Interface display method, monitor and computer storage media

CN116669616BActive Publication Date: 2026-08-14SHENZHEN MINDRAY BIO MEDICAL ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-12-30
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

然而,由于其他场景对监护仪的参数显示的要求不同,例如其他场景可能需要显示更多的参数或者显示其他不同种类的参数,此时,该适用于某一种特定场景的监护仪便不再适用于其他场景,监护仪难以在多场景下使用

Benefits of technology

[0022] In this embodiment, the user can select the target measurement mode according to the usage scenario of the monitor or their own work habits. After inputting the measurement mode selection command into the monitor, the monitor will determine the target parameter layout page that the user needs to display based on the measurement mode selection command and show the target parameter layout page to the user. Therefore, the monitor can display different parameter layout pages according to different usage scenarios or according to the user's work habits, meeting the user's different measurement needs and enabling the monitor to be tailored to the user's usage situation.

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Abstract

A user interface display method, a patient monitor, and a computer storage medium are disclosed to provide parameter layout pages corresponding to various measurement modes, allowing users to select a target parameter layout page suitable for their actual usage. The method includes: the user selects a target measurement mode based on the patient monitor's usage scenario or their own work habits; after inputting a measurement mode selection command into the patient monitor, the monitor determines the target parameter layout page to be displayed based on the command and presents that page to the user. Therefore, the patient monitor can display different parameter layout pages according to different usage scenarios or user work habits, meeting diverse measurement needs and enabling the monitor to be tailored to the user's specific situation.
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Description

[0001] This application claims priority to international patent application filed on December 30, 2020, with application number PCT / CN2020 / 141347, entitled "Interface Display Method, Monitor and Computer Storage Medium", the entire contents of which are incorporated herein by reference. Technical Field

[0002] This application relates to the field of medical devices, specifically to an interface display method, a monitor, and a computer storage medium. Background Technology

[0003] Medical institutions such as general wards, emergency rooms, doctors' clinics, and nursing homes frequently conduct regular vital sign measurements on patients, such as measuring vital signs-related parameters like body temperature, blood pressure, pulse rate, or respiratory rate, and using monitors to display and record these parameters.

[0004] In actual use of patient monitors, the parameters that medical staff need the monitor to display and record vary depending on the scenario. For example, in some departments, medical staff may need the monitor to display parameters such as body temperature, single blood pressure readings, pulse rate, and respiratory rate; while in other departments, in addition to displaying body temperature, single blood pressure readings, pulse rate, and respiratory rate, medical staff may also need to display average blood pressure, or the monitor may need to display indicators such as height and weight. Therefore, the parameters displayed by the monitor vary depending on the scenario in which it is used.

[0005] The existing patient monitors display a fixed number of parameters on their interface, making them suitable for a specific scenario. However, different scenarios may have different requirements for the parameters displayed by the monitor. For example, other scenarios may require displaying more parameters or different types of parameters. In such cases, a monitor suitable for a specific scenario may no longer be suitable for other scenarios, making it difficult to use the monitor in multiple scenarios. Summary of the Invention

[0006] This application provides an interface display method, a monitor, and a computer storage medium for providing parameter layout pages corresponding to various measurement modes, allowing users to select a target parameter layout page suitable for their actual use.

[0007] The first aspect of this application provides an interface display method applied to a patient monitor, including:

[0008] The monitor displays a working interface on its screen, and the working interface is used for:

[0009] The monitor displays measurement modes, each associated with a corresponding parameter layout page; the measurement modes at least characterize the operating mode of the monitor; the operating modes include continuous measurement mode and discontinuous measurement mode; multiple first measurement modes are determined based on the continuous measurement mode, each corresponding to a multiple first parameter layout page; multiple second measurement modes are determined based on the discontinuous measurement mode, each corresponding to a multiple second parameter layout page; the first parameter layout page and the second parameter layout page are at least partially different;

[0010] Receive a measurement mode selection instruction, the measurement mode selection instruction being used to select a target measurement mode from a measurement mode identifier list, the measurement mode identifier list including the plurality of first measurement modes and the plurality of second measurement modes;

[0011] In response to the measurement mode selection command, the target parameter layout page corresponding to the target measurement mode is displayed.

[0012] A second aspect of this application provides a patient monitor, including: a human-computer interaction module and a processor;

[0013] The human-computer interaction module is used to receive measurement mode selection instructions and / or function control selection instructions input by the user, and to display the working interface;

[0014] The working interface includes:

[0015] A mode selection area is provided, which displays measurement modes and receives measurement mode selection instructions. Each measurement mode is associated with a corresponding parameter layout page. The measurement mode at least characterizes the operating mode of the monitor. The operating modes include continuous measurement operating modes and non-continuous measurement operating modes. Multiple first measurement modes are determined based on the continuous measurement operating modes, each corresponding to a multiple first parameter layout page. Multiple second measurement modes are determined based on the non-continuous measurement operating modes, each corresponding to a multiple second parameter layout page. The first parameter layout pages and the second parameter layout pages are at least partially different. The measurement mode selection instruction is used to select a target measurement mode from a measurement mode identifier list, which includes the multiple first measurement modes and the multiple second measurement modes.

[0016] A status display area is provided to display the status information of the monitor.

[0017] A parameter reporting area is provided, which is used to display a target parameter layout page corresponding to the target measurement mode according to the target measurement mode. The target parameter layout page includes a display area for at least one measurement parameter and measurement data located in the display area. When the target parameter layout page is the first parameter layout page, it includes a first parameter reporting area; when the target parameter layout page is the second parameter layout page, it includes a second parameter reporting area. The first parameter reporting area and the second parameter reporting area are at least partially different.

[0018] A function control area, wherein the function control area includes at least one function control;

[0019] The processor is used to respond to the function control selection instruction and execute the processing flow corresponding to the selected target function control.

[0020] A third aspect of this application provides a computer storage medium storing instructions that, when executed on a computer, cause the computer to perform the method described in the first aspect.

[0021] As can be seen from the above technical solutions, the embodiments of this application have the following advantages:

[0022] In this embodiment, the user can select the target measurement mode according to the usage scenario of the monitor or their own work habits. After inputting the measurement mode selection command into the monitor, the monitor will determine the target parameter layout page that the user needs to display based on the measurement mode selection command and show the target parameter layout page to the user. Therefore, the monitor can display different parameter layout pages according to different usage scenarios or according to the user's work habits, meeting the user's different measurement needs and enabling the monitor to be tailored to the user's usage situation. Attached Figure Description

[0023] Figure 1 This is a schematic diagram illustrating the application scenario of the patient monitor in the embodiments of this application;

[0024] Figure 2 This is a flowchart illustrating the interface display method in an embodiment of this application;

[0025] Figure 3 This is another flowchart illustrating the interface display method in this application embodiment;

[0026] Figure 4 This is a schematic diagram illustrating how several measurement parameters are laid out on the editing page according to parameter layout information in an embodiment of this application;

[0027] Figure 5This is a schematic diagram illustrating how the measurement parameters are changed to the target parameters based on the change information in an embodiment of this application;

[0028] Figure 6 This is a schematic diagram illustrating how the layout position of the measurement parameters on the page to be edited is changed according to the position change information in an embodiment of this application;

[0029] Figure 7 This is a schematic diagram illustrating the measurement method of setting measurement parameters based on measurement setting information in an embodiment of this application;

[0030] Figure 8 This is a schematic diagram illustrating the process of adding measurement parameters to the editing page based on the added information in an embodiment of this application;

[0031] Figure 9 This is a schematic diagram illustrating the parameter type of the measurement parameter set according to the type setting information in an embodiment of this application.

[0032] Figure 10 This is a schematic diagram illustrating one method of receiving the measurement mode selection command in an embodiment of this application;

[0033] Figure 11 This is a schematic diagram illustrating the switching of the parameter report page in an embodiment of this application;

[0034] Figure 12 This is a schematic diagram illustrating one method of distinguishing the display area according to the measurement order in an embodiment of this application;

[0035] Figure 13 This is another flowchart illustrating the interface display method in this application embodiment;

[0036] Figure 14-a and Figure 14-b All of these are schematic diagrams illustrating the process of the monitor switching measurement modes according to the measurement mode switching command in the embodiments of this application;

[0037] Figure 15 This is a schematic diagram illustrating the process by which the monitor switches measurement modes according to the user's sliding input measurement mode switching command in this embodiment of the application;

[0038] Figure 16 This is a schematic diagram illustrating the process by which the monitor remeasures the parameters to be updated according to the remeasurement command in an embodiment of this application.

[0039] Figure 17 This is a schematic diagram illustrating the process by which the monitor opens / hides the display area according to the operation instructions of the display area in an embodiment of this application;

[0040] Figure 18 This is a schematic diagram of the monitor's interface display in standby mode in an embodiment of this application;

[0041] Figure 19 This is a schematic diagram of the parameter layout page corresponding to one measurement mode in an embodiment of this application;

[0042] Figure 20 This is a schematic diagram of the parameter layout page corresponding to another measurement mode in this application embodiment;

[0043] Figure 21 This is a schematic diagram of the parameter layout page corresponding to another measurement mode in this application embodiment;

[0044] Figure 22 This is a schematic diagram of a patient monitor in an embodiment of this application;

[0045] Figure 23 This is a schematic diagram of a working interface of the monitor in an embodiment of this application;

[0046] Figure 24 This is another schematic diagram of the patient monitor in the embodiments of this application;

[0047] Figure 25 This is a schematic diagram of another working interface of the monitor in the embodiments of this application. Detailed Implementation

[0048] This application provides an interface display method, a monitor, and a computer storage medium for providing parameter layout pages corresponding to various measurement modes, allowing users to select a target parameter layout page suitable for their actual use.

[0049] Figure 1 This is a schematic diagram illustrating an application scenario of an embodiment of this application. Please refer to [link / reference]. Figure 1 The application scenarios of this application include:

[0050] The monitor 100 includes a human-computer interaction module 101 for displaying a working interface, a processor for processing user instructions and / or executing preset computer programs, and a memory for storing computer programs or storing data. Furthermore, the processor can be configured to communicate with the memory and execute a series of instruction operations corresponding to the computer program in the memory on the monitor 100.

[0051] In this embodiment of the application, the working interface displayed by the human-computer interaction module 101 can be used to display physiological parameters and / or monitor status and other information to the user. The physiological parameters can be any physiological parameters such as electrocardiogram data, respiration, non-invasive blood pressure, blood oxygen saturation, pulse, body temperature, etc. The monitor status can be information related to the monitor such as the monitor's battery level, current time, working status, etc.

[0052] Users can input operation commands to the monitor 100 through the human-machine interaction module 101 and receive data information displayed by the human-machine interaction module 101. In some embodiments, the human-machine interaction module 101 may be equipped with a display screen for displaying data information to the user. In one possible implementation, the display screen is also a touch panel, which can be used to receive user gestures on the touch panel, and the gestures can be further identified as user operation commands. In another possible implementation, the human-machine interaction module 101 may also be equipped with physical buttons (including knobs, buttons, etc.), which users can operate to input operation commands to the monitor 100.

[0053] It is understandable that the human-computer interaction module 101 can simultaneously set up the physical button and use the display screen as a touch panel to receive user operation commands; it can also only set up the physical button, or not set up the physical button and only use the display screen as a touch panel to receive user operation commands, and the specifics are not limited here.

[0054] In this embodiment, the monitor 100 can switch between different measurement modes according to different measurement scenarios (such as general wards, emergency rooms, etc.) or according to user operation commands. Each measurement mode corresponds to a parameter layout page, thereby meeting different measurement needs of users in different usage scenarios and highlighting the user's focus, enabling the monitor to adapt to the user's usage. The measurement mode is determined based on the measurement scenario and the working mode. In some embodiments, the measurement scenario is the application scenario of the monitor 100, which may include the measurement area and / or hospital work zones. Hospital work zones further include: department types and public areas, etc. Application departments further include: emergency department, general ward, day surgery room, etc. The working mode is the parameter measurement mode performed by the monitor 100, which can be divided according to the continuity between at least two parameter measurements. In some embodiments, the working mode includes a continuous measurement working mode and a point measurement mode. In some embodiments, in continuous measurement mode, the monitor 100 automatically obtains at least two parameter measurement results at preset time intervals; in spot measurement mode, there is no preset time interval between the at least two parameter measurement results of the monitor 100, or the preset time interval is longer than that in continuous measurement mode.

[0055] In some embodiments, the measurement scenario includes the measurement region and hospital work zone. Department types for FDA regions or the United States include: General Ward, Emergency Department, Doctor's Office, Long Term Care, and ASC (Area-of-Care Surgery). Department types for CE regions or Europe include: General Ward, Emergency Department, Physician's Office, and ASC (Area-of-Care Surgery). Preset department types for China include: General Ward, Emergency Department, Community Health Service Center, Day Surgery, and Neonatology. In practical applications, different department types can be displayed as measurement scenarios based on different regions for users to select. The measurement mode can be set as the default measurement mode at the factory. In one embodiment, the default measurement scenario is General Ward. In some embodiments, the default measurement mode can be modified, deleted, edited, or saved. In some embodiments, when switching hospital work zones, the measurement mode set under that zone is automatically cleared.

[0056] In some embodiments, the measurement scenario includes a measurement region, which includes at least one of the following: the United States, Europe, and China. In some embodiments, the measurement scenario includes a hospital work zone, which includes at least one department type.

[0057] In some embodiments, the department types include at least general wards and emergency departments. When the measurement scenario is the general ward, the continuous measurement mode includes a continuous monitoring mode; the non-continuous measurement mode includes a ward round mode and an initial assessment mode. In some embodiments, the parameter layout page of the initial assessment mode includes an orthostatic hypotension tool. When the measurement scenario is the emergency department, the continuous measurement mode includes a continuous monitoring mode; the non-continuous measurement mode includes a triage mode and a spot measurement mode.

[0058] The monitoring modes include: Continuous Monitoring Mode, which involves continuously measuring a patient's vital signs over a period of time, monitoring for abnormal changes and issuing alarms; Spot Measurement Mode, which involves measuring a patient's vital signs at a single time, storing the measured parameters, and transmitting them to other devices; Ward Round Mode, which involves sequentially measuring the vital signs of multiple patients, and transmitting these parameters to other devices; Initial Assessment Mode, which involves measuring a patient's vital signs at a single time and conducting an initial assessment of their physical condition, such as fall risk; and Triage Mode, which involves measuring a patient's vital signs at a single time to assess their severity or level of illness, facilitating the determination of the appropriate department for treatment.

[0059] It should be noted that the specific implementation of the same working mode in different monitoring scenarios can be set according to the needs of each monitoring scenario and may not be exactly the same.

[0060] The types of departments further include one of the following: doctor's office, long-term care unit, day surgery room, community rehabilitation center, and neonatal department.

[0061] When the department type is a doctor's office or a community rehabilitation center, the continuous measurement working mode includes a continuous monitoring mode; the non-continuous measurement working mode includes a point measurement mode. In some embodiments, when the department type is a doctor's office or a community rehabilitation center, the parameter layout page of the point measurement mode includes a height display area, a weight display area, and an average blood pressure tool.

[0062] When the department type is a long-term care ward, the continuous measurement working mode includes a continuous monitoring mode; the non-continuous measurement working mode includes a ward round mode and an initial assessment mode. Since the application scenarios of long-term care wards are similar to those of general wards, the only difference being whether they are in-hospital or out-of-hospital, the measurement mode settings for both are also similar.

[0063] When the department type is a day surgery room, the continuous measurement working mode includes a continuous monitoring mode; the non-continuous measurement working mode includes a recovery mode. The recovery mode refers to a single measurement of the patient's vital signs parameters before or after surgery to assess or confirm the patient's condition before or after surgery. In some embodiments, the measurement of non-invasive blood pressure parameters in the recovery mode is preset with a preset time interval between two measurements, and a preset measurement duration and / or preset number of measurements according to the preset time interval. In some embodiments, the parameter layout page of the recovery mode includes a carbon dioxide parameter display area.

[0064] When the department type is a neonatal department, the continuous measurement working mode includes a continuous monitoring mode, and the non-continuous measurement working mode includes a spot measurement mode. In some embodiments, when the department type is a neonatal department, the parameter layout page includes a CCHD tool, a blood oxygen display area, and a pulse display area.

[0065] The following is combined with Figure 1 The following is a schematic diagram illustrating the application scenario, which describes the interface display method in the embodiments of this application:

[0066] Please see Figure 2 One embodiment of the interface display method in this application includes:

[0067] The interface display method of this embodiment is applied to a patient monitor. This method allows the patient monitor to display a working interface on a display screen. The working interface displayed on the display screen can be used to perform the following multiple steps:

[0068] 201. Display measurement modes, each of which is associated with a corresponding parameter layout page;

[0069] The monitor displays a working interface on its screen, which shows the measurement modes. Each measurement mode is associated with a corresponding parameter layout page. The monitor can measure the subject's physiological parameters and display the measurement results of different types of parameters on the working interface. In a specific measurement mode, the working interface displays multiple measurement parameters corresponding to that mode. These multiple measurement parameters are arranged in different areas and positions on the displayed page, forming a parameter layout page for each measurement parameter. In other words, each measurement mode corresponds to a separate parameter layout page. The measurement mode characterizes the monitor's operating mode, which includes continuous measurement mode and non-continuous measurement mode.

[0070] Among them, the layout pages of multiple parameters corresponding to various measurement modes can be the same or different, and there is no limitation here.

[0071] In some embodiments, a plurality of first measurement modes can be determined according to the continuous measurement working mode, each of the plurality of first measurement modes corresponding to a plurality of first parameter layout pages, and a plurality of second measurement modes can be determined according to the non-continuous measurement working mode, each of the plurality of second measurement modes corresponding to a plurality of second parameter layout pages; the first parameter layout pages and the second parameter layout pages are at least partially different.

[0072] In this embodiment, the monitor can obtain the parameter layout page corresponding to each measurement mode so as to display the corresponding parameter layout page to the user when the user selects a certain measurement mode.

[0073] 202. Receive measurement mode selection command;

[0074] When it is necessary to measure and record parameters according to a certain measurement mode, input the measurement mode selection command. This measurement mode selection command is used to select the target measurement mode from the measurement mode identifier list. The measurement mode identifier list includes multiple first measurement modes corresponding to the continuous measurement working mode and multiple second measurement modes corresponding to the non-continuous measurement working mode.

[0075] 203. In response to the measurement mode selection command, display the target parameter layout page corresponding to the target measurement mode;

[0076] Upon receiving the input measurement mode selection command, the monitor responds to the command and determines the target parameter layout page corresponding to the target measurement mode from multiple parameter layout pages.

[0077] After the target parameter layout page is determined, the monitor displays the target parameter layout page through the working interface, allowing the user to execute the corresponding target measurement mode according to the target parameter layout page, and complete the measurement and recording of the measurement parameters in the target measurement mode. In some embodiments, the target parameter layout page is displayed in the parameter report area of ​​the working interface.

[0078] In this embodiment, the monitor has multiple operating modes, each corresponding to multiple measurement modes, and each measurement mode has a corresponding parameter layout page. Therefore, users can select the target measurement mode according to different situations such as the usage scenario of the monitor, the patient's monitoring requirements, or their own work habits. After inputting the measurement mode selection command into the monitor, the monitor will determine the target parameter layout page that the user needs to display based on the measurement mode selection command and show the target parameter layout page to the user. Therefore, the monitor can display different parameter layout pages according to different usage scenarios or different situations such as the user's work habits, meeting the user's different measurement needs and making the monitor adaptable to the user's usage.

[0079] In this embodiment of the application, there are multiple ways to obtain the parameter layout page corresponding to each measurement mode. In one method, the parameter layout page can be customized on the monitor, so that the monitor obtains the customized parameter layout page. In another method, a pre-configured parameter layout page can be imported into the monitor, so that the monitor receives the imported parameter layout page. The following will explain... Figure 2 Based on the embodiments shown, the two methods described above will be explained in detail.

[0080] In some embodiments, the layout page for configuration parameters can be customized.

[0081] In this embodiment, the editing page is customized and edited. After the editing page is customized and edited, the parameter layout page can be obtained.

[0082] Please see Figure 3 Another embodiment of the interface display method in this application includes:

[0083] 301. Display measurement modes, each of which is associated with a corresponding parameter layout page;

[0084] In this embodiment, the parameter layout page can be obtained by the monitor providing an editing page for the parameter layout page. Editing information is entered on this page, representing information related to operations performed on the measurement parameters. The monitor receives this editing information and operates on the measurement parameters on the editing page accordingly. The operation performed on the measurement parameters constitutes editing the editing page. After editing is complete, the monitor generates the parameter layout page based on the editing information.

[0085] Specifically, in one implementation, the editing method for the editing page can include parameter layout information. This parameter layout information represents the layout of several measurement parameters on the editing page, and may specifically include the layout position of the measurement parameters, the size of the layout area, and other information. Therefore, after receiving the parameter layout information, the several measurement parameters can be laid out on the editing page according to this parameter layout information.

[0086] Figure 4 This diagram illustrates how several measurement parameters are arranged on an editing page based on parameter layout information. The image to the left of the arrow shows the editing page, while the image to the right shows the parameter layout page generated by the monitor based on the parameter layout information from the editing page. As shown, the monitor displays the editing page. In the "Layout" area of ​​this page, the user can arrange multiple measurement parameters such as "Height" and "Weight" by inputting parameter layout information into the monitor. This information indicates that the "Height" parameter is positioned directly above the "Weight" parameter, and the BMI index is positioned directly below the "Weight" parameter, and so on. Therefore, after receiving this parameter layout information, the monitor executes the corresponding layout, generating the parameter layout page upon completion.

[0087] This embodiment of the monitor provides a parameter layout method, which allows users to place some parameters that need to be focused on in a more prominent position on the page for easy viewing. Users can adjust the parameter layout according to their own usage habits and other factors to make the monitor's interface configuration more practical.

[0088] In another specific implementation, the editing method for the editing page can also be that the editing information includes change information for the measurement parameters, which indicates that the measurement parameters in the editing page will be changed to the target parameters. Therefore, upon receiving the change information for the measurement parameters, the monitor will change the measurement parameters to the target parameters indicated by the change information.

[0089] There are several ways to receive change information. In one way, the monitor displays a list of alternative parameters. The user selects the target parameter from the list to replace the measurement parameter on the editing page. This is equivalent to inputting change information into the monitor, which can then receive the change information.

[0090] There are other ways to receive change information, which are not limited here. For example, the monitor can display an input box to the user, who can enter the name of the target parameter in the input box. The monitor will then determine to change the measurement parameter in the editing page to the target parameter corresponding to the parameter name entered by the user.

[0091] Figure 5 The diagram illustrates how measurement parameters are changed to target parameters based on change information. As shown, if a user needs to change the measurement parameter "Manual" (parameters requiring manual measurement), they can click the triangle symbol near the "Manual" parameter. The monitor receives this click and displays a list of alternative parameters. The user can then select the target parameter from this list. For example, if the user selects the "EWS (Early Warning Score)" parameter, the monitor will respond to the user's selection and change the "Manual" parameter to the "EWS" parameter.

[0092] In the above methods, users can change parameters according to actual conditions, making the monitor's measurement mode more suitable for the current situation, and the monitor's page design more personalized and in line with the user's actual needs.

[0093] In another specific implementation, the editing method of the editing page can also be that the editing information entered by the user on the editing page includes position transformation information of the measurement parameters on the editing page. This position transformation information is used to indicate the change in the layout position of the measurement parameters on the editing page. Therefore, after receiving the position transformation information of the measurement parameters, the monitor will change the layout position of the measurement parameters on the editing page according to the position transformation information.

[0094] One method for receiving the position change information of the measurement parameters is that the user drags the measurement parameters with a gesture. The monitor receives the user's input gesture drag operation, which indicates that the measurement parameters will be moved to the target position. Therefore, the monitor responds to the gesture drag operation and moves the measurement parameters from their current position to the target position.

[0095] Figure 6 This diagram illustrates how the layout of measurement parameters on the editing page changes based on location change information. As shown, the user needs to change the layout of the measurement parameter "EWS" from "screen 2 (second screen)" to "screen 1 (first screen)" for easier viewing. To do this, the user drags the "EWS" parameter to the layout position of the "Pain Score" parameter. The monitor receives the user's drag gesture and moves the "EWS" parameter from "screen 2" to the layout position of the "Pain Score" parameter in "screen 1". In some embodiments, the first screen includes at least one target parameter. In some embodiments, the first parameter reporting area includes at least one target parameter.

[0096] In another specific implementation, the editing method of the editing page can also be such that the editing information entered by the user on the editing page includes measurement setting information for the measurement parameters, which is used to set the measurement method of the measurement parameters. Therefore, the monitor will set the measurement method of the measurement parameters to the measurement method corresponding to the measurement setting information according to the measurement setting information.

[0097] Figure 7This diagram illustrates how to set measurement parameters based on measurement settings. As shown, the user needs to set the measurement method for NIBP (automated non-invasive blood pressure). The monitor provides multiple NIBP measurement methods, such as OH Procedure (measurement of orthostatic hypotension), BP Average (mean blood pressure), and various measurement sites and the subject's posture (standing, sitting, or lying down). The user can input measurement settings based on these methods. For example, if the settings indicate that the NIBP measurement method is to measure the blood pressure in the subject's left arm while sitting, the monitor will then set the NIBP measurement method accordingly.

[0098] In another specific implementation, the editing page can be edited in such a way that the user enters information on the editing page that includes information for adding measurement parameters. This information indicates that the measurement parameter is being added to the editing page. Therefore, the monitor will add the measurement parameter to the editing page based on this information.

[0099] Figure 8 This is a diagram illustrating how measurement parameters are added to the editing page based on the added information. As shown in the figure, on the "screen2" page, "off" indicates that no parameters have been placed at the current location. Users can add parameters here. If the user clicks the triangle symbol near "off", the monitor will display a parameter list to the user. The user selects the parameter to be added from the list, i.e., enters the information to add the measurement parameter. For example, if the user selects "BMI index", the monitor will add "BMI index" to the "screen 2" page based on this information.

[0100] In another specific implementation, the editing method for the editing page can also be such that the measurement parameters include parameters for which measurement data is manually entered. In this case, the editing information entered by the user on the editing page includes the type setting information for the measurement parameters. This type setting information is used to set the parameter type of the measurement parameters, where the parameter type includes numeric and selection types. Therefore, the monitor will set the parameter type of the measurement parameters to the parameter type corresponding to the type setting information, based on the type setting information.

[0101] Among them, parameters for which measurement data is manually entered refer to parameters that require users to manually enter measurement data based on actual measurement results. For example, parameters such as height and weight need to be measured by the user himself. After obtaining the measurement results, the user manually enters the measurement data into the monitor.

[0102] Because the parameter type can be either numerical or selective, the monitor can set the measurement parameter type to either numerical or selective based on the user-inputted settings. For example, Figure 9 The figure shows a diagram illustrating how to set the parameter type of a measurement parameter based on the type setting information. Users can click the "Add" button to add parameters and select the name of the parameter to be added and set its parameter type in the pop-up dialog box. In the "Type" row, users can choose "Numeric" or "Optional". Selecting "Numeric" means that the user sets the parameter type to numeric, and selecting "Optional" means that the user sets the parameter type to selection.

[0103] When the measurement parameter is set to numerical, the user can continue to set some details of the measurement parameter. That is, the user inputs detailed setting information of the measurement parameter. This detailed setting information is used to set the parameter details of the measurement parameter. The parameter details include one or more of the following: numerical unit, numerical input range, and numerical precision. The monitor will then set the parameter details of the measurement parameter to the parameter details corresponding to the detailed setting information.

[0104] When a parameter is set to a numerical value, the monitor provides the user with an input box for the parameter value, allowing the user to manually enter the specific value based on the actual measurement results. Furthermore, after completing the detailed settings for the measurement parameter, the monitor will display the specific value of the parameter according to the configured settings.

[0105] For example, for the "height" parameter, users can set it as a numerical parameter and further set the unit of measurement (meters, centimeters, etc.) or the precision (e.g., accurate to two decimal places). Figure 9 As shown, users can set the unit of the "Height" parameter in the "Unit" row.

[0106] If the measurement parameter is set to selectable, the monitor can configure multiple options related to the measurement data of that parameter. For example, such as Figure 9 As shown, users can set the "LOC" parameter (level of consciousness) to a selection type, providing multiple options such as "Option 1," "Option 2," and "Option 3." After setting the options, the monitor will display multiple options when showing the parameter measurement data, allowing the user to select the option that best matches the actual measurement results.

[0107] The above describes various editing methods for the editing page. After each editing method is executed, the monitor can show the user a preview of the edited page. For example, after editing the parameter layout of the page, or after changing the parameters of the page, the monitor can show the user a preview of the parameter layout or the parameter change, allowing the user to anticipate the editing effect of the page in advance.

[0108] After editing the page, a parameter layout page will be generated. Each parameter layout page corresponds to a measurement mode. Users can select a measurement mode according to their actual measurement needs, and the monitor will display the corresponding parameter layout page based on the selected measurement mode. The parameter layout pages edited by the user can be saved for easy retrieval when displaying the parameter layout page.

[0109] 302. Receive measurement mode selection command;

[0110] When a user uses the monitor, the monitor allows the user to select a measurement mode. That is, the monitor provides multiple measurement modes, and the user can enter a measurement mode selection command, which indicates that a target measurement mode is selected from them.

[0111] Specifically, one way to receive measurement mode selection instructions is for the monitor to display a list of measurement mode identifiers to the user. This list includes an identifier for each measurement mode, which may include the name of the measurement scenario. Selecting a target identifier in the list indicates that the user has selected the target measurement mode corresponding to that target identifier, thereby allowing the monitor to determine the target measurement mode that the user needs to use.

[0112] The identifier for the measurement mode can be the name, code, or graphic symbol of the measurement mode, as long as it can refer to a unique measurement mode, and its form is not limited.

[0113] For example, Figure 10 The diagram illustrates one method of receiving a measurement mode selection command. As shown, the user can click button 1001, and the monitor will display a list of measurement mode identifiers, including identifiers for various measurement modes such as "Initial Evaluation," "General Round," and "Continuous Monitoring." Assuming the user selects "Initial Evaluation," the monitor can determine that the target measurement mode required by the user is the measurement mode corresponding to "Initial Evaluation."

[0114] In addition to the above, another way to receive measurement mode selection instructions is for the monitor to receive measurement mode selection instructions input by the user through gesture swiping on the currently displayed parameter layout page. This measurement mode selection instruction indicates that the user has selected a target parameter layout page from among multiple parameter layout pages. For example, when the user swipes on the currently displayed parameter layout page, the currently displayed parameter layout page will be switched to the next parameter layout page. The gesture swipe can be in any direction, such as up / down or left / right. Since each parameter layout page corresponds to a measurement mode, each gesture swipe by the user will be perceived by the monitor as the user inputting a measurement mode selection instruction, indicating that the user has selected a target measurement mode. When switching between parameter layout pages and parameter report pages using gesture swiping, the gesture swiping direction can be defined to limit different switching objects. In some embodiments, gesture swiping in a first direction is used to switch parameter layout pages, and gesture swiping in a second direction is used to switch the user's interface. In some embodiments, the first direction is defined as the length direction of the monitor 100, and the second direction is defined as the width direction of the monitor 100.

[0115] In this embodiment, there are several ways to receive the measurement mode selection command input by the user, and no specific method is limited here. For example, another method is for the monitor to provide the user with an input box for the measurement mode identifier, and the user inputs the identifier of the measurement mode in the input box, so that the monitor determines the target measurement mode based on the user's input.

[0116] In this embodiment, if the user believes that the currently displayed parameter layout page is not suitable for the current actual measurement situation, or believes that the currently displayed parameter layout page does not conform to the user's usage habits, the user can switch the currently displayed measurement mode. That is, the measurement mode selection instruction includes the measurement mode switching instruction input by the user, which indicates switching from the current measurement mode to the target measurement mode.

[0117] 303. In response to the measurement mode selection command, display the target parameter layout page corresponding to the target measurement mode;

[0118] In this embodiment, if the measurement mode selection instruction includes a measurement mode switching instruction, the monitor responds to the measurement mode switching instruction and switches the currently displayed parameter layout page to the target parameter layout page corresponding to the measurement mode switching instruction.

[0119] If the measurement mode selection instruction is entered by the user through the measurement mode identifier list, then after determining the target measurement mode corresponding to the target identifier selected by the user, the target parameter layout page corresponding to the target measurement mode will be displayed to the user.

[0120] If the measurement mode selection command is entered by the user through a swipe gesture, the target parameter layout page corresponding to the measurement mode selection command will be displayed to the user after each swipe gesture.

[0121] In this embodiment, each parameter layout page can be displayed through one or more parameter report pages, and each parameter report page includes one or more measurement parameters. When the parameter layout page is displayed through multiple parameter report pages, the multiple parameter report pages can be switched on the display.

[0122] The monitor's interface includes a parameter report area, which displays the parameter report pages of the parameter layout page. Only one parameter report page is displayed at a time, but multiple pages can be switched between within the parameter report area. The parameter report area includes a preset number of rows; therefore, if the number of rows in the parameter layout page exceeds the preset number of rows in the parameter report area, the monitor will display the parameter layout page using at least two parameter report pages.

[0123] For example, the parameter report area includes a preset display of 5 rows, meaning it can display a maximum of 5 rows, with each row showing at least one measurement parameter. When the parameter layout page has 8 rows, the first 5 rows of the layout page will serve as one parameter report page, and the last 3 rows will serve as the next parameter report page. Therefore, the parameter layout page has 2 parameter report pages, and the parameter report area can switch between displaying either of these 2 parameter report pages.

[0124] When the parameter layout page includes at least two parameter report pages, the monitor receives a parameter report page selection instruction and selects the target parameter report page to be displayed according to the instruction.

[0125] The preset number of display rows in the parameter report area can be any value. Preferably, the preset number of display rows does not exceed 5. In addition, the parameter report area of ​​the monitor also includes a preset number of display columns. Preferably, the preset number of display columns is less than or equal to 2 columns.

[0126] Figure 11 The diagram illustrates the switching of parameter report pages. As shown, the user swipes the currently displayed parameter report page using a gesture. The monitor senses the user's input command to select a parameter report page and switches to the next displayed parameter report page accordingly. The gesture can be a swipe in any direction, such as up / down or left / right. Understandably, in some embodiments, switching can also be achieved in other ways, such as clicking a preset switching button or selecting via a rotary encoder, and is not limited to gesture swiping, as long as it achieves the selection function.

[0127] 304. When the target parameter layout page includes at least two measurement parameters, a parameter measurement prompt icon is displayed to prompt that at least one of the at least two measurement parameters should be measured.

[0128] After the target parameter layout page is displayed, users can use it to measure parameters. The target parameter layout page includes at least two measurement parameters. After the measurement results are obtained, they can be filled into the result display area of ​​the measurement parameters so that users can view the measurement results.

[0129] In this embodiment, the monitor can provide measurement prompts for the measured parameters, specifically indicating the parameter to be measured first. Specifically, when the target parameter layout page includes at least two measurement parameters, these parameters can be pre-set to have a measurement order, and the parameters will be measured sequentially according to this order. In some embodiments, parameter measurement prompts for measuring the at least two parameters are displayed sequentially on the target parameter layout page according to the measurement order.

[0130] After obtaining the measurement sequence of the measurement parameters, the monitor will sequentially provide measurement prompts for at least one measurement parameter in the target parameter layout page according to that measurement sequence. In some embodiments, the target measurement parameter is determined from the unmeasured measurement parameters based on the measurement sequence and the sorting position of the most recently measured measurement parameter in the measurement sequence.

[0131] Specifically, there are several ways to display the parameter measurement prompt icon. In some embodiments, the target measurement parameter can be displayed differently from other measurement parameters in the target parameter layout page; alternatively, the display area for the target measurement parameter can be displayed differently from other display areas in the target parameter layout page. The target measurement parameter is a measurement parameter determined according to the measurement order, and the display area refers to the region where the measurement parameter is located. This area can specifically be used to display the measurement result, the name of the measurement parameter, or the measurement method of the measurement parameter, etc. This embodiment does not limit the display method of the parameter measurement prompt icon, as long as the parameter measurement prompt icon can indicate the measurement parameter that is currently being measured first.

[0132] One method of distinguishing the display is to differentiate the border of the target measurement parameter display area from the borders of other display areas. The difference in border display can be a difference in border color or a difference in border line thickness.

[0133] Figure 12This diagram illustrates a method for distinguishing the display area according to the measurement sequence. As shown, the measurement order of the parameters in the target parameter layout page is: NIBP parameter, SpO2 parameter (blood oxygen saturation), PR parameter (pulse rate), Pleth parameter (blood oxygen waveform), Temp parameter (body temperature), and so on. Therefore, following this measurement order, the target measurement parameter prompted for the first measurement is the NIBP parameter, the target measurement parameters prompted for the second measurement are the SpO2 parameter, PR parameter, and Pleth parameter, and so on. Measurement prompts are displayed sequentially for the measurement parameters included in the target parameter layout page. Each time a measurement is prompted, the border of the target measurement parameter's display area is distinguished from the borders of other display areas. For example… Figure 12 The display is differentiated by the thickness of the border lines; that is, the border line of the display area for the target measurement parameter is thickened for each measurement prompt. During each measurement prompt, the target measurement parameter is measured first, and the measurement result is filled into the corresponding display area.

[0134] In addition, the measurement data, text, or background of the target measurement parameter display area can be displayed differently from the text or background of other display areas. This embodiment does not limit the specific method of differentiation, as long as it can distinguish the target measurement parameter display area from other display areas.

[0135] In this embodiment, besides differentiating the display area, the measurement prompts can also be presented in a different way: the monitor pops up a prompt box to indicate that the current target measurement parameter is parameter A. After the measurement of parameter A is completed, the monitor continues to pop up a prompt box to indicate that the next target measurement parameter is parameter B, and so on, until all measurement parameters are completed. This embodiment does not limit the specific method of measurement prompts.

[0136] This embodiment guides medical staff to perform parameter measurements in an orderly manner by providing measurement prompts, especially when there are many parameters to measure or when the hospital's work pace is busy. This is achieved through overall visual changes in the parameter layout page, preventing medical staff from missing any parameters and ensuring that parameter measurements are performed in an orderly and accurate manner.

[0137] In some embodiments, the measurement order of parameters may not be set, and the measured parameters and the unmeasured parameters may be displayed separately.

[0138] 305. Receive measurement data of the target measurement parameter from at least two measurement parameters;

[0139] During the measurement parameter prompts, users can measure the target parameter from at least two parameters listed on the target parameter layout page, based on the monitor's prompts, to obtain the target parameter measurement data. The target parameter measurement data can be obtained through the monitor's accessory probes; however, for parameters that the monitor itself cannot measure (such as height and weight), users need to measure them manually and record the data on the monitor. Regardless of the method used, the monitor can receive the target parameter measurement data.

[0140] Each measurement parameter has a corresponding display area on the target parameter layout page.

[0141] 306. Fill the display area corresponding to the target measurement parameter with the measurement data of the target measurement parameter;

[0142] After receiving the measurement data of the target measurement parameter, the measurement data is filled into the display area corresponding to the target measurement parameter so that the measurement data can be displayed in the display area corresponding to the target measurement parameter, making it convenient for users to view the measurement data.

[0143] 307. Mark the display area of ​​the target measurement parameter as filled to distinguish it from the display area of ​​the target measurement parameter.

[0144] After the target measurement parameters are filled with measurement data, the display area of ​​the target measurement parameters is marked as filled, so that the display area of ​​the target measurement parameters is distinguished from the display area of ​​the unfilled measurement data. This makes it easy to see which measurement parameters have been measured and which have not yet been measured, thus avoiding the occurrence of missing measurement parameters.

[0145] Specifically, one way to differentiate the display is to use different colors for the background of the display area for the target measurement parameters that have been filled with measurement data and the background of the display area for the unfilled measurement data.

[0146] Understandably, when setting the measurement order of parameters, steps 306-308 can also be used to differentiate the display.

[0147] For example, such as Figure 12 As shown, the display area with filled measurement data displays the measurement data, and the background of the display area (parameter name, measurement method, etc.) is black, while the background of the display area without filled measurement data is semi-transparent gray. By displaying the different background colors of the display areas, the areas with filled measurement data and those without can be clearly distinguished, making it easy for users to quickly identify any missed measurements.

[0148] The specific method of distinguishing the display is not limited. For example, the method could also be that the border of the display area filled with measurement data is highlighted, while the border of the display area without measurement data is not highlighted. As long as the two display areas are distinguished by visual difference, it is acceptable.

[0149] In this embodiment, to facilitate the distinction between the display area filled with measurement data and the display area without measurement data, in addition to displaying them differently, the display area filled with measurement data can be labeled "Filled" and the display area without measurement data can be labeled "Unfilled". This embodiment does not limit the method of distinction, as long as it can distinguish between the display areas filled with measurement data and the display areas without measurement data.

[0150] In this embodiment, users can customize and edit the parameter layout page, making the parameter layout page more suitable for the actual use scenario of the monitor and the user's own usage habits, thus improving the feasibility of the solution.

[0151] Besides the user-defined configuration and parameter layout page editing methods described above, another way for the monitor to obtain the parameter layout page is by importing a pre-configured parameter layout page into the monitor, thus allowing the monitor to receive the imported parameter layout page. This will be discussed in the following sections. Figure 2 and Figure 3 Based on the illustrated embodiment, another method for obtaining the parameter layout page will be further described in detail.

[0152] In some embodiments, a pre-configured parameter layout page can be directly imported into the monitor.

[0153] Please see Figure 13 Another embodiment of the interface display method in this application includes:

[0154] 1301. Display measurement modes, each of which is associated with a corresponding parameter layout page;

[0155] In this embodiment, the specific method for obtaining the parameter layout page is to transmit the parameter layout page corresponding to each measurement mode to the monitor, so that the monitor receives the imported parameter layout page and saves it for subsequent retrieval and display of the target parameter layout page.

[0156] 1302. Receive measurement mode selection command;

[0157] 1303. In response to the measurement mode selection command, display the target parameter layout page corresponding to the target measurement mode;

[0158] The operations performed in steps 1302 to 1303 are the same as those described above. Figure 3 The operations performed in steps 302 to 303 of the illustrated embodiment are similar and will not be described again here.

[0159] 1304. Execute the operation corresponding to the instruction entered on the target parameter layout page;

[0160] After showing the user the target parameter layout page, the user can enter commands on this page. These commands can instruct the monitor to switch the measurement method for a parameter, remeasure a parameter, or perform other operations. The operations performed by the monitor based on the commands entered by the user on the target parameter layout page will be described below.

[0161] In one specific method, a user can switch the measurement mode of a certain measurement parameter. Specifically, the monitor receives a measurement mode switching command input by the user for any measurement parameter. This command corresponds to the target measurement mode; that is, the command indicates that the user needs to switch the measurement mode of the current parameter to the target measurement mode. The measurement parameter can be any one of the measurement parameters on the target parameter layout page, and this parameter may have multiple measurement modes.

[0162] Upon receiving a measurement mode switching command, the monitor responds to the command by switching the current measurement mode of the measurement parameters to the target measurement mode corresponding to the command.

[0163] For example, regarding NIBP parameters, based on the measurement site of the subject, NIBP values ​​can be measured through the left / right arm or left / right leg; based on the subject's posture, NIBP values ​​can be measured in various postures such as standing / sitting / lying down, meaning there are multiple ways to measure NIBP parameters.

[0164] More specifically, the monitor can receive user input commands to switch measurement modes in several ways. In one way, the monitor displays measurement mode icons for the measurement parameters on the target parameter layout page. The user can click on these icons, and the monitor receives and responds to the click, displaying at least two measurement modes for the measurement parameter. The user can then select the target measurement mode from these options. The user's selection of the target measurement mode can be recognized as a measurement mode switching command, and the monitor determines that the selected target measurement mode corresponds to the command. The monitor then responds to the selection and designates the selected measurement mode as the target measurement mode.

[0165] For example, Figure 14-a and Figure 14-bThese are all schematic diagrams illustrating the process of the monitor switching measurement modes according to the measurement mode switching command. For example... Figure 14-a As shown, in the NIBP display area of ​​the target parameter layout page, icon 1401 represents the measurement method icon for NIBP parameters. When the user clicks this icon, the monitor responds to the user's click operation, displaying multiple measurement methods for NIBP parameters. The user can then select the target measurement method from these options. Assuming the user selects "Left Arm" and "Stand," meaning the subject stands while measuring blood pressure in the left arm, and clicks the "Save" button, the monitor recognizes the user's selection as a measurement method switching command and confirms that the selected target measurement method is "Left Arm" or "Stand." Subsequently, the monitor responds to the user's input measurement method switching command and switches the NIBP parameter measurement method to "Left Arm" or "Stand."

[0166] Similarly, such as Figure 14-b As shown, in the Temp display area of ​​the target parameter layout page, an icon for the measurement method of the Temp parameter is displayed. Clicking this icon allows the user to select the target measurement method from a variety of options. For example, if the user selects "Oral," the monitor will respond to the user's input command to switch the measurement method and change the Temp parameter measurement method to "Oral," i.e., measuring oral temperature.

[0167] Preferably, the measurement method icon can be a graphic representation, as graphical representation is more intuitive and clear. The measurement method icons can also be uniformly placed in the same position on the display area, which helps users develop usage habits and reduces the learning curve; for example, they can be uniformly placed in the lower left corner of the display area.

[0168] The measurement method icon may also include a measurement tool identifier to select the measurement tool for the measurement parameter. For example, there is a CCHD measurement tool for blood oxygen saturation, and orthostatic hypotension assessment tool, multiple blood pressure measurement recording tool, and blood pressure averaging tool for NIBP blood pressure. The measurement tool can be displayed in a separate display window or directly in the display area of ​​the corresponding measurement parameter.

[0169] In this embodiment, the command input to the monitor can also instruct the monitor to change the display mode of the measurement parameters. Therefore, the monitor receives a display mode change command for the input measurement parameters, which is used to switch the current display mode of the measurement parameters to the target display mode. The monitor responds to the display mode change command by changing the current display mode of the measurement parameters to the target display mode indicated by the command.

[0170] There are several specific implementations for a monitor to receive a command to change the display mode of a measurement parameter. In some implementations, each measurement parameter in the target parameter layout page has a corresponding display area. This display area can include any information related to the measurement parameter, such as the measurement result, measurement method, or the name of the measurement parameter. The display area for a measurement parameter is associated with at least two sub-pages for different display modes. The content of each sub-page includes the parameter items that the measurement parameter needs to display under the corresponding display mode. These parameter items can include any information related to the measurement parameter, such as the measurement data. The user can slide within the display area corresponding to the measurement parameter to switch the currently displayed sub-page. Since each sub-page corresponds to a display mode, the monitor recognizes the sliding operation as a display mode change command and further switches the sub-page accordingly, thus changing the display mode.

[0171] In some embodiments, the display mode can be determined by the measurement mode. Since each sub-page corresponds to a specific display mode, when a user slides to switch sub-pages within the display area, it is equivalent to switching measurement modes. This sliding action will also be recognized as a user input command to switch measurement modes. In some embodiments, the display mode may not be determined by the measurement mode; that is, one measurement mode may correspond to multiple display modes, and measurement parameters may have multiple display modes under the same measurement mode. This embodiment does not limit this.

[0172] The user's swiping operation in the display area can be swiping up and down, left and right, etc., and the direction of the swipe is not limited.

[0173] Upon receiving a command to change the display mode, the monitor responds by switching the currently displayed subpage of the measurement parameter display area to the subpage corresponding to the target display mode.

[0174] For example, Figure 15 This diagram illustrates the process by which the monitor switches measurement modes based on the user's swipe-in ​​input command. As shown, blood pressure parameters include various measurement modes such as standard single-shot blood pressure measurement and mean pressure measurement. Each measurement mode corresponds to a sub-page in the display area. Users can swipe left or right within the display area to switch between sub-pages. Figure 15 In the middle, when the user slides the display area, the monitor will switch the area subpage corresponding to the normal single blood pressure measurement method to the area subpage corresponding to the mean blood pressure measurement method.

[0175] In some embodiments, the display method is determined by the appearance design. For example, Figure 15The Pain Score display area below is also linked to various sub-pages with different display modes. In practice, doctors will choose an appropriate pain score display mode based on the patient's condition. Since there are multiple ways to display the pain score, when a different display mode needs to be selected, the user slides this display area, and the monitor switches the currently displayed sub-page for the Pain Score parameter to the sub-page corresponding to the other display mode.

[0176] The above describes the scenario where the user switches between the measurement and display methods of the measurement parameters. In other specific methods, the monitor may perform an operation based on the user's input on the target parameter layout page, or the monitor may remeasure the measurement parameters based on the user's instructions, updating the measurement results. Specifically, the monitor receives a remeasurement instruction from the user, corresponding to the parameter to be updated in the target parameter layout page. Then, in response to the remeasurement instruction, the monitor acquires the new measurement data for the parameter to be updated and replaces the original measurement data with the new measurement data. In some embodiments, in response to the remeasurement instruction, the current measurement data is replaced with the new measurement data.

[0177] For example, Figure 16 This diagram illustrates the process by which a blood pressure monitor remeasures the parameters to be updated based on a remeasurement command. Blood pressure and body temperature parameters can be measured multiple times. When inaccurate measurement results occur due to various influencing factors during the measurement process, doctors can remeasure the blood pressure and body temperature parameters. As shown in the diagram, when a blood pressure parameter needs to be remeasured, the user clicks the "START" button, enters the remeasurement command, the monitor responds to the command, remeasures the blood pressure parameter, obtains the new measurement data, and then replaces the original measurement data with the new measurement data.

[0178] Similarly, when the user inputs a command to remeasure the body temperature parameters, the monitor responds to the command and replaces the original measurement data of the body temperature parameters with the new measurement data.

[0179] In this embodiment, the user can remeasure the parameters at any time according to actual needs. In one implementation, the user can remeasure the parameters upon prompting from the monitor. Specifically, in this embodiment, the target parameter layout page corresponds to the target measurement mode, which includes a continuous measurement mode. Continuous measurement mode means that the parameter measurement results need to be continuously updated. For example, some patients require continuous monitoring. During continuous monitoring, physiological parameters such as blood pressure, blood oxygen, pulse rate, respiration, and body temperature need to be continuously monitored to observe changes in the patient's physiological state. Therefore, for continuous measurement mode, the parameter measurement results have a certain timeliness. In this embodiment, the target parameter layout page includes manual parameters for manually inputting measurement data. The monitor can set the validity period of the manual parameter measurement data according to the user's instructions. If the time interval between the current time point and the generation time point of the manual parameter measurement data exceeds the validity period, the user is prompted that the manual parameter measurement data is invalid. The user will then remeasure the manual parameters according to the prompt, and the monitor uses the remeasured results to update the manual parameter measurement data.

[0180] In other specific methods, the operation performed by the monitor based on the user's input instructions on the target parameter layout page can also be that the monitor opens or hides the display area according to the user's instructions. Specifically, each measurement parameter has a corresponding display area on the target parameter layout page, which includes a first display area and a second display area. The monitor displays the first display area and receives input display area operation instructions. When the display area operation instruction is to open the second display area on the target parameter layout page, the monitor responds to the instruction and opens the second display area; when the display area operation instruction is to hide the second display area, the monitor responds to the instruction and hides the second display area.

[0181] In this embodiment, users can input display area operation commands via gesture swipes. Alternatively, the monitor may provide a "hide" or "on" button; when the user clicks the "hide" or "on" button, the monitor will detect that the user has input a display area operation command. This embodiment does not limit the method by which the user inputs display area operation commands.

[0182] For example, Figure 17This diagram illustrates the process of a patient monitor opening / hiding the display area according to display area operation commands. As shown, the Pleth parameter display area shows the blood oxygen waveform. In practical applications, the use of the blood oxygen waveform depends on hospital regulations and the patient's specific condition. For example, some patients have irregular pulse symptoms, and experienced nurses can observe the blood oxygen waveform to monitor for this condition. However, for medical staff who do not need to view the blood oxygen waveform, the waveform on the interface may create visual information redundancy, preventing them from focusing on more important information. Therefore, in this embodiment, the patient monitor provides a display area operation function, allowing users to hide or open the display area as needed. As shown, when the user slides down according to the arrow prompt in the display area, the patient monitor recognizes this as a user input command to hide the Pleth parameter display area, and the patient monitor responds by hiding the Pleth parameter display area. When the user slides up according to the arrow prompt, the patient monitor recognizes this as a user input command to open the display area, and the patient monitor responds by opening the Pleth parameter display area.

[0183] In this embodiment, the user can slide to input display area operation commands from various directions such as up / down / left / right, and the commands input from each direction to indicate whether to open or hide the display area can be set independently, and this embodiment does not limit this.

[0184] In this embodiment, the measurement mode determined based on the measurement scenario and continuous measurement working mode corresponds to the first parameter layout page. When the target parameter layout page is the first parameter layout page, the alarm limit information of the measurement parameters in the first parameter layout page is displayed. The alarm limit information is the alarm threshold range, indicating that an alarm is issued when the measurement data of the measurement parameter exceeds the alarm threshold range. For example, the alarm limit information for the SpO2 parameter is 90% to 100%. When the actual measured value of the SpO2 parameter by the subject is within the range indicated by the alarm limit information, it indicates that this physiological parameter of the subject is normal; if it exceeds the range indicated by the alarm limit information, it indicates that the SpO2 parameter is abnormal, and an alarm needs to be issued to remind the user.

[0185] Alarm limit information for measurement parameters can be displayed in any measurement mode. It is especially suitable for measurement modes determined according to the measurement scenario and continuous measurement working mode. In continuous measurement working mode, the monitor continuously monitors the physiological parameters of the subject and measures them in real time. However, the user may not always pay attention to the changes in the parameters. Once the physiological parameters are abnormal, an alarm needs to be issued to remind the user to pay attention to the abnormal parameters and take timely countermeasures.

[0186] In other specific methods, the operation performed by the monitor based on the instructions entered by the user on the target parameter layout page can also be that the user enters a lock instruction for the target parameter in the currently displayed parameter report page. This lock instruction is used to lock the layout position of the target parameter so that the layout position of the target parameter remains unchanged.

[0187] There are no restrictions on how the user inputs the lock command. For example, the user can click the button that indicates the layout position of the lock parameter, and the monitor will recognize the user's click on the button as the user inputting the lock command; or the user can long press the display area of ​​the target parameter, and the monitor will recognize the user's long press operation as the user inputting the lock command, and so on.

[0188] Upon receiving the lock command, the monitor responds to the lock command and locks the layout position of the target parameter, so that when the parameter layout page includes at least two parameter report pages and when switching between the at least two parameter report pages, the layout position of the target parameter in the parameter report area remains unchanged.

[0189] Users can lock the layout position of target parameters, and also unlock target parameters in locked layout positions. That is, after the layout position of a target parameter is locked, the user can input an unlock command for that target parameter, and the monitor will respond to the unlock command, releasing the lock on the target parameter's layout position. Subsequently, when switching the currently displayed parameter report page, the target parameter will also switch accordingly.

[0190] By locking and unlocking the layout of target parameters, the system ensures that the parameters that the user needs to continuously monitor are always displayed when switching pages, thus meeting the user's requirements for the monitor's interface display.

[0191] When the monitor is not in use, i.e., in standby mode, it can display the remaining power of the smart battery and / or the remaining battery usage time on the interface, or display precautions before using the monitor.

[0192] For example, Figure 18This is a schematic diagram of the monitor's interface in standby mode. As shown, the monitor displays the remaining battery power, remaining battery life, and precautions before use. In practical applications, when medical staff need to use the monitor, they go to the designated storage area and select the device with the longest remaining battery life based on the different remaining usage times displayed on the screens. Simultaneously, the monitor's interface also reminds medical staff of precautions before use, which may include various aspects such as safety and cleaning matters (hospital hygiene and disinfection requirements, probe accessory cleaning and inspection, and review of overall machine cleaning and disinfection records), and device availability (remaining battery power, whether the probes are complete, and whether the items in the trolley basket are complete).

[0193] In this embodiment, after the target parameter layout page is displayed, the user can directly perform some operations on the target parameter layout page, such as modifying the parameter measurement method, re-measuring, hiding / opening the display area, etc., which facilitates the user's control over parameter display and parameter measurement and improves the user's experience of using the monitor.

[0194] The above describes the display, control, editing, and operation of the parameter layout page in the embodiments of this application. The parameter layout pages corresponding to several main measurement modes will be described below.

[0195] Figure 19 The figure shows a schematic diagram of the parameter layout page corresponding to a measurement mode. The measurement mode is the first default measurement mode. The parameters in the parameter layout page corresponding to the first default measurement mode include one or more of the following parameters: blood pressure value (i.e., NIBP parameter), blood oxygen (i.e., blood oxygen saturation SpO2 and blood oxygen waveform Pleth), pulse rate (i.e., PR parameter), body temperature (i.e., Temp parameter), respiration (i.e., respiratory rate Resp.), and pain score (i.e., Pain Score parameter). The blood pressure value includes the average blood pressure value and / or the ordinary single blood pressure value.

[0196] In addition, the parameter layout page corresponding to the first default measurement mode can also include parameters such as weight, height, and blood sugar.

[0197] The first default measurement mode is suitable for general practice clinics or long-term care nursing homes in the United States. General practice clinics in the United States typically measure patients' blood pressure, blood oxygen, pulse rate, body temperature, and record parameters such as respiration and pain scores. Therefore, the parameter layout page corresponding to the first default measurement mode can meet the needs of this department.

[0198] The parameters in the parameter layout page corresponding to the first default measurement mode include continuously monitored parameters. For example, in certain conditions, doctors may need to constantly monitor changes in a patient's blood pressure. In this case, the blood pressure parameter needs to be continuously monitored and its measurement value needs to be constantly updated to observe changes in the patient's blood pressure.

[0199] Figure 20 The figure shows a schematic diagram of the parameter layout page corresponding to another measurement mode. This measurement mode is the second default measurement mode. The parameters in the parameter layout page corresponding to the second default measurement mode include one or more of the following: blood pressure value, blood oxygen, pulse rate, body temperature, respiration and pain score, and early warning score (i.e., EWS parameter). The blood pressure value includes a single blood pressure value and / or a dual blood pressure value.

[0200] The second default measurement mode is suitable for general practice departments in the UK, which typically measure blood pressure, blood oxygen saturation, pulse rate, and body temperature, and record parameters such as respiration and pain scores. For hospitals in the UK and other European countries, dual blood pressure measurements and EWS score calculations are required. Therefore, for general practice departments in the UK, setting the blood pressure display area to include dual blood pressure parameters, as well as setting the EWS score display area, can meet the measurement needs of these departments.

[0201] Figure 21 The figure shows a schematic diagram of the parameter layout page corresponding to another measurement mode. This measurement mode is the third default measurement mode. The parameters in the parameter layout page corresponding to the third default measurement mode include: blood pressure, blood oxygen, pulse rate, body temperature, respiration, and one or more of the following parameters: height, weight, and body mass index (i.e., BMI parameter). The blood pressure value includes the average blood pressure value and / or the ordinary single blood pressure value.

[0202] The third default measurement mode is suitable for doctors' offices, where blood pressure, blood oxygen, pulse rate, body temperature, and respiratory parameters are typically measured. However, unlike other departments, doctors in this department pay particular attention to patients' height, weight, and BMI, and may measure mean blood pressure. Therefore, this department may need to be equipped with both mean blood pressure and standard single-shot blood pressure measurement methods, which can be switched according to the patient's and doctor's preferences.

[0203] The above describes several main default measurement modes. In practical applications, the corresponding measurement mode can be executed by default according to the actual usage scenario of the monitor. For example, when the monitor is used in a general medical department in the United States, it can be configured to display the parameter layout page corresponding to the first default measurement mode by default when the monitor is powered on, so that the user does not need to select a measurement mode, making the use of the monitor more convenient.

[0204] The interface display method in the embodiments of this application has been described above. The monitor in the embodiments of this application is described below. Please refer to [link / reference]. Figure 22 One embodiment of the monitor in this application includes:

[0205] Human-computer interaction module 2201 and processor 2202;

[0206] The human-computer interaction module 2201 is used to receive measurement mode selection instructions and / or function control selection instructions input by the user, and to display the working interface;

[0207] The processor 2202 is used to respond to the function control selection instruction and execute the processing flow corresponding to the selected target function control.

[0208] The working interface includes:

[0209] The mode selection area displays measurement modes and receives measurement mode selection instructions. Each measurement mode is associated with a corresponding parameter layout page. The measurement mode characterizes at least the operating mode of the monitor. The operating modes include continuous measurement mode and non-continuous measurement mode. Multiple first measurement modes are determined based on the continuous measurement mode, and each of the multiple first measurement modes corresponds to a multiple of the first parameter layout pages. Multiple second measurement modes are determined based on the non-continuous measurement mode, and each of the multiple second measurement modes corresponds to a multiple of the second parameter layout pages. The first parameter layout pages and the second parameter layout pages are at least partially different. The measurement mode selection instruction is used to select a target measurement mode from a measurement mode identifier list, which includes multiple first measurement modes and multiple second measurement modes.

[0210] Status display area: The status display area is used to display the status information of the monitor;

[0211] The parameter report area is used to display the target parameter layout page corresponding to the target measurement mode according to the target measurement mode. The target parameter layout page includes a display area for at least one measurement parameter and measurement data located in the display area. When the target parameter layout page is a first parameter layout page, the target parameter layout page includes a first parameter report area; when the target parameter layout page is a second parameter layout page, the target parameter layout page includes a second parameter report area. The first parameter report area and the second parameter report area are at least partially different.

[0212] The function control area includes at least one function control.

[0213] The following is based on Figure 23Taking the schematic diagram of the working interface shown as an example, the working interface of the monitor in this embodiment will be described in detail. As shown in the figure, the first mode selection area 2301 is associated with at least one measurement mode. When the user clicks on the first mode selection area 2301, the working interface will display multiple measurement modes for the user to select. The figure shows the corresponding labels for multiple measurement modes such as "General Round" and "Continuous Monitoring".

[0214] The first status display area 2302 displays the status information of the monitor. This status information may include any information related to the status of the monitor, such as the monitor's battery level, time information, or user information when the monitor is in use.

[0215] The first parameter report area 2303 is used to display a parameter layout page, which can display at least one display area for a measurement parameter, as well as measurement data and measurement methods within the display area. The parameter layout page includes at least one parameter report page, and each parameter report page includes at least one display area. When the parameter layout page includes at least two parameter report pages, the parameter report area 2303 displays one of the multiple parameter report pages. Switching between the at least two parameter report pages can be done according to parameter report page selection instructions, as described above. The parameters displayed in the display area can be physiological parameters, evaluation results, or other related information, and are not limited here. In some embodiments, Figure 23 As you can see, the parameter report page on the parameter layout page has 6 display areas, including: NIBP blood pressure display area, SpO2 blood oxygen display area, PR pulse rate display area, Temp body temperature display area, Resp respiratory rate display area, and pain score display area.

[0216] The first functional control area 2304 includes at least one functional control, such as Figure 23 The controls shown are Review, Patient, Save, and Clear.

[0217] It should be noted that, Figure 23 The specific information shown in the interface (such as specific parameters, specific function controls, and specific status information) is merely for illustrative purposes and does not represent the content that the monitor's interface in this embodiment will necessarily display. Figure 23 The interface shown is not intended to limit this embodiment.

[0218] Users can input function control selection commands through the human-computer interaction module 2201 to select a target function control, thereby the processor 2202 executes the processing flow corresponding to that target function control. Specifically, when the user clicks the "Review" function control, the processor will display the historical records of parameter measurement data stored on the monitor; when the user clicks the "Case Reference" function control, the processor will display the parameter measurement data of the target patient; when the user clicks the "Save" function control, the processor will save the measurement data in the target parameter layout page; and when the user clicks the "Clear" function control, the processor will clear the measurement data in the target parameter layout page.

[0219] The display area for the measurement parameters includes a measurement method icon for displaying the measurement methods of the measurement parameters. The measurement method icon is also used to display at least two measurement methods of the measurement parameters after receiving a click operation, so that one of the measurement methods can be selected as the target measurement method.

[0220] In some embodiments, the display area for measurement parameters includes at least two sub-pages, each sub-page being used to display the measurement parameters in a corresponding display mode, and the at least two sub-pages being switched according to the display mode change instruction to determine the target display mode.

[0221] In some embodiments, the display area of ​​the measurement parameters further includes a remeasurement control (not shown) for: receiving an input remeasurement instruction and replacing the current measurement data with new measurement data.

[0222] In some embodiments, the display area of ​​the measurement parameters further includes an expansion control 2305, which is used to open the hidden area of ​​the display area of ​​the measurement parameters when the operation instruction for the display area of ​​the measurement parameters is to open the display area of ​​the measurement parameters.

[0223] When the operation instruction for the display area of ​​the measurement parameter is to hide the display area of ​​the measurement parameter, the hidden area of ​​the measurement parameter is hidden.

[0224] In some embodiments, when receiving an input display area operation instruction, the display area of ​​the measurement parameter is specifically used to: receive the display area operation instruction of the measurement parameter input via a gesture swipe.

[0225] In some embodiments, when the parameter layout page includes at least two parameter report pages, the parameter report area displays one parameter report page, and the at least two parameter report pages are switched in the parameter report area.

[0226] In some embodiments, the display area of ​​the measurement parameters further includes a locking control (not shown) for: receiving a locking instruction for a target parameter in the currently displayed parameter layout page, the locking instruction indicating that the layout position of the target parameter is locked so that when the parameter layout page includes at least two parameter report pages, the layout position of the target parameter remains unchanged in the parameter report area when switching between the at least two parameter report pages.

[0227] In some embodiments, the locking control is further configured to: unlock the layout position of the target parameter according to the received unlock instruction for the target parameter, wherein when switching the at least two parameter report pages, the layout position of the target parameter in the parameter report area changes with the switching of the at least two parameter report pages.

[0228] In some embodiments, the first parameter layout page includes a first function control area, and the second parameter layout page includes a second function control area, wherein the first function control in the first function control area is at least partially different from the second function control in the second function area.

[0229] In some embodiments, the first function control area includes at least one of a review function control, a case reference function control, a save function control, and a clear function control:

[0230] The review function control is used to display the historical records of parameter measurement data stored in the monitor;

[0231] The case reference function control is used to display the parameter measurement data of the target patient;

[0232] The save function control is used to save the measurement data in the target parameter layout page;

[0233] The clear function control is used to clear the measurement data in the target parameter layout page.

[0234] In some embodiments, the mode selection area is specifically used to display a list of measurement mode identifiers according to the measurement scenario of the monitor, the list of measurement mode identifiers including the identifier of each measurement mode in the measurement scenario;

[0235] The human-computer interaction module is specifically used to receive the target identifier selected from the measurement mode identifier list, where the target identifier corresponds to the target measurement mode;

[0236] The measurement scenarios include hospital work zones, which at least include: general wards and emergency departments;

[0237] When the measurement scenario is a general ward, the continuous measurement working modes in the measurement mode identifier list include the continuous monitoring mode, and the non-continuous measurement working modes include the ward round mode and the initial assessment mode.

[0238] When the measurement scenario is the emergency department, the continuous measurement working modes in the measurement mode identifier list include the continuous monitoring mode, and the non-continuous measurement working modes include the triage mode and the spot measurement mode.

[0239] In another preferred embodiment of this example, the parameter reporting area further includes: a parameter measurement prompt icon, used to provide measurement prompts for the measurement parameters according to the measurement order of at least two measurement parameters, prompting that at least one of the at least two measurement parameters should be measured.

[0240] In another preferred embodiment of this invention, the parameter measurement prompt indicator is further used for:

[0241] The display area for the target measurement parameters is displayed differently from other display areas in the target parameter layout page.

[0242] The target measurement parameter is the measurement parameter that needs to be measured at present. It is determined from the unmeasured measurement parameters according to the measurement order and the sorting position of the currently measured measurement parameters in the measurement order.

[0243] In another preferred embodiment of this example, the parameter measurement prompt indicator includes at least one of the border of the display area for the measurement parameter and the color of the display area for the measurement parameter.

[0244] In another preferred embodiment of this invention, the parameter measurement prompt indicator is further used for:

[0245] Mark the display area of ​​the target parameter layout page that is not filled with measurement data as unfilled; and / or, when the measurement data of the target measurement parameter in at least one measurement parameter is received and the measurement data of the target measurement parameter is filled into the display area corresponding to the target measurement parameter, mark the display area of ​​the target measurement parameter as filled.

[0246] In another preferred embodiment of this invention, the function control area further includes an editing function control;

[0247] When responding to a user's instruction to select a function control and executing the processing flow corresponding to the target function control selected by the user, the processor is specifically used for:

[0248] When the human-computer interaction module receives a user's click operation on the editing function control, it displays the editing page to the user through the working interface, receives the editing information for the editing page, and the editing information is used to indicate the relevant information for the operation of the measurement parameters on the editing page; based on the editing information, the measurement parameters are operated on the editing page to obtain the parameter layout page.

[0249] In another preferred embodiment of this example, the editing information includes parameter layout information, which is used to represent the layout information of several measurement parameters on the editing page;

[0250] When the parameter layout page is obtained by manipulating the measurement parameters on the editing page based on the editing information, the processor is specifically used for:

[0251] Based on the parameter layout information, several measurement parameters are laid out on the editing page to obtain the parameter layout page.

[0252] In another preferred embodiment of this example, the editing information includes change information of the measurement parameters, which is used to indicate that the measurement parameters have been changed to the target parameters;

[0253] When the parameter layout page is obtained by manipulating the measurement parameters on the editing page based on the editing information, the processor is specifically used for:

[0254] Based on the change information, the measurement parameters are changed to the target parameters, resulting in the parameter layout page.

[0255] In another preferred embodiment of this example, when receiving editing information for the editing page, the processor is specifically used to:

[0256] Display a list of alternative parameters to the user; the list of alternative parameters includes multiple alternative parameters.

[0257] Receive the target parameter selected by the user from the list of alternative parameters. The target parameter is one of the multiple alternative parameters.

[0258] In another preferred embodiment of this example, the editing information includes position transformation information of the measurement parameters in the editing page, and the position transformation information is used to indicate the layout position transformation of the measurement parameters on the editing page;

[0259] When the parameter layout page is obtained by manipulating the measurement parameters on the editing page based on the editing information, the processor is specifically used for:

[0260] The layout position of the measurement parameters on the editing page is changed based on the position change information to obtain the parameter layout page.

[0261] In another preferred embodiment of this example, when receiving editing information for the editing page, the processor is specifically used to:

[0262] It receives user input gesture drag operations, which are used to indicate moving the measurement parameters to the target position;

[0263] When the layout position of the measurement parameters on the editing page is changed according to the position transformation information, the processor is specifically used for:

[0264] The measurement parameters are moved from their current layout position to the target position using a gesture-based drag-and-drop operation.

[0265] In another preferred embodiment of this example, the editing information includes measurement setting information for the measurement parameters, which is used to set the measurement method for the measurement parameters;

[0266] When the parameter layout page is obtained by manipulating the measurement parameters on the editing page based on the editing information, the processor is specifically used for:

[0267] Based on the measurement settings information, the measurement method of the measurement parameters is set to the measurement method corresponding to the measurement settings information, and the parameter layout page is obtained.

[0268] In another preferred embodiment of this example, the editing information includes information on adding measurement parameters, which indicates that measurement parameters are added on the editing page;

[0269] When the parameter layout page is obtained by manipulating the measurement parameters on the editing page based on the editing information, the processor is specifically used for:

[0270] Based on the added information, the measurement parameters are added to the editing page to obtain the parameter layout page.

[0271] In another preferred embodiment of this example, the measurement parameters include parameters for manually inputting measurement data, and the editing information includes measurement parameter type setting information. The type setting information is used to set the parameter type of the measurement parameters, and the parameter type includes numerical type and selection type.

[0272] When the parameter layout page is obtained by manipulating the measurement parameters on the editing page based on the editing information, the processor is specifically used for:

[0273] Set the parameter type of the measurement parameter to the parameter type corresponding to the type setting information to obtain the parameter layout page.

[0274] In another preferred embodiment of this example, when the processor sets the parameter type of the measurement parameter to the parameter type corresponding to the type setting information, the processor specifically performs the following:

[0275] Set the parameter type of the measurement parameter to numeric;

[0276] The processor is also used for:

[0277] Receive detailed setting information for measurement parameters. This detailed setting information is used to set the parameter details of the measurement parameters. The parameter details include one or more of the following: numerical unit, numerical input range, and numerical precision.

[0278] Set the parameter details of the measurement parameters to the parameter details corresponding to the detailed settings information.

[0279] In another preferred embodiment of this example, when the processor sets the parameter type of the measurement parameter to the parameter type corresponding to the type setting information, the processor specifically performs the following:

[0280] Set the parameter type of the measurement parameter to selectable;

[0281] The processor is also used for:

[0282] Configure multiple options related to the measurement data of the measurement parameters.

[0283] In another preferred embodiment of this example, the processor is further configured to:

[0284] The interface displays a preview of the edited page to the user.

[0285] In some embodiments, the display area of ​​the measurement parameters is further configured to: receive at least one of a measurement mode switching instruction and a display mode change instruction for the measurement parameters input; in response to the measurement mode switching instruction, the current measurement mode of the measurement parameters displayed in the display area of ​​the measurement parameters is switched to the target measurement mode of the measurement parameters; and, in response to the display mode change instruction, the current display mode of the measurement parameters displayed in the display area of ​​the measurement parameters is switched to the target display mode of the measurement parameters.

[0286] In this embodiment, the operations performed by the human-computer interaction module 2201 and the processor 2202 are the same as those described above. Figure 2 , Figure 3 and Figure 13 The embodiments shown are similar and will not be repeated here.

[0287] In another preferred embodiment of this example, the target measurement mode is the first default measurement mode, and the parameter report area is specifically used to display the parameter layout page corresponding to the first default measurement mode;

[0288] The parameters in the parameter layout page corresponding to the first default measurement mode include one or more of the following: blood pressure value, blood oxygen, pulse rate, body temperature, respiration and pain score. The blood pressure value includes the average blood pressure value and / or the ordinary single blood pressure value.

[0289] In another preferred embodiment of this example, the target measurement mode is the second default measurement mode, and the parameter report area is specifically used to display the parameter layout page corresponding to the second default measurement mode;

[0290] The parameters in the parameter layout page corresponding to the second default measurement mode include one or more of the following: blood pressure value, blood oxygen, pulse rate, body temperature, respiration and pain score, and early warning score. Blood pressure value includes single blood pressure value and / or dual blood pressure value.

[0291] In another preferred embodiment of this example, the target measurement mode is the third default measurement mode, and the parameter report area is specifically used to display the parameter layout page corresponding to the third default measurement mode.

[0292] The parameters in the parameter layout page corresponding to the third default measurement mode include: blood pressure, blood oxygen, pulse rate, body temperature, respiration, and one or more of the following parameters: height, weight, and body mass index. Blood pressure includes average blood pressure and / or ordinary single blood pressure.

[0293] The parameter layout pages corresponding to the first default measurement mode, the second default measurement mode, and the third default measurement mode have been described in the aforementioned embodiments and will not be repeated here.

[0294] In this embodiment, the user can select the target measurement mode according to the usage scenario of the monitor or their own work habits. After the human-computer interaction module 2201 receives the measurement mode selection instruction input by the user, the processor 2202 will determine the target parameter layout page that the user needs to display based on the measurement mode selection instruction, and display the target parameter layout page to the user through the parameter report area. Therefore, the monitor can display different parameter layout pages according to different usage scenarios or according to the user's work habits, meeting the user's different measurement needs and enabling the monitor to be tailored to the user's usage situation.

[0295] Based on the foregoing Figure 22 and Figure 23 The embodiments shown in this application also provide another embodiment of the interface display method. This other embodiment of the interface display method includes:

[0296] The monitor displays a working interface; the working interface includes at least one of the following: a mode selection area, a status display area, a parameter report area, and a function control area;

[0297] Based on the mode selection area, at least one measurement mode is displayed to obtain the parameter layout page corresponding to each measurement mode; the measurement mode is determined according to the measurement scenario and the working mode, and the working mode includes continuous measurement working mode and non-continuous measurement working mode; the measurement mode determined according to the measurement scenario and the continuous measurement working mode corresponds to the first parameter layout page, and the measurement mode determined according to the measurement scenario and the non-continuous measurement working mode corresponds to the second parameter layout page; the first parameter layout page and the second parameter layout page are at least partially different.

[0298] Based on the status display area, at least one status information of the monitor is displayed;

[0299] In response to an instruction to select a target measurement mode in at least one measurement mode, a target parameter layout page corresponding to the target measurement mode is displayed based on the parameter report area. The target parameter layout page includes a display area for at least one measurement parameter and measurement data located in the display area.

[0300] Display at least one functional control based on the functional control area;

[0301] In response to an instruction to select a target functional control from at least one functional control, the processing flow corresponding to the target functional control is executed.

[0302] The working interface in this embodiment is the same as that described above. Figure 22 and Figure 23 The working interface described in the illustrated embodiment is similar and will not be repeated here.

[0303] The monitor in the embodiments of this application is described below. Please refer to... Figure 24 , Figure 24 This document relates to a system framework diagram of a parameter processing module in a patient monitor. This parameter processing module is used to process parameters within the patient monitor. One embodiment of the patient monitor in this application includes:

[0304] The monitor has an independent housing with a sensor interface area on the housing panel, which integrates multiple sensor interfaces for connecting to various external physiological parameter sensor accessories 2411. The housing panel also includes a small IXD display area, a display 2418, an input interface circuit 2420, and an alarm circuit 2419 (such as an LED alarm area), etc.

[0305] The parameter processing module of the monitor serves as an external communication and power interface for communicating with the main unit and drawing power from it. The parameter processing module also supports external parameter modules, allowing for the creation of a plug-in monitor main unit, which can then be integrated into the monitor. Alternatively, it can be connected to the main unit via a cable, serving as an external accessory for the monitor.

[0306] The internal circuitry of the parameter processing module is housed within the casing, such as... Figure 1As shown, the system includes signal acquisition circuits 2412 corresponding to at least two physiological parameters, a front-end signal processing circuit 2413, and a main processor 2415. The signal acquisition circuits 2412 can be selected from ECG circuits, respiration circuits, body temperature circuits, blood oxygenation circuits, non-invasive blood pressure circuits, invasive blood pressure circuits, etc. These signal acquisition circuits 2412 are electrically connected to corresponding sensor interfaces for electrical connection to sensor accessories 2411 corresponding to different physiological parameters. Their output terminals are coupled to the front-end signal processor, and the communication port of the front-end signal processor is coupled to the main processor. The main processor is electrically connected to external communication and power interfaces. Various physiological parameter measurement circuits can adopt general-purpose circuits in the prior art. The front-end signal processor completes the sampling and analog-to-digital conversion of the output signals of the signal acquisition circuits and outputs control signals to control the physiological signal measurement process. These parameters include, but are not limited to: ECG, respiration, body temperature, blood oxygenation, non-invasive blood pressure, and invasive blood pressure parameters. The front-end signal processor can be implemented using a microcontroller or other semiconductor devices, such as the PHLIPS LPC2136 or ADI ADuC7021 mixed-signal microcontrollers, or ASICs or FPGAs. The front-end signal processor can be powered by an isolated power supply. The sampled data, after simple processing and packaging, is sent to the main processor through an isolated communication interface. For example, the front-end signal processor circuit can be coupled to the main processor 2415 through an isolated power supply and communication interface 2414. The reason for powering the front-end signal processor with an isolated power supply is that the transformer-isolated DC / DC power supply isolates the patient from the power supply equipment. The main purposes are: 1. Isolating the patient by floating the application part through the isolation transformer to minimize patient leakage current; 2. Preventing the voltage or energy during defibrillation or electrosurgical application from affecting the main control board and other intermediate circuit boards and components (ensuring this through creepage distances and clearances). The main processor calculates physiological parameters and sends the calculation results and waveforms to the host (such as a host with a monitor, PC, central station, etc.) via the external communication and power interface. The external communication and power interface 2416 can be one or a combination of Ethernet, Token Ring, Token Bus, and Fiber Distributed Data Interface (FDDI) as the backbone of these three networks; it can also be one or a combination of wireless interfaces such as infrared, Bluetooth, Wi-Fi, and WMTS communication; or it can be one or a combination of wired data connection interfaces such as RS232 and USB. The external communication and power interface 2416 can also be one or a combination of wireless and wired data transmission interfaces. The host can be any computer device such as a monitor, electrocardiograph, ultrasound diagnostic instrument, or computer; with the appropriate software installed, a monitoring device can be formed.The host can also be a communication device, such as a mobile phone. The parameter processing module sends data to a mobile phone that supports Bluetooth communication via a Bluetooth interface, thereby realizing remote data transmission.

[0307] Each of the aforementioned units or modules for performing the various steps can be stored in one or more memories 2417, and the above embodiments are respectively used to implement the aforementioned monitor or monitoring system, wherein each functional module includes each for performing the aforementioned steps. Figure 2 , Figure 3 and Figure 13 The instruction set for the corresponding steps in the interface display method of the illustrated embodiment does not require the module or program (i.e., instruction set) to be a discrete software program, process, or module. Therefore, in various embodiments, the sub-blocks of these modules can be combined or rearranged. Thus, in some embodiments of the present invention, the memory 2417 can store a subset of the modules or data structures as described above.

[0308] This application also provides a computer storage medium, one embodiment of which includes: the computer storage medium storing instructions, which, when executed on a computer, cause the computer to perform the aforementioned... Figure 2 , Figure 3 and Figure 13 The operation performed by the monitor in the illustrated embodiment.

[0309] The following is based on Figure 25 Taking the schematic diagram of the working interface shown as an example, the working interface of the monitor in the embodiments of this application will be further described in detail. Figure 25 This is the working interface in the continuous monitoring mode of this application embodiment. For example... Figure 25 As shown, in some embodiments, in continuous monitoring mode, the second parameter reporting area 2503 is different. Figure 23 The first parameter report area 2303 is configured in the point measurement working mode. In some embodiments, the second parameter report area 2503 is also used to display alarm limit information. In some embodiments, the second parameter report area 2503 is also used to display parameter trend data, and the display area is used to display the parameter trend data, such as bar charts, waveforms, etc.

[0310] In some embodiments, the second functional controls included in the second functional control area 2504 are at least partially different from the first functional controls in the aforementioned first functional control area 2304. The second functional control area 2504 includes an alarm functional control and an extended functional control 2507. The alarm functional control further includes an alarm pause functional control 2505 and an alarm reset functional control 2506. The alarm pause functional control 2505 controls the monitor to not issue an alarm for a preset time, and the alarm reset functional control 2506 controls the monitor to reset the current alarm. The extended functional control 2507 allows viewing and using more functional controls, such as the main menu.

[0311] In continuous monitoring mode, the second parameter reporting area 2503 may include Figure 23 At least one display area in the first parameter report area 2303 of the point measurement working mode, for example, the first parameter report area 2303 includes a NIBP blood pressure display area, and the second parameter report area 2503 also includes a NIBP blood pressure display area. In some embodiments, the display area size and / or font size of the same display area in the second parameter report area 2503 and the first parameter report area 2303 are the same. For example, the size of the NIBP blood pressure display area included in the first parameter report area 2303 is the same as the size of the NIBP blood pressure display area included in the second parameter report area 2503, and the displayed font size is also the same. In some embodiments, the font size in the display area can be adjusted.

[0312] The parameters in this application include physiological parameters, evaluation results, and other results obtained through direct or indirect measurement.

[0313] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the systems, devices, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and will not be repeated here.

[0314] In the several embodiments provided in this application, it should be understood that the disclosed systems, apparatuses, and methods can be implemented in other ways. For example, the apparatus embodiments described above are merely illustrative; for instance, the division of units is only a logical functional division, and in actual implementation, there may be other division methods. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. Furthermore, the coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection between apparatuses or units through some interfaces, and may be electrical, mechanical, or other forms.

[0315] The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the units can be selected to achieve the purpose of this embodiment according to actual needs.

[0316] Furthermore, the functional units in the various embodiments of this application can be integrated into one processing unit, or each unit can exist physically separately, or two or more units can be integrated into one unit. The integrated unit can be implemented in hardware or as a software functional unit.

[0317] If the integrated unit is implemented as a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of this application. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.

Claims

1. A method for displaying an interface, characterized in that, Used in patient monitors, including: The monitor displays a working interface on its screen, and the working interface is used for: The monitor displays measurement modes, each associated with a corresponding parameter layout page; the measurement modes at least characterize the operating mode of the monitor; the operating modes include continuous measurement mode and discontinuous measurement mode; multiple first measurement modes are determined based on the continuous measurement mode, each corresponding to a multiple first parameter layout page; multiple second measurement modes are determined based on the discontinuous measurement mode, each corresponding to a multiple second parameter layout page; the first parameter layout page and the second parameter layout page are at least partially different; Receive a measurement mode selection instruction, the measurement mode selection instruction being used to select a target measurement mode from a measurement mode identifier list, the measurement mode identifier list including the plurality of first measurement modes and the plurality of second measurement modes; In response to the measurement mode selection command, the target parameter layout page corresponding to the target measurement mode is displayed; The non-continuous measurement working modes include ward round mode, initial assessment mode and / or triage mode; The ward round mode is used to sequentially measure the vital signs parameters of multiple patients to obtain the vital signs parameters of each patient. The initial assessment mode is used to measure the vital signs parameters of a patient once and to conduct an initial assessment of the patient's physical condition based on the measurement results. The triage mode is used to measure the vital signs parameters of a patient once and to assess the severity or level of the patient's condition in order to determine the appropriate department for the patient. The working interface is also used to switch the corresponding measurement mode according to the measurement scenario of the monitor. When the measurement scenario is a general ward scenario, the measurement mode identifier list provides the continuous monitoring mode option in the continuous measurement working mode, as well as the ward round mode option and the initial assessment mode option. When the measurement scenario is an emergency department scenario, the measurement mode identifier list provides the continuous monitoring mode option under the continuous measurement working mode, as well as the triage mode option and the spot measurement mode option under the non-continuous measurement working mode.

2. The interface display method according to claim 1, characterized in that, The monitoring device's measurement scenarios include hospital work zones, which at least include: the general ward and the emergency department; When the measurement scenario is the general ward, the continuous measurement working mode includes the continuous monitoring mode; the non-continuous measurement working mode includes the ward round mode and the initial assessment mode. When the measurement scenario is the emergency department, the continuous measurement working mode includes continuous monitoring mode; the non-continuous measurement working mode includes triage mode and spot measurement mode.

3. The interface display method according to claim 1, characterized in that, The received measurement mode selection instruction includes: Display a list of measurement mode identifiers, which includes identifiers for the measurement modes and the names of the measurement scenarios. Receive the target identifier selected by the user through the measurement mode identifier list, the target identifier corresponding to the target measurement mode.

4. The interface display method according to claim 1, characterized in that, After displaying the target parameter layout page corresponding to the target measurement mode, the method further includes: When the target parameter layout page includes at least two measurement parameters, a parameter measurement prompt icon is displayed to prompt that at least one of the at least two measurement parameters be measured.

5. The interface display method according to claim 4, characterized in that, The display parameter measurement prompt indicators include: Obtain the measurement order that has been pre-set for the at least two measurement parameters; Among the at least two measurement parameters, a priority measurement parameter is determined from the unmeasured measurement parameters according to the measurement order and the sorting position of the most recently measured measurement parameter in the measurement order. The priority measurement parameter is the measurement parameter that needs to be measured now. The parameter measurement prompts for the priority measurement parameters are displayed on the target parameter layout page.

6. The interface display method according to claim 5, characterized in that, The parameter measurement prompt indicator that displays the priority measurement parameter includes at least one of the following: The layout page for priority measurement parameters and target parameters, excluding the priority measurement parameters, is displayed differently; and The display area for displaying the priority measurement parameters is distinguished from the display area in the target parameter layout page for displaying measurement parameters other than the priority measurement parameters.

7. The interface display method according to claim 4, characterized in that, The method further includes: Receive measurement data of the target measurement parameter among the at least two measurement parameters, wherein each of the measurement parameters has a corresponding display area in the target parameter layout page; The measurement data of the target measurement parameter is filled into the display area corresponding to the target measurement parameter; The display area of ​​the target measurement parameter is marked as filled, which is used to distinguish the display area of ​​the target measurement parameter from the display area of ​​the unfilled measurement data.

8. The interface display method according to claim 7, characterized in that, The distinguishing display area for the target measurement parameters from the display area for unfilled measurement data includes: The background of the display area for the target measurement parameters is displayed in a different color from the background of the display area for the unfilled measurement data.

9. The interface display method according to any one of claims 1 to 8, characterized in that, The target parameter layout page includes at least two measurement parameters; the method further includes: Receive a measurement mode switching command for the input of the measurement parameters; the measurement mode switching command is used to switch the current measurement mode to the target measurement mode; In response to the measurement mode switching command, the current measurement mode of the measurement parameter is switched to the target measurement mode indicated by the measurement mode switching command.

10. The interface display method according to claim 9, characterized in that, The step of receiving the measurement mode switching instruction for the input measurement parameters includes: The measurement method icon for the measurement parameter is displayed on the target parameter layout page; Receive a click operation on the measurement method icon of the measurement parameter; In response to the click operation, at least two measurement methods of the measurement parameter are displayed to the user; In response to the operation of selecting a measurement method from the at least two measurement methods, the selected measurement method is determined as the target measurement method.

11. The interface display method according to any one of claims 1 to 8, characterized in that, The target parameter layout page includes at least two measurement parameters; the method further includes: Receive a display mode change instruction for the measured parameter, the display mode change instruction being used to switch the current display mode to the target display mode; In response to the display mode change command, the current display mode of the measurement parameter is changed to the target display mode indicated by the display mode change command.

12. The interface display method according to claim 11, characterized in that, Each of the measurement parameters has a corresponding display area in the target parameter layout page; The receiving of the instruction to change the display method of the measurement parameter includes: The display mode change instruction input in the display area of ​​the measurement parameter is received, wherein the display area of ​​the measurement parameter is associated with a sub-page of a region for displaying at least two display modes of the measurement data, and the sub-page of the region includes: the measurement data of the measurement parameter under the display mode corresponding to the sub-page of the region; The step of responding to the display mode change instruction by changing the current display mode of the measurement parameter to the target display mode pointed to by the display mode change instruction includes: In response to the display mode change instruction, the currently displayed subpage of the measurement parameter display area is switched to the subpage of the area corresponding to the target display mode.

13. The interface display method according to any one of claims 1 to 8, characterized in that, The target parameter layout page includes at least two measurement parameters; the method further includes: Each of the measurement parameters has a corresponding display area in the target parameter layout page; The display area includes a first display area and a second display area, displays the first display area, and receives display area operation commands input by the user; When the display area operation instruction is an instruction to open the second display area in the target parameter layout page, respond to the display area operation instruction and open the second display area; When the display area operation instruction is to hide the second display area, the second display area is hidden in response to the display area operation instruction.

14. The interface display method according to claim 1, characterized in that, When the target parameter layout page is the first parameter layout page, the method further includes: Displays alarm limit information for the measurement parameters in the first parameter layout page.

15. The interface display method according to claim 1, characterized in that, The method further includes: When the monitor is in standby mode, it displays the precautions for using the monitor.

16. The interface display method according to claim 1, characterized in that, The method further includes: The parameter report area of ​​the monitor includes a preset number of display rows. When the number of display rows included in the parameter layout page exceeds the preset number of display rows, the parameter layout page is displayed through at least two parameter report pages. The parameter report area displays only one parameter report page at a time. When the parameter layout page includes at least two parameter report pages, the method further includes: receiving a parameter report page selection instruction for selecting a target parameter report page to be displayed.

17. The interface display method according to claim 16, characterized in that, The number of preset display rows shall not exceed 5.

18. The interface display method according to claim 16, characterized in that, The method further includes: Receive a user's lock command for a target parameter in the currently displayed parameter report page, the lock command being used to indicate locking the layout position of the target parameter; In response to the locking command, the layout position of the target parameter is locked so that when the parameter layout page includes at least two parameter report pages, the layout position of the target parameter remains unchanged in the parameter report area when switching between the at least two parameter report pages.

19. The interface display method according to claim 18, characterized in that, After locking the layout position of the target parameter, the method further includes: Receive an unlock command for the target parameter and unlock the layout position of the target parameter.

20. The interface display method according to claim 1, characterized in that, The parameter reporting area of ​​the monitor includes a preset number of display columns, and the number of preset display columns is less than or equal to 2 columns.

21. A patient monitor, characterized in that, include: Human-computer interaction module and processor; The human-computer interaction module is used to receive measurement mode selection instructions and / or function control selection instructions input by the user, and to display the working interface; The working interface includes: A mode selection area is provided, which displays measurement modes and receives measurement mode selection instructions. Each measurement mode is associated with a corresponding parameter layout page. The measurement mode at least characterizes the operating mode of the monitor. The operating modes include continuous measurement operating modes and non-continuous measurement operating modes. Multiple first measurement modes are determined based on the continuous measurement operating modes, each corresponding to a multiple first parameter layout page. Multiple second measurement modes are determined based on the non-continuous measurement operating modes, each corresponding to a multiple second parameter layout page. The first parameter layout pages and the second parameter layout pages are at least partially different. The measurement mode selection instruction is used to select a target measurement mode from a measurement mode identifier list, which includes the multiple first measurement modes and the multiple second measurement modes. A status display area is provided to display the status information of the monitor. A parameter reporting area is provided, which is used to display a target parameter layout page corresponding to the target measurement mode according to the target measurement mode. The target parameter layout page includes a display area for at least one measurement parameter and measurement data located in the display area. When the target parameter layout page is the first parameter layout page, it includes a first parameter reporting area; when the target parameter layout page is the second parameter layout page, it includes a second parameter reporting area. The first parameter reporting area and the second parameter reporting area are at least partially different. A function control area, wherein the function control area includes at least one function control; The processor is used to respond to the function control selection instruction and execute the processing flow corresponding to the selected target function control; The non-continuous measurement working modes include ward round mode, initial assessment mode and / or triage mode; The ward round mode is used to sequentially measure the vital signs parameters of multiple patients to obtain the vital signs parameters of each patient. The initial assessment mode is used to measure the vital signs parameters of a patient once and to conduct an initial assessment of the patient's physical condition based on the measurement results. The triage mode is used to measure the vital signs parameters of a patient once and to assess the severity or level of the patient's condition in order to determine the appropriate department for the patient. The working interface is also used to switch the corresponding measurement mode according to the measurement scenario of the monitor. When the measurement scenario is a general ward scenario, the measurement mode identifier list provides the continuous monitoring mode option in the continuous measurement working mode, as well as the ward round mode option and the initial assessment mode option. When the measurement scenario is an emergency department scenario, the measurement mode identifier list provides the continuous monitoring mode option under the continuous measurement working mode, as well as the triage mode option and the spot measurement mode option under the non-continuous measurement working mode.

22. The monitor according to claim 21, characterized in that, The mode selection area is specifically used to display a list of measurement mode identifiers according to the measurement scenario of the monitor. The list of measurement mode identifiers includes an identifier for each measurement mode under the measurement scenario. The human-computer interaction module is specifically used to receive a target identifier selected through the measurement mode identifier list, wherein the target identifier corresponds to the target measurement mode; The measurement scenario includes hospital work zones, which include at least: general wards and emergency department; When the measurement scenario is the general ward, the continuous measurement working mode in the measurement mode identifier list includes the continuous monitoring mode, and the non-continuous measurement working modes include the ward round mode and the initial assessment mode. When the measurement scenario is the emergency department, the continuous measurement working modes in the measurement mode identifier list include continuous monitoring mode, and the non-continuous measurement working modes include triage mode and spot measurement mode.

23. The monitor according to claim 21, characterized in that, The target parameter layout page includes at least two measurement parameters; The parameter reporting area further includes a parameter measurement prompt icon, used to provide measurement prompts for the measurement parameters according to the measurement order of the at least two measurement parameters, prompting that at least one of the at least two measurement parameters should be measured.

24. The monitor according to claim 23, characterized in that, The parameter measurement prompt indicator is further used for: The display area for the priority measurement parameters is displayed differently from other display areas in the target parameter layout page, excluding the display area for the priority measurement parameters. The priority measurement parameter is the measurement parameter that needs to be measured at present. It is determined from the unmeasured measurement parameters according to the measurement order and the sorting position of the currently measured measurement parameters in the measurement order.

25. The monitor according to claim 23, characterized in that, The parameter measurement prompt indicator is further used for: Mark the display area of ​​the target parameter layout page that is not filled with measurement data as unfilled; and / or, When measurement data of the target measurement parameter among the at least one measurement parameter is received, and the measurement data of the target measurement parameter is filled into the display area corresponding to the target measurement parameter, the display area of ​​the target measurement parameter is marked as filled.

26. The monitor according to claim 21, characterized in that, The display area for the measurement parameters is also used for: The system receives at least one of a measurement mode switching instruction and a display mode change instruction for the input measurement parameters; the measurement mode switching instruction is used to switch the current measurement mode to the target measurement mode. In response to the measurement mode switching command, the current measurement mode of the measurement parameters displayed in the measurement parameter display area is switched to the target measurement mode of the measurement parameters; and In response to the display mode change command, the current display mode of the measurement parameters displayed in the display area of ​​the measurement parameters is switched to the target display mode of the measurement parameters.

27. The monitor according to claim 26, characterized in that, The display area for the measurement parameters includes a measurement method icon for displaying the measurement methods of the measurement parameters. The measurement method icon is used to display at least two measurement methods of the measurement parameters after receiving a click operation, so that one of the measurement methods can be selected as the target measurement method.

28. The monitor according to claim 26, characterized in that, The display area for the measurement parameters includes at least two sub-pages, each of which is used to display the measurement parameters in a corresponding display mode. The at least two sub-pages are switched according to the display mode change instruction to determine the target display mode.

29. The monitor according to any one of claims 21 to 28, characterized in that, The display area for the measurement parameters also includes a remeasurement control, used for: It receives input remeasurement instructions and replaces the current measurement data with the new measurement data.

30. The monitor according to any one of claims 21 to 28, characterized in that, The display area of ​​the measurement parameters also includes an expansion control, which is used to open the hidden area of ​​the display area of ​​the measurement parameters when the operation instruction for the display area of ​​the measurement parameters is to open the display area of ​​the measurement parameters. When the received operation instruction for the display area of ​​the measurement parameter is to hide the display area of ​​the measurement parameter, the hidden area of ​​the measurement parameter is hidden.

31. The monitor according to claim 30, characterized in that, When receiving the user's input command for operating the display area, the human-computer interaction module is specifically used for: The display area operation command for the measurement parameters input via gesture swiping is received.

32. The monitor according to claim 21, characterized in that, The display area of ​​the measurement parameters in the first parameter layout page includes: alarm limit information of the measurement parameters.

33. The monitor according to claim 21, characterized in that, When the parameter layout page includes at least two parameter report pages, the parameter report area is used to display one parameter report page, and the at least two parameter report pages are switched in the parameter report area.

34. The monitor according to claim 33, characterized in that, The display area for the measurement parameters also includes a locking control, used for: The system receives a lock command from the user for a target parameter in the currently displayed parameter layout page. The lock command indicates that the layout position of the target parameter is locked so that when the parameter layout page includes at least two parameter report pages, the layout position of the target parameter remains unchanged in the parameter report area when switching between the at least two parameter report pages.

35. The monitor according to claim 34, characterized in that, The locking control is also used for: Based on the received unlock command for the target parameter, The layout position of the target parameter is unlocked, and when switching between the at least two parameter report pages, the layout position of the target parameter in the parameter report area changes with the switching of the at least two parameter report pages.

36. The monitor according to claim 21, characterized in that, The first parameter layout page includes a first functional control area, and the second parameter layout page includes a second functional control area. The first functional control in the first functional control area and the second functional control in the second functional control area are at least partially different.

37. The monitor according to claim 36, characterized in that, The first functional control area includes at least one of the following: a review function control, a case reference function control, a save function control, and a clear function control: The review function control is used to display the historical records of parameter measurement data stored by the monitor to the user; The case reference function control is used to display the parameter measurement data of the target patient to the user; The save function control is used to save the measurement data in the target parameter layout page; The clear function control is used to clear the measurement data in the target parameter layout page.

38. The monitor according to claim 36, characterized in that, The second functional control area includes alarm function controls.

39. The monitor according to claim 38, characterized in that, The alarm function control includes at least one of an alarm pause function control and an alarm reset function control.

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