, AUC is the area of ​​the closed area 3421 formed by the cerebral blood oxygen trend curve and the cerebral blood oxygen threshold baseline. Specifically, the area value obtained by calculus the area below the cerebral blood oxygen trend curve (i.e., the area of ​​the closed area 3421). The parameter type corresponding to the preset evaluation parameter value is at least partially the same as the parameter corresponding to the real-time parameter value.

[0141] For example, in some embodiments, the parameter type corresponding to the preset evaluation parameter value is the same as the parameter corresponding to the real-time parameter value. The parameter type corresponding to the trend related to cerebrovascular regulation is an EtCO2 trend. The parameter corresponding to the evaluation parameter value related to cerebrovascular regulation includes EtCO2, and the parameter corresponding to the real-time parameter value related to cerebrovascular regulation also includes EtCO2.

[0142] For another example, the parameter type corresponding to the preset evaluation parameter value is different from the parameter corresponding to the real-time parameter value. Each EEG signal includes 10 values, and the parameters corresponding to the preset evaluation parameter value may be 2, namely EEG1-SR and EEG1-SEF, and the parameters corresponding to the real-time parameter value may be 10, namely EEG1-SR, EEG1-SEF, EEG1-MF, EEG1-PPF, EEG1-TP, EEG1-EMG, etc. In some embodiments, the parameters corresponding to the real-time parameter value may also be 8, that is, EEG1-SR and EEG1-SEF may not be included.

[0143] In some embodiments, displaying the virtual human body model in the image display area specifically includes:

[0144] The virtual human body model is displayed in the image display area, and specific evaluation parameter values ​​are displayed in an area outside the virtual human body model, wherein the preset evaluation parameter values ​​at least include the specific evaluation parameter values.

[0145] Wherein, the specific evaluation parameter value is a partial parameter value in the preset evaluation parameter value. The specific evaluation parameter value refers to the monitoring data used to evaluate the state of the patient's monitoring part. In this embodiment, the specific evaluation parameter value includes, but is not limited to, ICP, MAP, CPP, rSO2-1, rSO2-2, and EtCo2. For example, medical staff can infer the brain oxygen supply / oxygen consumption balance based on the change in rSO2 value and make manual intervention to reduce intraoperative or postoperative physiological system complications.

[0146] The specific evaluation parameter value is adjacent to a display position corresponding to the monitoring part, or the specific evaluation parameter value is connected to the monitoring part via a guide line.

[0147] The display method further includes:

[0148] When it is determined that the specific evaluation parameter value meets the preset conditions, the specific evaluation parameter value is displayed in a first preset display style; when the specific evaluation parameter value does not meet the preset conditions, the specific evaluation parameter value is displayed in a second preset display style, wherein the first preset display style is different from the second preset display style, and the first preset display style and the second preset display style include at least one of the color, font, font size, font type, font effect, font background color or transparency of the specific evaluation parameter value.

[0149] The display method further includes: determining that the specific evaluation parameter value does not meet the preset condition.

[0150] The determining that the specific evaluation parameter value does not meet the preset condition specifically includes:

[0151] When the value of the specific evaluation parameter exceeds a preset normal threshold range, determining that the value of the specific evaluation parameter does not meet the preset condition; or,

[0152] When the specific evaluation parameter value shows a downward trend or an upward trend compared with the parameter value of the previous historical monitoring point, it is determined that the specific evaluation parameter value does not meet the preset condition; or,

[0153] When the change range of the specific evaluation parameter value compared to the parameter value of the previous historical monitoring point meets the preset range, it is determined that the specific evaluation parameter value does not meet the preset condition.

[0154] like Figure 4 As shown, for example, when the value corresponding to rSO2-2 in the specific evaluation parameter value is 60, the rSO2-2 value has not changed compared with the parameter value of the previous historical monitoring point, and the specific evaluation parameter value is displayed in the first preset display style, that is, rSO2-2 is displayed normally and no background color is set. In some other embodiments, if the value corresponding to rSO2-2 in the specific evaluation parameter value is 50, the rSO2-2 value shows a downward trend compared with the parameter value of the previous historical monitoring point, then the specific evaluation parameter value can be displayed in the second preset display style, that is, rSO2-2 is displayed in bold and the background color is set. In this way, medical staff can determine whether the specific evaluation parameter value exceeds the normal threshold range based on the display style of the specific evaluation parameter value, so that medical staff can diagnose and infer the status of the patient's monitoring part.

[0155] The display method further includes:

[0156] When it is determined that the specific evaluation parameter value satisfies the preset condition, a target monitoring part associated with the specific evaluation parameter value that satisfies the preset condition is determined from the virtual human body model, and the target monitoring part is highlighted.

[0157] Among them, in this embodiment, the highlighting includes highlighting, flashing, changing color, adding prompts, changing transparency, changing background color, changing fonts, and enlarging the size of the target monitoring part. The target monitoring part refers to the position corresponding to the monitoring part where the sensor 10 is placed on the patient. For example, the rSO2 sensor is placed on the patient's forehead. Therefore, when the monitored rSO2 value decreases, it indicates that there is a decrease in blood oxygen saturation at the position where the rSO2 sensor is placed on the forehead. According to the rSO2 value, it can indirectly represent a decrease in blood oxygen content in the brain. In some other embodiments, the target monitoring part can also refer to the monitoring part characterized by the target specific evaluation parameter.

[0158] like Figure 5 and Figure 6 As shown, when the bispectral index-left (BIS-L), rSO2-R, ICP, CPP, MAP, and EEG-1 of the left brain are all abnormal, for example, the BIS-L value shows an upward trend, the rSO2-R value shows a downward trend, the ICP shows an upward trend, the CPP and MAP both show a downward trend, and the EEG-1 value exceeds the normal value range, the position corresponding to the patient's forehead in the virtual human body model is highlighted and the BIS mark and rSO2 mark are added, the blood vessels in the virtual human body model are bolded, and the position corresponding to the patient's back brain in the virtual human body model is highlighted and the EEG-1 mark is added.

[0159] For example, when the EEG value is abnormal, such as abnormal EEG impedance, the EEG parameter value changes greatly, and the EEG parameter trend is also chaotic, which indicates that the EEG sensor connection is abnormal or unstable. In this case, medical staff need to readjust the fixed connection of the EEG sensor to restore the EEG parameter value and EEG parameter trend to normal. In this way, by highlighting the target monitoring part, medical staff can quickly and intuitively understand the status of the patient's monitoring part from the virtual human model to perform corresponding manual intervention, thereby improving the work efficiency of medical staff.

[0160] The virtual human body model can be rotated within a preset angle range to display the target monitoring part. Figure 5 and Figure 6 , Figure 6 The figure shows the interface diagram of the monitoring interface displayed by the monitoring device provided by the embodiment of the present invention in response to the rotation operation of the virtual human body model in the monitoring interface. Figure 5The displayed virtual human model shows the monitoring part corresponding to the forebrain. The user can rotate the virtual human model in the monitoring interface 301 so that the monitoring device 100 can display the virtual human model at different angles and orientations, thereby realizing monitoring and management of different monitoring parts. For example, Figure 6 The displayed virtual human body model shows the monitoring part corresponding to the back of the brain. Figure 6 As shown, when the monitored EEG-1 data meets the preset conditions, that is, the EEG-1 signal is abnormal, the monitoring part is graphically highlighted on the corresponding posterior brain part of the virtual human body model, so that medical staff can quickly and intuitively understand the status of the patient's monitoring part and / or the abnormal placement status of the EEG sensor from the virtual human body model, so as to perform corresponding manual intervention, thereby improving the work efficiency of medical staff.

[0161] In this embodiment, the preset angle range is 0 to 180 degrees in the horizontal direction and / or the vertical direction. It is understandable that since brain protection monitoring is mainly for the left and right sides of the patient's forehead, the back of the forehead, the top of the brain and the occipital lobe, the state of the patient's target monitoring part is sufficient to observe the virtual human body model during its 180-degree rotation, so that the user can quickly rotate to the target monitoring part. In some embodiments, the preset angle range can also be 0 to 360 degrees in the horizontal direction and / or the vertical direction, so that the user can observe the state of the patient's target monitoring part in all directions.

[0162] The display method further includes:

[0163] In response to a third operation on the virtual human body model, the virtual human body model is rotated to display different monitoring parts in the virtual human body model.

[0164] The third operation may be, but is not limited to, at least one of single click, long press, double click, slide, toggle, preset slide track, and multi-touch. For example, when the virtual human model is touched by one finger or two fingers and slid to one side, the virtual human model rotates along the first direction; and when the boundary of the virtual human model is touched by one finger or two fingers and slid to the other side, the virtual human model rotates along the second direction, wherein the first direction is opposite to the second direction, the first direction may be clockwise, and the second direction may be counterclockwise; or, the first direction may be counterclockwise, and the second direction may be clockwise, so that the user is provided with an opportunity to rotate the virtual human model, thereby improving the user's interactive experience.

[0165] In some embodiments, the responding to the third operation on the virtual human model specifically includes: responding to the third operation on a preset position of the virtual human model, wherein the preset position is, for example, the center position of the virtual human model, the edge position of the virtual human model, and the like.

[0166] In some embodiments, in response to a third operation on the virtual human body model, rotating the virtual human body model to display different monitoring parts in the virtual human body model specifically includes:

[0167] In response to a third operation on the virtual human body model, controlling display of a rotation control icon;

[0168] In response to a fourth operation on the rotation control icon, the virtual human body model is rotated to display different monitoring parts in the virtual human body model.

[0169] Specifically, in response to the fourth operation on the rotation control icon, rotating the virtual human body model to display different monitoring parts in the virtual human body model specifically includes:

[0170] In response to a fourth operation on the rotation control icon, obtaining a fourth operation parameter corresponding to the fourth operation;

[0171] Determining a rotation angle for the virtual human body model according to the fourth operating parameter;

[0172] The virtual human body model is rotated according to the rotation angle to display different monitoring parts in the virtual human body model.

[0173] The fourth operation may be, but is not limited to, at least one of click, slide, flick, and gesture operation.

[0174] In some other embodiments, in response to a third operation on the virtual human body model, the virtual human body model is rotated to display different monitoring parts in the virtual human body model, specifically including:

[0175] In response to a third operation on the virtual human body model, controlling display of an input box for inputting a rotation angle;

[0176] In response to an input operation on the input box, the virtual human body model is rotated according to an input value corresponding to the input operation to display different monitoring parts in the virtual human body model.

[0177] The display method further includes:

[0178] When the preset evaluation parameter value is greater than a first threshold, a first mark is displayed behind the preset evaluation parameter value, and the first mark is used to indicate that the preset evaluation parameter value is higher than a normal value;

[0179] When the preset evaluation parameter value is less than a second threshold value, a second mark is displayed behind the preset evaluation parameter value, the first mark is used to indicate that the preset evaluation parameter value is lower than the normal value, wherein the first mark is different from the second mark;

[0180] When the preset evaluation parameter value is less than or equal to the first threshold value and greater than or equal to the second threshold value, a third identifier is displayed behind the preset evaluation parameter value or no identifier is displayed, and the third identifier is used to indicate that the preset evaluation parameter value is equal to the normal value, wherein the third identifier is different from the first identifier and the second identifier.

[0181] In this embodiment, when the preset evaluation parameter value is less than or equal to the first threshold value and greater than or equal to the second threshold value, no mark is displayed behind the preset evaluation parameter value. The first mark is an upward arrow, and the second mark is a downward arrow. In some embodiments, the third mark can be a horizontal arrow. In this way, the user can quickly observe the abnormal parameter value, so as to facilitate the doctor to diagnose the patient's condition.

[0182] In some embodiments, the area outside the parameter trend curve area 342 includes at least one numerical display area 3461, and the at least one numerical display area corresponds to the at least one trend display area; the display method further includes:

[0183] Determining the parameter type corresponding to the parameter trend curve;

[0184] Evaluation parameter values ​​of the same parameter type are displayed in the same value display area, and evaluation parameter values ​​of different parameter types are displayed in different value display areas.

[0185] See again Figure 4In this embodiment, the at least one numerical display area 3461 includes four numerical display areas. The four numerical display areas respectively display cerebral blood flow related values, cerebral blood oxygen related values, EEG related values ​​and cerebrovascular regulation related values. The cerebral blood flow related values ​​include values ​​such as MAP, CPP and ICP. The cerebral blood oxygen related values ​​include values ​​such as rSO2-1 and rSO2-2, and the EEG related values ​​include values ​​such as SEF, SR, MF, PPT, TP, EMG, etc. The cerebrovascular regulation related values ​​include values ​​such as EtCO2. It should be noted that the numerical type of the trend parameter value can be distinguished according to the corresponding monitoring data obtained by sensors or special instruments; or, it can also be divided according to the monitoring site, etc. The type and number of the trend parameter values ​​can be customized by the user, or the factory default settings of the monitoring device 100, and the present invention does not make specific restrictions. For example, the preset evaluation parameter values ​​may only include MAP and CPP in the cerebral blood flow related values, or may not include the cerebral blood flow related values. In some other embodiments, the window interface 340 also includes a setting item 3413, which controls the display of a property setting interface in response to a trigger operation on the setting item 3413, and can set parameters such as the numerical type of the trend parameter value through the property setting interface.

[0186] The display method further includes:

[0187] A second title corresponding to the parameter type is displayed in each of the numerical display areas, wherein the first title is the same as the second title.

[0188] Among them, the second title displayed in the numerical display area corresponding to the cerebral blood flow related value is, for example, but not limited to "cerebral blood flow", "cerebral blood flow related value", etc. The second title displayed in the numerical display area corresponding to the cerebral blood oxygen related value is, for example, but not limited to "cerebral blood oxygen", "brain oxygen", "cerebral blood oxygen related value", etc. The second title displayed in the numerical display area corresponding to the EEG related value is, for example, but not limited to "EEG", "brain waves", "EEG related value", etc. The second title displayed in the numerical display area corresponding to the cerebrovascular regulation related value is, for example, but not limited to "cerebrovascular regulation", "cerebrovascular reactivity", "cerebrovascular regulation related value", etc. In some embodiments, the first title and the second title may also be different.

[0189] Optionally, the parameter type corresponding to the evaluation parameter value displayed in the at least one value display area 3461 and the trend type corresponding to the parameter trend displayed in the at least one trend display area 3421 are arranged in the same order. In this way, the first title and the second title are arranged from top to bottom according to the user's attention, which conforms to the user's usual observation habits and is convenient for the user to view, which also greatly saves the time of medical staff.

[0190] In some embodiments, the display method further includes:

[0191] According to the trend type corresponding to the parameter trend curve, a virtual human body model associated with the trend type is displayed; wherein the virtual human body model includes at least one of an organ image, a human body system image and a human body full body image, and the organ image includes at least one of a human head image, a human heart image, and a human lung image; the human body system image includes at least one of a nervous system image, a circulatory system image, a respiratory system image, a digestive system image, a urinary system image, a reproductive system image, an endocrine system image, and a locomotor system image.

[0192] For example, tetralogy of Fallot (TOF) is a common congenital heart malformation. Specifically, TOF is a disease in which abnormalities of the heart and lungs occur simultaneously due to abnormalities in the cardiac and vascular structures. For patients like this, the monitoring device 100 can monitor the patient's heart and lungs in a directed manner, that is, the "heart protection" interface and the "lung protection" interface can be displayed simultaneously on the monitoring interface 301 of the monitoring device 100, so that medical staff can pay attention to changes in the heart and lungs together, that is, medical staff can understand the heart-related monitoring data and the lung-related monitoring data at the same time, thereby facilitating the comprehensive diagnosis and treatment of patients by medical staff and maximizing the time for treatment.

[0193] Specifically, in some embodiments, the monitoring interface 301 of the monitoring device 100 can simultaneously display multiple window interfaces for displaying different monitoring and evaluation images respectively. For example, the monitoring interface 301 of the monitoring device 100 can have a heart protection window interface and a lung protection window interface, wherein the heart protection window interface displays heart-related monitoring and evaluation data, and the lung protection window interface displays lung-related monitoring and evaluation data. In some other embodiments, the monitoring interface 301 of the monitoring device 100 only displays one window interface, and different monitoring and evaluation images are displayed in the window interface, for example, heart-related monitoring and evaluation data and lung-related monitoring and evaluation data are both displayed in the same window interface.

[0194] In this embodiment, the virtual human body model is the human head image; the trend types corresponding to the parameter trend curve include cerebral blood flow related parameter trend curve, EEG related parameter trend curve, cerebral oxygen saturation related parameter trend curve and cerebrovascular reactivity related parameter trend curve; the parameter types corresponding to the parameter trend curve include cerebral blood flow related parameters, EEG related parameters, cerebral oxygen saturation related parameters and cerebrovascular reactivity related parameters.

[0195] In some embodiments, the second display area 34 displays a setting item 3413, and the display method further includes:

[0196] receiving an editing request for the setting item, and generating editing operation information corresponding to the editing request;

[0197] According to the editing operation information, the content of the parameter trend curve, the virtual human body model and / or the preset evaluation parameter value is updated.

[0198] The display method further includes:

[0199] In response to a trigger operation on the setting item 3413, a property setting interface is controlled to be displayed, wherein the property setting interface displays a parameter trend curve option, a virtual human body model option, and an evaluation parameter option;

[0200] receiving an editing request for the parameter trend curve option, the virtual human body model option and / or the evaluation parameter option, and generating editing operation information corresponding to the editing request;

[0201] According to the editing operation information, the content of the parameter trend curve, the virtual human body model and / or the preset evaluation parameter value is updated.

[0202] Among them, the property setting interface displays parameter trend curve options, virtual human body model options and evaluation parameter options. In this way, the user can select the parameter trend curve, virtual human body model and evaluation parameter categories corresponding to the interested parameters, so as to improve the efficiency of interpreting brain protection related monitoring data, and make the information content displayed on the monitoring interface 301 flexible to adjust, thereby improving the user's interactive experience, facilitating user viewing, and greatly saving the time of medical staff in diagnosing the disease.

[0203] The embodiment of the present invention provides a method for displaying monitoring data, based on a response to a preset first operation for the monitoring interface, the real-time monitoring image is displayed in the first display area of ​​the monitoring interface, and the monitoring evaluation image is displayed in the second display area of ​​the monitoring interface, so that the monitoring interface can display the real-time monitored monitoring data and the change trend of part or all of the monitoring data of interest to medical staff on the same screen, and can present the presentation of the relevant changes between the preset evaluation parameter values ​​corresponding to a certain monitoring point, so that medical staff can quickly browse the overall situation of the patient's monitoring data, and the browsing operation is simple and time-consuming, so that changes in the condition can be discovered more promptly, reducing the risk of delayed condition. In addition, according to the preset evaluation parameter values, the monitoring site is graphically displayed on the monitoring interface of the monitoring device, so that medical staff can quickly and effectively evaluate or diagnose the patient's condition.

[0204] See also Figure 7 , is a flow chart of a monitoring data review method provided in one embodiment of the present application. Figure 7 As shown, the monitoring data review method is applied to the medical central station system 1000. Specifically, the monitoring data review method can be applied to the monitoring device 100 alone, can be applied to the third-party device 300 alone, and can be applied to the monitoring device 100 and the third-party device 300 at the same time. In this embodiment, the monitoring data review method is applied to the monitoring device 100 as an example for description. The monitoring device 100 displays a monitoring interface, and the monitoring data display method includes the following steps.

[0205] Step S701, displaying a monitoring interface.

[0206] For details, please refer to Figure 2 The method step S201 in the embodiment will not be described in detail here.

[0207] Step S703, acquiring monitoring data, wherein the monitoring data includes parameter values ​​of multiple parameters, and the parameter values ​​of the multiple parameters include real-time parameter values ​​and historical parameter values.

[0208] For details, please refer to Figure 2 The method step S203 in the embodiment will not be described in detail here.

[0209] Step S705, displaying a real-time monitoring image and a monitoring evaluation image on the monitoring interface according to the monitoring data, wherein the real-time monitoring image is used to present the real-time parameter value and / or the real-time parameter waveform, and the monitoring evaluation image is used to present the parameter trend curve of the multiple parameters and a virtual human body model, and optionally also used to present the preset evaluation parameter values ​​of the multiple parameters; the virtual human body model is used to graphically display the monitoring parts according to the parameter values ​​or parameter trend curves of the multiple parameters.

[0210] For details, please refer to Figure 2 The method step S205 in the embodiment will not be described in detail here.

[0211] Step S707, in response to a review operation on any target monitoring point on the parameter trend curve, determining a target parameter value corresponding to the target monitoring point.

[0212] In some embodiments, a trend graph control 3417 is displayed in the parameter trend curve area 342, and the response to the review operation of the target monitoring point on the parameter trend curve to determine the target parameter value corresponding to the target monitoring point specifically includes:

[0213] In response to a review operation on a target monitoring point on the parameter trend curve, displaying the trend graph control at the position of the target monitoring point;

[0214] Obtaining the selected time corresponding to the trend chart control on the two-dimensional coordinate chart;

[0215] According to the selected time, a target parameter value corresponding to the parameter trend curve at the selected time is determined.

[0216] The trend chart control 3417 is located in the two-dimensional coordinate graph. The trend chart control 3417 includes, but is not limited to, at least one of an active cursor and an active marking line. In this embodiment, the trend chart control 3417 is the active marking line, and the active marking line is perpendicular to the time axis. The review operation is, for example, a tap operation, a long press operation, a sliding operation, etc.

[0217] In some embodiments, the review method further comprises:

[0218] In response to a review operation on any historical monitoring point on the parameter trend curve, pop up and display the trend graph control;

[0219] In response to a movement operation on the trend graph control, the trend graph control is moved to a position corresponding to a target monitoring point on the parameter trend curve;

[0220] According to the current position of the trend chart control, obtaining the selected time corresponding to the trend chart control on the two-dimensional coordinate graph;

[0221] According to the selected time, a target parameter value corresponding to the parameter trend curve at the selected time is determined.

[0222] In this way, after calling up the trend chart control 3417, the user can continue to operate the trend chart control 3417 to fine-tune the trend chart control 3417 to move it to the position corresponding to the target monitoring point on the parameter trend curve, so that medical staff can flexibly control the trend chart control 3417, and can review multiple sets of monitoring data corresponding to any target monitoring point on the parameter trend curve. The browsing operation is simple and less time-consuming, so that changes in the disease can be discovered more promptly and the risk of delayed treatment can be reduced.

[0223] In some other embodiments, the response to the review operation of the target monitoring point on the parameter trend curve to determine the target parameter value corresponding to the target monitoring point specifically includes:

[0224] Move the trend graph control from a first position of the two-dimensional coordinate graph to a second position of the two-dimensional coordinate graph, wherein the first position of the two-dimensional coordinate graph is represented as a position corresponding to the latest monitoring point within the preset second display time length, and the second position of the two-dimensional coordinate graph is a position corresponding to the target monitoring point;

[0225] Obtaining the selected time corresponding to the trend chart control on the two-dimensional coordinate chart;

[0226] According to the selected time, a target parameter value corresponding to the parameter trend curve at the selected time is determined.

[0227] In this embodiment, before responding to the review operation for the target monitoring point on the parameter trend curve, the trend graph control 3417 is located at the rightmost side of the two-dimensional coordinate graph, that is, at the position corresponding to the latest monitoring point within the preset second display time length. At this time, the selected time corresponding to the trend graph control 3417 on the two-dimensional coordinate graph is the time point corresponding to the real-time parameter value. As time goes by, the parameter trend curve moves from right to left so that the parameter trend curve displays the trend corresponding to the preset second display time length in the parameter trend curve area 342. For example, when the preset second display time length is 2 hours, the parameter trend curve 2 hours before the current moment is displayed in the parameter trend curve area 342.

[0228] In some embodiments, before moving the trend graph control from the first position of the two-dimensional coordinate graph to the second position of the two-dimensional coordinate graph, the review method further includes:

[0229] In response to a preset operation on the two-dimensional coordinate graph, the trend graph control is displayed at a first position of the two-dimensional coordinate graph.

[0230] The preset operation is, for example, but not limited to, at least one of single-click, long-press, double-click, slide, toggle, preset sliding track, and multi-touch. The preset operation refers to an operation input in a preset area of ​​the two-dimensional coordinate graph; or an operation whose operation parameters meet preset rules, such as an operation of long-pressing for a preset time, an operation of pressing a pressure greater than a preset pressure threshold, etc. In this embodiment, before the response to the review operation of the target monitoring point on the parameter trend curve determines the target parameter value corresponding to the target monitoring point, the trend graph control 3417 is hidden and not displayed in the two-dimensional coordinate graph, so that the display content of the monitoring interface is more concise.

[0231] In some embodiments, the trend chart control 3417 can always be displayed in the two-dimensional coordinate graph, that is, the method step of displaying the trend chart control at the first position of the two-dimensional coordinate graph in response to a preset operation on the two-dimensional coordinate graph can be omitted.

[0232] Please also read Figure 8 and Fig. 9 , Figure 8 FIG. 1 is an interface diagram of a monitoring interface displayed by a monitoring device according to an embodiment of the present invention in response to a review operation on any target monitoring point on a parameter trend curve. Fig. 9 Shown is Figure 8 This is an enlarged schematic diagram of the window interface in the monitoring interface. Figure 8 and Fig. 9 As shown, the trend chart control 3417 moves from the first position to the second position, that is, the trend chart control 3417 moves to the position corresponding to the target monitoring point on the parameter trend curve. At this time, the rSO2-2 value is 50. At this time, the rSO2-2 value shows a downward trend compared with the parameter value of the previous historical monitoring point, then rSO2-2 is displayed in bold and the background color is set, and the position of the monitoring part corresponding to the patient's forehead in the virtual human body model is highlighted and a guide line is added between the monitoring part and the evaluation parameter rSO2. In this way, by highlighting the corresponding monitoring part of the abnormal parameter value according to the preset rules, the medical staff can quickly determine whether the specific evaluation parameter value is abnormal and whether the sensor placement position or connection is abnormal based on the display style of the specific evaluation parameter value and / or the highlighted mark of the monitoring part, so that the medical staff can perform manual intervention and facilitate diagnosis and speculation of the status of the patient's monitoring part.

[0233] In this embodiment, the review method further includes:

[0234] When it is detected that the trend graph control is located at the first position, the latest parameter value corresponding to the latest monitoring point on the parameter trend curve is displayed in an area outside the parameter trend curve area.

[0235] When it is detected that the trend graph control is located at the first position, the latest parameter value corresponding to the latest monitoring point on the parameter trend curve is displayed in the area outside the parameter trend curve area, that is, the evaluation parameter value displayed in the area outside the parameter trend curve area is the latest parameter value. In some embodiments, the latest parameter value can be a real-time parameter value. In this way, medical staff can monitor the status of the patient's monitoring part in real time, so that medical staff can quickly and effectively evaluate or diagnose the patient's condition.

[0236] In some embodiments, the review method further comprises:

[0237] When it is detected that the trend graph control moves to a third position of the two-dimensional coordinate graph, a prompt message is output, wherein the third position is a position corresponding to the earliest monitoring point within the preset second display time length; or

[0238] When it is detected that the trend graph control moves to the third position, output the historical parameter trend curve outside the preset second display time length, and cover part or all of the current parameter trend curve within the preset second display time length; or

[0239] When it is detected that the trend graph control moves to the third position, the trend graph control is controlled to resume display at the first position.

[0240] It is understandable that when the trend chart control 3417 moves to the leftmost side of the two-dimensional coordinate graph, it indicates that the trend chart control 3417 moves to the third position, that is, the trend chart control 3417 has moved to the position corresponding to the earliest monitoring point within the preset second display time length. In one embodiment, when the monitoring device 100 detects that the trend chart control 3417 moves to the third position, it controls the output of prompt information. For example, the prompt information can be used to remind the user to reset the time length of the preset second display time length in order to view more compressed trend data. The prompt information is, for example, but not limited to, sound, light signal, text information, graphic information or vibration. In this way, effective prompts can be given in various scenarios to improve the user experience.

[0241] In another embodiment, when the monitoring device 100 detects that the trend graph control 3417 moves to the third position, it controls the output of the historical parameter trend curve outside the preset second display time length, and covers part or all of the current parameter trend curve within the preset second display time length. In this way, the user can directly view the historical parameter trend curve outside the current parameter trend curve within the preset second display time length, which is simple to operate and improves the efficiency of medical staff in interpreting the current parameter trend curve and the historical parameter trend curve.

[0242] In another embodiment, when the monitoring device 100 detects that the trend graph control 3417 has moved to the third position, it controls the trend graph control to be restored to the first position. In this way, it is convenient for the user to perform the next review operation for any target monitoring point on the parameter trend curve, and avoids the jamming phenomenon of the monitoring interface 301 caused by the trend graph control 3417 being in the third position for a long time, thereby improving the user experience.

[0243] Step S709: updating and displaying the virtual human body model and the optional preset evaluation parameter value according to the target parameter value.

[0244] The updating and displaying of the virtual human body model and the optional preset evaluation parameter value according to the target parameter value specifically includes:

[0245] According to the target parameter value, graphically displaying the target monitoring part associated with the target parameter value on the virtual human body model;

[0246] Optionally, the target parameter value is used as the preset evaluation parameter value, and the preset evaluation parameter value is displayed in an area outside the parameter trend curve area.

[0247] The second area 324 of the monitoring interface 301 displays the real-time parameter values ​​corresponding to each parameter, for example, the value of the real-time parameter ICP is 8.5 mmHg, the value of the real-time parameter CPP is 84 mmHg, the values ​​of the real-time parameters rSO2-1 and rSO2-2 are both 80 mmHg, and the value of the real-time parameter EtCO2 is 30 rpm. The area outside the parameter trend curve area 342 displays the target parameter values ​​corresponding to the target parameters, for example, the value of the target parameter ICP is 10 mmHg, the value of the target parameter CPP is 70 mmHg, the value of the target parameter MAP is 70 mmHg, the values ​​of the target parameters rSO2-1 and rSO2-2 are 60 mmHg and 50 mmHg respectively, and the value of the target parameter EtCO2 is 25 rpm.

[0248] Since the value of the target parameter rSO2-2 shows a downward trend compared to the parameter value of the previous historical monitoring point, it indicates that the value of the target parameter rSO2-2 meets the preset condition. At this time, the position of the monitoring part corresponding to the patient's forehead in the virtual human model is highlighted and a guide line is added between the monitoring part and the evaluation parameter rSO2, and the value of the target parameter rSO2-2 is displayed according to the second preset display style, that is, rSO2-2 is displayed in bold and the background color is set. In this way, medical staff can quickly determine whether the specific evaluation parameter value is abnormal and whether the sensor placement position or connection is abnormal based on the display style of the specific evaluation parameter value and / or the highlighted display mark of the monitoring part, so that medical staff can perform manual intervention and facilitate diagnosis and speculation of the status of the patient's monitoring part.

[0249] The embodiment of the present invention provides a monitoring data review method, which is applied to the medical central station system or the monitoring device, and the medical central station system or the monitoring device displays a monitoring interface. The review method includes the following steps: acquiring the monitoring data monitored within a preset time period, wherein the monitoring data includes parameter values ​​of multiple parameters, and the parameter values ​​of the multiple parameters include real-time parameter values ​​and historical parameter values; displaying a real-time monitoring image and a monitoring evaluation image on the monitoring interface of the monitoring device according to the monitoring data, wherein the real-time monitoring image is used to present the real-time parameter values ​​and real-time parameter waveforms, and the monitoring evaluation image is used to present the parameter trend curves of the multiple parameters, a virtual human model and preset evaluation parameter values; the display time length of the parameter trend curve is greater than the display time length of the real-time parameter waveform; the virtual human model is used to graphically display the monitoring part according to the preset evaluation parameter value; the preset evaluation parameter value is the real-time parameter value; or, it is the historical parameter value; in response to the review operation for any target monitoring point on the parameter trend curve, determining the target parameter value corresponding to the target monitoring point; according to the target parameter value, updating and displaying the virtual human model and the optional preset evaluation parameter value.

[0250] In this way, based on the simultaneous display of real-time monitoring images and monitoring evaluation images on the monitoring interface of the monitoring device, medical staff can quickly browse historical monitoring data, and combine real-time monitoring data to diagnose and infer the patient's condition. Furthermore, the user can review multiple sets of monitoring data corresponding to any target monitoring point on the parameter trend curve. The browsing operation is simple and less time-consuming, so that changes in the condition can be discovered more promptly and the risk of delayed treatment can be reduced. In addition, on the monitoring interface of the monitoring device, the monitoring site and the optional preset evaluation parameter values ​​can be updated and displayed graphically based on the reviewed historical monitoring data to achieve fixed-point observation and management of the monitoring site, and the relevant changes between the monitoring data corresponding to any monitoring point can be presented in a centralized manner, thereby improving the efficiency of medical staff in interpreting the relevant monitoring data.

[0251] An embodiment of the present invention further provides a computer storage medium, wherein the computer storage medium may store a program, and when the program is executed, the program includes part or all of the steps of any one of the monitoring data display methods and monitoring data review methods recorded in the above method embodiments.

[0252] In the above embodiments, the description of each embodiment has its own emphasis. For parts that are not described in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.

[0253] It should be noted that, for the above-mentioned method embodiments, for the sake of simplicity, they are all described as a series of action combinations, but those skilled in the art should know that the present invention is not limited by the order of the actions described, because according to the present invention, some steps may be able to be performed in other orders or simultaneously. Secondly, those skilled in the art should also know that the embodiments described in the specification are all preferred embodiments, and the actions and modules involved are not necessarily required by the present invention.

[0254] In several embodiments provided in the present application, it should be understood that the disclosed device can be implemented in other ways. For example, the device embodiments described above are only schematic. When the above-mentioned display method of monitoring data and the review method of monitoring data are implemented in the form of software functional units and sold or used as independent products, they can be stored in a computer-readable storage medium. Based on such an understanding, the technical solution of the present invention is essentially or part of the prior art that contributes to or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including several instructions to enable a computer device (which can be a personal computer, a server or a network device, etc., specifically a processor in a computer device) to perform all or part of the steps of the display method of monitoring data and the review method of monitoring data in each embodiment of the present invention. Among them, the aforementioned storage medium may include: U disk, mobile hard disk, disk, CD, read-only memory (English: Read-Only Memory, abbreviation: ROM) or random access memory (English: RandomAccess Memory, abbreviation: RAM) and other media that can store programs.

[0255] The embodiments of the present invention are described in detail above. Specific examples are used herein to illustrate the principles and implementation methods of the present invention. The description of the above embodiments is only used to help understand the method of the present invention and its core idea. At the same time, for those skilled in the art, according to the idea of ​​the present invention, there will be changes in the specific implementation methods and application scopes. In summary, the content of this specification should not be understood as limiting the present invention.

Claims

1. A monitoring device for monitoring the physiological state of a patient, characterized in that: Including sensors, displays and processors, The sensor is used to collect monitoring data of the patient, wherein the monitoring data includes parameter values ​​of multiple parameters, and the parameter values ​​of the multiple parameters include real-time parameter values ​​and historical parameter values; The display is used to display a monitoring interface; The processor is configured to: Acquire the monitoring data from the sensor; According to the monitoring data, a real-time monitoring image and a monitoring evaluation image are displayed on the monitoring interface, wherein the real-time monitoring image is used to present the real-time parameter value and / or the real-time parameter waveform, and the monitoring evaluation image is used to present the parameter trend curves and virtual human body model of the multiple parameters, and optionally also used to present the preset evaluation parameter values ​​of the multiple parameters; the virtual human body model is used to graphically display the monitoring part according to the parameter values ​​or parameter trend curves of the multiple parameters; In response to a review operation on any target monitoring point on the parameter trend curve, determining a target parameter value corresponding to the target monitoring point; According to the target parameter value, the virtual human body model and the optional preset evaluation parameter value are updated and displayed.

2. The monitoring device according to claim 1, characterized in that: The processor is further configured to: Displaying the real-time monitoring image in the first display area of ​​the monitoring interface according to the monitoring data within a preset first display time length; The monitoring and evaluation image is displayed in the second display area of ​​the monitoring interface according to the monitoring data within a preset second display time length, wherein the real-time monitoring image and the monitoring and evaluation image do not overlap, partially overlap, or completely overlap.

3. The monitoring device according to claim 2, characterized in that: The second display area includes a parameter trend curve area, and the processor displays the monitoring evaluation image in the second display area of ​​the monitoring interface according to the monitoring data within a preset second display time length, specifically including: According to the monitoring data within the preset second display time length, the parameter trend curve is displayed in the parameter trend curve area, and the virtual human body model and the optional preset evaluation parameter values ​​are displayed in an area outside the parameter trend curve area.

4. The monitoring device according to claim 3, characterized in that: The processor displays the parameter trend curve in the parameter trend curve area according to the monitoring data within a preset second display time length, specifically including: Constructing a two-dimensional coordinate graph in the parameter trend curve area, wherein the horizontal axis of the two-dimensional coordinate graph is a time axis, the vertical axis of the two-dimensional coordinate graph is a parameter axis, the time axis represents the recording time corresponding to all monitoring points at each acquisition time within the preset second display time length, and the parameter axis represents the parameter values ​​corresponding to all monitoring points at each acquisition time within the preset second display time length; The recording time and the parameter value are mapped into the two-dimensional coordinate graph to display the parameter trend curve in the two-dimensional coordinate graph, wherein the parameter trend curve is arranged along a direction parallel to the time axis.

5. The monitoring device according to claim 4, characterized in that: The two-dimensional coordinate graph includes a trend graph control, and the processor responds to a review operation on a target monitoring point on the parameter trend curve to determine a target parameter value corresponding to the target monitoring point, specifically including: In response to a review operation on a target monitoring point on the parameter trend curve, displaying the trend graph control at the position of the target monitoring point; Obtaining the selected time corresponding to the trend chart control on the two-dimensional coordinate chart; According to the selected time, determining a target parameter value corresponding to the parameter trend curve at the selected time; or Move the trend graph control from a first position of the two-dimensional coordinate graph to a second position of the two-dimensional coordinate graph, wherein the first position of the two-dimensional coordinate graph is represented as a position corresponding to the latest monitoring point within the preset second display time length, and the second position of the two-dimensional coordinate graph is a position corresponding to the target monitoring point; Obtaining the selected time corresponding to the trend chart control on the two-dimensional coordinate chart after the movement; According to the selected time, a target parameter value corresponding to the parameter trend curve at the selected time is determined.

6. The monitoring device according to claim 5, characterized in that: Before moving the trend graph control from the first position of the two-dimensional coordinate graph to the second position of the two-dimensional coordinate graph, the method further includes: The processor is used for displaying the trend chart control at a first position of the two-dimensional coordinate graph in response to a preset operation on the two-dimensional coordinate graph.

7. The monitoring device according to claim 6, characterized in that: The processor is further configured to: When it is detected that the trend graph control is located at the first position, the latest parameter value corresponding to the latest monitoring point on the parameter trend curve is displayed in an area outside the parameter trend curve area.

8. The monitoring device according to claim 6, characterized in that: The processor is further configured to: When it is detected that the trend chart control moves to the third position of the two-dimensional coordinate graph, outputting prompt information; or When it is detected that the trend graph control moves to the third position, the historical parameter trend curve outside the preset second display time length is output, and part or all of the current parameter trend curve within the preset second display time length is covered; or When detecting that the trend chart control moves to the third position, controlling the trend chart control to resume display at the first position; The third position is a position corresponding to the earliest monitoring point within the preset second display time length.

9. The monitoring device according to claim 5, characterized in that: The trend graph control includes at least one of an active cursor and an active marking line, and the active marking line is perpendicular to the time axis.

10. The monitoring device according to claim 2, characterized in that: A time control is displayed in the second display area, and the processor displays the parameter trend curve in the parameter trend curve area according to the monitoring data within the preset second display time length, specifically including: When detecting that the time control receives a time selection instruction, determining a target display time length, and using the target display time length as the preset second display time length; The parameter trend curve is displayed in the parameter trend curve area according to the monitoring data within a preset second display time length.

11. The monitoring device according to claim 10, characterized in that: The processor displays the parameter trend curve in the parameter trend curve area according to the monitoring data within a preset second display time length, specifically including: The parameter trend curve is displayed in the parameter trend curve area according to the monitoring data within the second display time length before the current moment.

12. The monitoring device according to claim 1, characterized in that: The processor updates and displays the virtual human model and the optional preset evaluation parameter value according to the target parameter value, specifically including: According to the target parameter value, graphically displaying the target monitoring part associated with the target parameter value on the virtual human body model; Optionally, the target parameter value is used as the preset evaluation parameter value, and the preset evaluation parameter value is displayed in an area outside the parameter trend curve area.

13. The monitoring device according to claim 3, characterized in that: The second display area further includes an image display area adjacent to the parameter trend curve area, and the processor displays the virtual human body model and the optional preset evaluation parameter value in an area outside the parameter trend curve area, specifically including: The virtual human body model is displayed in the image display area, and the preset evaluation parameter value is displayed in an area outside the virtual human body model.

14. The monitoring device according to claim 3, characterized in that: The second display area further includes an image display area adjacent to the parameter trend curve area and an evaluation parameter value area adjacent to the parameter trend curve area and the image display area, and the processor displays the virtual human body model and the optional preset evaluation parameter value in an area outside the parameter trend curve area, and further includes: Displaying the virtual human body model in the image display area; The preset evaluation parameter value is displayed in the evaluation parameter value area.

15. The monitoring device according to claim 14, characterized in that: The processor displays the virtual human body model in the image display area, specifically comprising: The virtual human body model is displayed in the image display area, and specific evaluation parameter values ​​are displayed in an area outside the virtual human body model in the image display area, wherein the preset evaluation parameter values ​​at least include the specific evaluation parameter values.

16. The monitoring device according to claim 15, characterized in that: The processor is further configured to: When it is determined that the specific evaluation parameter value meets the preset condition, the specific evaluation parameter value is displayed in a first preset display style; When it is determined that the specific evaluation parameter value does not meet the preset condition, the specific evaluation parameter value is displayed in a second preset display style, wherein the first preset display style is different from the second preset display style, and the first preset display style and the second preset display style include at least one of the color, font, font size, font type, font effect, font background color or transparency of the specific evaluation parameter value.

17. The monitoring device according to claim 15, characterized in that: The processor is further configured to: When it is determined that the specific evaluation parameter value meets the preset condition, a target monitoring part associated with the specific evaluation parameter value that meets the preset condition is determined in the virtual human body model, and the target monitoring part is highlighted.

18. The monitoring device according to claim 17, characterized in that: The virtual human body model can be rotated within a preset angle range to display the target monitoring part.

19. The monitoring device according to claim 1, characterized in that: The processor is further configured to: In response to a touch operation on the virtual human body model, the virtual human body model is rotated to display different monitoring parts in the virtual human body model.

20. The monitoring device according to claim 1, characterized in that: The processor is further configured to: When the preset evaluation parameter value is greater than a first threshold, a first mark is displayed behind the preset evaluation parameter value, and the first mark is used to indicate that the preset evaluation parameter value is higher than a normal value; When the preset evaluation parameter value is less than a second threshold value, a second mark is displayed behind the preset evaluation parameter value, the first mark is used to indicate that the preset evaluation parameter value is lower than the normal value, wherein the first mark is different from the second mark; When the preset evaluation parameter value is less than or equal to the first threshold value and greater than or equal to the second threshold value, a third identifier is displayed behind the preset evaluation parameter value or no identifier is displayed, and the third identifier is used to indicate that the preset evaluation parameter value is equal to the normal value, wherein the third identifier is different from the first identifier and the second identifier.

21. The monitoring device according to claim 3, characterized in that: The parameter trend curve area includes at least one trend display area, and the processor is further used for: Determining a trend type corresponding to the parameter trend curve; Parameter trend curves of the same trend type are displayed in the same trend display area, and parameter trend curves of different trend types are displayed in different trend display areas respectively.

22. The monitoring device according to claim 21, characterized in that: The processor is further configured to: A first title corresponding to the trend type is displayed in each of the trend display areas.

23. The monitoring device according to claim 22, characterized in that: The area outside the parameter trend curve area includes at least one numerical display area, and the at least one numerical display area corresponds to the at least one trend display area; the processor is further used for: Determining the parameter type corresponding to the parameter trend curve; Evaluation parameter values ​​of the same parameter type are displayed in the same value display area, and evaluation parameter values ​​of different parameter types are displayed in different value display areas.

24. The monitoring device according to claim 23, characterized in that: The processor is further configured to: A second title corresponding to the parameter type is displayed in each of the numerical display areas, wherein the first title is the same as the second title.

25. The monitoring device according to claim 23, characterized in that: The virtual human body model is a human head image; the trend types corresponding to the parameter trend curve include cerebral blood flow related parameter trend curve, EEG related parameter trend curve, cerebral oxygen saturation related parameter trend curve and cerebrovascular reactivity related parameter trend curve; the parameter types corresponding to the parameter trend curve include cerebral blood flow related parameters, EEG related parameters, cerebral oxygen saturation related parameters and cerebrovascular reactivity related parameters.

26. The monitoring device according to claim 3, characterized in that: The first display area includes a first area and a second area arranged side by side, and the first area is adjacent to the parameter trend curve area; the real-time monitoring image is displayed in the first display area of ​​the monitoring interface according to the monitoring data within the preset first display time length, specifically including: The processor is used to display the real-time parameter waveform in the first area and display the real-time parameter value in the second area according to the monitoring data within the preset first display time length.

27. A monitoring data review method, applied to a monitoring device in a medical central station system, the review method comprising the following steps: Display a monitoring interface; Obtain monitoring data, including: The monitoring data includes parameter values ​​of multiple parameters, and the parameter values ​​of the multiple parameters include real-time parameter values ​​and historical parameter values; According to the monitoring data, a real-time monitoring image and a monitoring evaluation image are displayed on the monitoring interface, wherein the real-time monitoring image is used to present the real-time parameter value and / or the real-time parameter waveform, and the monitoring evaluation image is used to present the parameter trend curves of the multiple parameters and a virtual human body model, and optionally also used to present the preset evaluation parameter values ​​of the multiple parameters; the virtual human body model is used to graphically display the monitoring part according to the parameter values ​​or parameter trend curves of the multiple parameters; In response to a review operation on any target monitoring point on the parameter trend curve, determining a target parameter value corresponding to the target monitoring point; According to the target parameter value, the virtual human body model and the optional preset evaluation parameter value are updated and displayed.

28. The review method according to claim 27, characterized in that: The displaying of real-time monitoring images and monitoring evaluation images on the monitoring interface of the monitoring device according to the monitoring data specifically includes: In response to a preset first operation on the monitoring interface, according to the monitoring data, controlling the simultaneous display of the real-time monitoring image and the monitoring evaluation image; or, Displaying the real-time monitoring image on the monitoring interface according to the monitoring data; In response to a preset first operation on the monitoring interface, the monitoring evaluation image is controlled to be displayed.

29. The review method according to claim 27, characterized in that: The review method further comprises: Displaying the real-time monitoring image in the first display area of ​​the monitoring interface according to the monitoring data within a preset first display time length; The monitoring and evaluation image is displayed in the second display area of ​​the monitoring interface according to the monitoring data within a preset second display time length, wherein the real-time monitoring image and the monitoring and evaluation image do not overlap, partially overlap, or completely overlap.

30. The review method according to claim 29, characterized in that: The second display area includes a parameter trend curve area, and the monitoring evaluation image is displayed in the second display area of ​​the monitoring interface according to the monitoring data within the preset second display time length, specifically including: According to the monitoring data within the preset second display time length, the parameter trend curve is displayed in the parameter trend curve area, and the virtual human body model and the optional preset evaluation parameter values ​​are displayed in an area outside the parameter trend curve area.

31. The review method according to claim 30, characterized in that: The step of displaying the parameter trend curve in the parameter trend curve area according to the monitoring data within the preset second display time length specifically includes: Constructing a two-dimensional coordinate graph in the parameter trend curve area, wherein the horizontal axis of the two-dimensional coordinate graph is a time axis, the vertical axis of the two-dimensional coordinate graph is a parameter axis, the time axis represents the recording time corresponding to all monitoring points at each acquisition time within the preset second display time length, and the parameter axis represents the parameter values ​​corresponding to all monitoring points at each acquisition time within the preset second display time length; The recording time and the parameter value are mapped into the two-dimensional coordinate graph to display the parameter trend curve in the two-dimensional coordinate graph, wherein the parameter trend curve is arranged along a direction parallel to the time axis.

32. The review method according to claim 30, characterized in that: The two-dimensional coordinate graph includes a trend graph control, and the response to the review operation of the target monitoring point on the parameter trend curve determines the target parameter value corresponding to the target monitoring point, specifically including: In response to a review operation on a target monitoring point on the parameter trend curve, displaying the trend graph control at the position of the target monitoring point; Obtaining the selected time corresponding to the trend chart control on the two-dimensional coordinate chart; Determine, according to the selected time, a target parameter value corresponding to the parameter trend curve at the selected time; or Move the trend graph control from a first position of the two-dimensional coordinate graph to a second position of the two-dimensional coordinate graph, wherein the first position of the two-dimensional coordinate graph is represented as a position corresponding to the latest monitoring point within the preset second display time length, and the second position of the two-dimensional coordinate graph is a position corresponding to the target monitoring point; Obtaining the selected time corresponding to the trend chart control on the two-dimensional coordinate chart; According to the selected time, a target parameter value corresponding to the parameter trend curve at the selected time is determined.

33. The review method according to claim 32, characterized in that: Before moving the trend graph control from the first position of the two-dimensional coordinate graph to the second position of the two-dimensional coordinate graph, the review method further includes: In response to a preset operation on the two-dimensional coordinate graph, the trend graph control is displayed at a first position of the two-dimensional coordinate graph.

34. The review method according to claim 33, characterized in that: The review method further comprises: When it is detected that the trend graph control is located at the first position, the latest parameter value corresponding to the latest monitoring point on the parameter trend curve is displayed in an area outside the parameter trend curve area.

35. The review method according to claim 33, characterized in that: The review method further comprises: When it is detected that the trend graph control moves to a third position of the two-dimensional coordinate graph, a prompt message is output, wherein the third position is a position corresponding to the earliest monitoring point within the preset second display time length; or When it is detected that the trend graph control moves to the third position, output the historical parameter trend curve outside the preset second display time length, and cover part or all of the current parameter trend curve within the preset second display time length; or When it is detected that the trend graph control moves to the third position, the trend graph control is controlled to resume display at the first position.

36. The review method according to claim 33, characterized in that: The trend graph control includes at least one of an active cursor and an active marking line, and the active marking line is perpendicular to the time axis.

37. The review method according to claim 30, characterized in that: A time control is displayed in the second display area, and the parameter trend curve is displayed in the parameter trend curve area according to the monitoring data within the preset second display time length, specifically including: When detecting that the time control receives a time selection instruction, determining a target display time length, and using the target display time length as the preset second display time length; The parameter trend curve is displayed in the parameter trend curve area according to the monitoring data within a preset second display time length.

38. The review method according to claim 37, characterized in that: The step of displaying the parameter trend curve in the parameter trend curve area according to the monitoring data within the preset second display time length specifically includes: The parameter trend curve is displayed in the parameter trend curve area according to the monitoring data within the second display time length before the current moment.

39. The review method according to claim 27, characterized in that: The updating and displaying of the virtual human body model and the optional preset evaluation parameter value according to the target parameter value specifically includes: According to the target parameter value, graphically displaying the target monitoring part associated with the target parameter value on the virtual human body model; Optionally, the target parameter value is used as the preset evaluation parameter value, and the preset evaluation parameter value is displayed in an area outside the parameter trend curve area.

40. The review method according to claim 30, characterized in that: The second display area further includes an image display area adjacent to the parameter trend curve area, and the area outside the parameter trend curve area displays the virtual human body model and the optional preset evaluation parameter value, specifically including: The virtual human body model is displayed in the image display area, and the preset evaluation parameter value is displayed in an area outside the virtual human body model.

41. The review method according to claim 30, characterized in that: The second display area further includes an image display area adjacent to the parameter trend curve area and an evaluation parameter value area adjacent to the parameter trend curve area and the image display area, and the area outside the parameter trend curve area displays the virtual human body model and the optional preset evaluation parameter value further includes: Displaying the virtual human body model in the image display area; The preset evaluation parameter value is displayed in the evaluation parameter value area.

42. The review method according to claim 41, characterized in that: The displaying of the virtual human body model in the image display area specifically includes: The virtual human body model is displayed in the image display area, and specific evaluation parameter values ​​are displayed in an area outside the virtual human body model, wherein the preset evaluation parameter values ​​at least include the specific evaluation parameter values.

43. The review method according to claim 42, characterized in that: The review method further comprises: When it is determined that the specific evaluation parameter value meets the preset condition, the specific evaluation parameter value is displayed in a first preset display style; When it is determined that the specific evaluation parameter value does not meet the preset condition, the specific evaluation parameter value is displayed in a second preset display style, wherein the first preset display style is different from the second preset display style, and the first preset display style and the second preset display style include at least one of the color, font, font size, font type, font effect, font background color or transparency of the specific evaluation parameter value.

44. The review method according to claim 42, characterized in that: The review method further comprises: When it is determined that the specific evaluation parameter value meets the preset condition, a target monitoring part associated with the specific evaluation parameter value that meets the preset condition is determined in the virtual human body model, and the target monitoring part is highlighted.

45. The review method according to claim 44, characterized in that: The virtual human body model can be rotated within a preset angle range to display the target monitoring part.

46. ​​The review method according to claim 27, characterized in that: The review method further comprises: In response to a touch operation on the virtual human body model, the virtual human body model is rotated to display different monitoring parts in the virtual human body model.

47. The review method of claim 27, wherein: The review method further comprises: When the preset evaluation parameter value is greater than a first threshold, a first mark is displayed behind the preset evaluation parameter value, and the first mark is used to indicate that the preset evaluation parameter value is higher than a normal value; when the preset evaluation parameter value is less than a second threshold, a second mark is displayed behind the preset evaluation parameter value, and the first mark is used to indicate that the preset evaluation parameter value is lower than the normal value, wherein the first mark is different from the second mark; When the preset evaluation parameter value is less than or equal to the first threshold value and greater than or equal to the second threshold value, a third identifier is displayed behind the preset evaluation parameter value or no identifier is displayed, and the third identifier is used to indicate that the preset evaluation parameter value is equal to the normal value, wherein the third identifier is different from the first identifier and the second identifier.

48. The review method of claim 30, wherein: The parameter trend curve area includes at least one trend display area, and the review method further includes: Determining a trend type corresponding to the parameter trend curve; Parameter trend curves of the same trend type are displayed in the same trend display area, and parameter trend curves of different trend types are displayed in different trend display areas respectively.

49. The review method according to claim 48, characterized in that: The review method further comprises: A first title corresponding to the trend type is displayed in each of the trend display areas.

50. The review method according to claim 49, characterized in that: The area outside the parameter trend curve area includes at least one numerical display area, and the at least one numerical display area corresponds to the at least one trend display area; the review method further includes: Determining the parameter type corresponding to the parameter trend curve; Evaluation parameter values ​​of the same parameter type are displayed in the same value display area, and evaluation parameter values ​​of different parameter types are displayed in different value display areas.

51. The review method according to claim 50, characterized in that: The review method further comprises: A second title corresponding to the parameter type is displayed in each of the numerical display areas, wherein the first title is the same as the second title.

52. The review method of claim 50, wherein: The virtual human body model is a human head image; the trend types corresponding to the parameter trend curve include cerebral blood flow related parameter trend curve, EEG related parameter trend curve, cerebral oxygen saturation related parameter trend curve and cerebrovascular reactivity related parameter trend curve; the parameter types corresponding to the parameter trend curve include cerebral blood flow related parameters, EEG related parameters, cerebral oxygen saturation related parameters and cerebrovascular reactivity related parameters.

53. The review method of claim 30, wherein: The first display area includes a first area and a second area arranged side by side, and the first area is adjacent to the parameter trend curve area; the real-time monitoring image is displayed in the first display area of ​​the monitoring interface according to the monitoring data within the preset first display time length, specifically including: According to the monitoring data within the preset first display time length, the real-time parameter waveform is displayed in the first area, and the real-time parameter value is displayed in the second area.

54. A medical central station system, characterized in that: The central station device includes a central station device, the central station device is communicatively connected to a monitoring device, the central station device obtains monitoring data from the monitoring device, and the central station device includes a display, a processor and a memory. The memory is used to store programs; The display is used to display a monitoring interface; The processor, used to execute the program in the memory, is configured to: According to the monitoring data, a real-time monitoring image and a monitoring evaluation image are displayed on the monitoring interface, wherein the real-time monitoring image is used to present the real-time parameter value and / or the real-time parameter waveform, and the monitoring evaluation image is used to present the parameter trend curves of the multiple parameters and a virtual human body model, and optionally also used to present the preset evaluation parameter values ​​of the multiple parameters; the virtual human body model is used to graphically display the monitoring part according to the parameter values ​​or parameter trend curves of the multiple parameters; In response to a review operation on any target monitoring point on the parameter trend curve, determining a target parameter value corresponding to the target monitoring point; According to the target parameter value, the virtual human body model and the optional preset evaluation parameter value are updated and displayed.

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