Monitor, display method applied to monitor, display device and storage medium

By detecting touch screen operations through the monitor's touch display and processor, and dynamically adjusting the display interface partitions, the problem of parameter settings obscuring physiological data is solved. This allows for the separate display of physiological data and functional information, making it convenient for medical staff to view monitoring data in real time.

CN116763270BActive Publication Date: 2025-11-07SHENZHEN MINDRAY BIO MEDICAL ELECTRONICS CO LTD +1
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Patent Information

Application Number
CN202310711043.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2017-10-27
Publication Date
2025-11-07
Estimated Expiration
2037-10-27

AI Technical Summary

Technical Problem

The parameter setting interface of the monitor may obscure part or even all of the physiological data display area, making it inconvenient for medical staff to view the monitoring data in real time.

Method used

By coordinating the touchscreen display and the processor, touchscreen operations are detected, and when a preset re-partitioning rule is met, the display interface is dynamically adjusted to divide it into a second partition setting, which displays physiological data, functional information, and function button icons respectively, thus avoiding parameter settings from obscuring physiological data.

Benefits of technology

It separates physiological data and functional information for easy viewing of monitoring data by medical staff in real time, and avoids the impact of parameter settings on data observation.

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Abstract

The application provides a monitor, a display method applied to the monitor, a display device and a storage medium. When a first touch screen operation meeting a preset re-partition rule is detected, the monitor switches a display interface from a first partition device to a second partition device. Since in the second partition device, parameter setting related data, physiological data and function key icons can be displayed separately, the problem that the parameter setting interface blocks part or all of the physiological data can be solved, so that medical staff can conveniently view monitoring data in real time.
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Description

[0001] This application is a divisional application of the invention with the application date of October 27, 2017, the application number of 201780096366.5, and the name of "Monitor, display method applied to monitor, display device and storage medium". TECHNICAL FIELD

[0002] The present application relates to the technical field of information interaction, and more particularly to a monitor, a display method applied to the monitor, a display device and a storage medium. BACKGROUND

[0003] Currently, a plurality of application programs are usually installed in medical equipment, and through these application programs, convenient diagnosis and treatment services can be provided for patients, for example, through the application programs installed in a monitor, the electrocardio activity, respiratory cycle, body temperature, respiratory movement and cardiovascular of a patient can be monitored in real time.

[0004] The display interface of the monitor is at least divided into a region for displaying physiological data and a region for displaying other information. When a medical staff sets a parameter of a certain physiological data on the display interface, the monitor will display a corresponding parameter setting interface on the display interface.

[0005] However, the parameter setting interface may exist to shield part of the setting of all physiological data, which brings inconvenience to the medical staff to view the physiological data in real time. SUMMARY

[0006] Therefore, the present application provides a monitor, a display method applied to the monitor, a display device and a storage medium to solve the problem of inconvenience for medical staff to view monitoring data in real time when the parameter device interface shields part or even all monitoring data display regions. The technical solution is as follows:

[0007] A monitor comprises at least one physiological data monitoring module, a memory, a touch display screen and a processor.

[0008] The at least one physiological data monitoring module is configured to monitor at least one physiological data of a patient, and the at least one physiological data comprises at least one of electrocardio data, blood oxygen saturation data, body temperature data, respiratory data, heart rate data and blood pressure data.

[0009] The memory is configured to store programs and the at least one physiological data.

[0010] The touch display screen is configured to receive touch screen operations under the control of the processor.

[0011] The processor is configured to run the programs in the memory to implement the following processes:

[0012] acquire a first partition setting on the touch display screen display interface, the first partition setting comprising a first physiological data display area and a first function information display area;

[0013] display the at least one physiological data in the first physiological data display area;

[0014] display data other than the at least one physiological data in the first function information display area;

[0015] detect a touch screen operation received by the touch display screen;

[0016] if a first touch screen operation meeting a preset re-partition rule is detected, acquire a second partition setting of the display interface, the second partition setting comprising a second physiological data display area, a second function information display area and a third function information display area;

[0017] display the at least one physiological data in the second physiological data display area;

[0018] display data other than the at least one physiological data in the second function information display area;

[0019] display at least one function key icon in the third function information display area, the function key icon being used to represent a corresponding function operation.

[0020] A display method applied to a monitor, comprising:

[0021] acquire a first partition setting on the touch display screen display interface, the first partition setting comprising a first physiological data display area and a first function information display area;

[0022] display the at least one physiological data in the first physiological data display area;

[0023] display data other than the at least one physiological data in the first function information display area;

[0024] detect a touch screen operation received by the touch display screen;

[0025] if a first touch screen operation meeting a preset re-partition rule is detected, acquire a second partition setting of the display interface, the second partition setting comprising a second physiological data display area, a second function information display area and a third function information display area;

[0026] display the at least one physiological data in the second physiological data display area;

[0027] display data other than the at least one physiological data in the second function information display area;

[0028] At least one function button icon is displayed in the third function information display area, and the function button icon is used to represent a corresponding function operation.

[0029] The display device applied to a monitor comprises a first partition display module, a touch screen operation detection module and a second partition display module.

[0030] The first partition display module is used to acquire a first partition setting on a display interface of the touch display screen, and the first partition setting comprises a first physiological data display area and a first function information display area.

[0031] The touch screen operation detection module is used to detect a touch screen operation received by the touch display screen.

[0032] The second partition display module is used to acquire a second partition setting of the display interface if a first touch screen operation meeting a preset re-partition rule is detected.

[0033] A storage medium comprises a stored program, wherein when the program is running, the device where the storage medium is located performs the display method applied to a monitor as in any of the above technical solutions.

[0034] Compared with the prior art, the application has the following beneficial effects:

[0035] The monitor, the display method applied to a monitor, the display device and the storage medium provided by the application can switch the display interface from the first partition device to the second partition setting when a first touch screen operation meeting a preset re-partition rule is detected. BRIEF DESCRIPTION OF DRAWINGS

[0036] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the accompanying drawings needed to be used in the embodiments or prior art description will be briefly introduced as follows. Obviously, the accompanying drawings in the following description only only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor are within the scope of the present application.

[0037] Figure 1 A structural schematic diagram of a monitor is shown.

[0038] Figure 2 A method flow chart of a display method applied to a monitor is shown.

[0039] Figure 3 A monitor display interface in a normal display mode is shown.

[0040] Figure 4a A display interface after re-partitioning is shown.

[0041] Figure 4b Another display interface after re-partitioning is shown.

[0042] Figure 4c Another display interface after re-partitioning is shown.

[0043] Figure 4d Another display interface after re-partitioning is shown.

[0044] Figure 4e Another display interface after re-partitioning is shown.

[0045] Figure 4f Another display interface after re-partitioning is shown.

[0046] Figure 5 A structural schematic diagram of a display device of a monitor is provided. DETAILED DESCRIPTION

[0047] The technical solutions in the embodiments of the present application will be described clearly and completely in the embodiments of the present application in combination with the accompanying drawings. Obviously, the described embodiments are only some of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor are within the scope of the present application.

[0048] The application will be described in further detail below with specific reference being made to the drawings in which the same or similar elements of the drawings are provided with the same reference numerals. In the following description, numerous specific details are described to provide a thorough understanding of the application. However, it will be apparent to one skilled in the art that the application can be practiced without some or all of these specific details. In other instances, well known process operations have not been described in detail in order not to unnecessarily obscure aspects of the application.

[0049] In addition, the features, operations or characteristics described in the specification can be combined in any appropriate manner to form various embodiments. Meanwhile, the steps or actions in the method description can also be sequentially adjusted or changed in a manner that is apparent to those skilled in the art. Therefore, the various sequences in the specification and the drawings are only for the purpose of clearly describing a certain embodiment, and do not mean that the sequence is necessary, unless otherwise stated that a certain sequence must be followed.

[0050] The serial numbers of components in this paper, such as "first", "second", etc., are only used to distinguish the described objects, and do not have any sequence or technical meaning. The "connection" and "coupling" in this application include direct and indirect connection (coupling) unless otherwise specified.

[0051] Figure 1 A structural embodiment of a monitoring instrument is provided, which comprises at least one physiological data monitoring module 10, a memory 20, a touch display screen and a processor 30.

[0052] In this embodiment, the at least one physiological data monitoring module 10 can monitor at least one physiological data of a patient, which can be electrocardiogram data, blood oxygen saturation data, body temperature data, respiration data, heart rate data and blood pressure data, etc. For example, in some embodiments, the monitoring instrument comprises two physiological data monitoring modules for monitoring electrocardiogram data and blood oxygen saturation data of a patient. In addition, the physiological data monitoring module 10 mentioned in this embodiment can obtain the original physiological data collected from an external physiological sensor, and then process the original physiological data to obtain physiological data that can be displayed on a display device. For different physiological data, the physiological data monitoring module 10 used can be different.

[0053] Of course, in some embodiments, the at least one physiological data monitoring module 10 can be integrated into one mainboard or multiple mainboards, and can also be integrated into one processor or multiple processors. In addition, in some embodiments, the at least one physiological data monitoring module 10 can be built-in in the monitor housing or can be externally connected to the monitor housing, for example, the at least one physiological data monitoring module 10 can be externally connected to the monitor in a plug-in manner.

[0054] In the embodiment, the memory 20 is configured to store programs and at least one physiological data. The programs in the embodiment can include a processing program for processing the raw physiological data, and can also include a program for displaying the raw physiological data processed by the processing program on the touch display screen or other display device.

[0055] Of course, in some embodiments, the memory 20 can be integrated with the processor 30, or can be a separate storage device, for example, can be a cache, a hard disk storage device. In addition, the memory 20 can also be configured to store programs related to touch screen operation detection, processing, tracking and feedback.

[0056] Specifically, in the embodiment, the touch display screen is used as the display device, and the touch display screen is configured to display one or more of the physiological data and receive a touch screen operation input by a user. Here, the touch screen operation can be one or more of a sliding operation, for example, a single-finger sliding operation and a multi-finger sliding operation, a clicking operation and other gesture operations according to a predetermined rule. In addition, the touch display screen can also be configured to receive the touch screen operation under the control of the processor.

[0057] In the embodiment, the at least one physiological data monitoring module 10 and the memory 20, and the memory 20 and the processor 30 are connected through a bus system, so that the memory can communicate with the physiological data monitoring module 10 and the processor 30, respectively.

[0058] Figure 2 A display method for physiological data implemented on a monitor is provided, which can be described in detail in combination with Figure 1 The processor 30 is configured to run the programs in the memory 20 to implement the following processes:

[0059] In step S10, a first partition setting on the touch display screen display interface is acquired, and the first partition setting includes a first physiological data display area and a first function information display area.

[0060] In one embodiment of the present step, each physiological index of the patient is monitored by a corresponding physiological data monitoring module. For example, for one or more physiological indexes of the patient, such as electrocardiogram activity, respiratory cycle, body temperature, and respiratory movement, the monitor has one or more corresponding physiological monitoring modules to monitor one or more corresponding physiological data, such as electrocardiogram data, blood oxygen saturation data, body temperature data, and respiratory data.

[0061] Each physiological data monitoring module 10 monitors the physiological index of the patient in real time and sends the monitored physiological data to the storage 20 in real time, so that the storage 20 can save the physiological data. Of course, the physiological data related to the patient monitored by each physiological data monitoring module in real time can also be displayed on a display device, such as a touch display screen.

[0062] The display device is limited by the size of the display screen and often cannot display the required information on one display interface at the same time, so it needs to be arranged according to the needs. The processor 30 can set the partition of the display interface according to the use occasion or mode of the monitor. In the partition setting of the monitor, at least a physiological data display area and a function information display area are included. The physiological data display area can be used to display the physiological data monitored by the physiological data monitoring module 10, and the function information display area can be used to display the function information of the monitor, including one or more of function settings, function attributes, and function keys. For example, the content displayed in the function information display area includes but is not limited to one or more of patient information, alarm information, power information, volume information, attribute setting keys, and wireless information, which are not limited in the present embodiment.

[0063] Generally, the monitor needs to monitor the physiological index of the patient in real time. The first physiological data display area and the first function information display area in the first partition setting can be the physiological data display area and the function information display area at the first time, which are used to display the physiological data obtained at the first time and the function information of the monitor. Alternatively, in some embodiments, the first physiological data display area and the first function information display area in the first partition setting can be the partition setting of the display interface in the first state of the monitor. The first state can be a monitoring mode, for example, the first monitoring mode for critically ill patients or the second monitoring mode for sub-critically ill patients.

[0064] In order to facilitate the medical staff to view the physiological data, in some embodiments, the area of the first physiological data display area and the first function information display area can be set in advance, the area of the first physiological data display area occupies most of the whole display interface, and the area of the first physiological data display area is greater than that of the first function information display area. In order to facilitate the medical staff to modify the function attributes, for example, to modify the information of the patient to be monitored, to adjust the volume information or to modify the wireless information, the first function information display area can be located at the edge position of the monitor display interface. In one of the embodiments, the first physiological data display area displays the text numerical information (such as 1001 in Figure 3 ) and waveform data (such as 1002 in Figure 3 ) of at least one physiological parameter.

[0065] In step S20, at least one physiological data is displayed in the first physiological data display area.

[0066] In one of the embodiments in this step, the at least one physiological data can be obtained by at least one physiological data monitoring module 10 of the monitor in Figure 1 , or the at least one physiological data can also be the physiological data obtained after the processor processes the original physiological data obtained by the at least one physiological data monitoring module 10.

[0067] In step S30, data other than the at least one physiological data is displayed in the first function information display area.

[0068] In one of the embodiments in this step, the first function information display area is used to display one or more of the function settings, function attributes and function keys of the monitor, therefore, the data other than the at least one physiological data includes but is not limited to one or more of the patient information, alarm information, power information, volume information, wireless information and attribute setting keys, and this embodiment is not limited in particular. For example, the first function information display area can display a function setting window, through which the layout of the display interface, the font size, the display content of the display area and the like can be adjusted. For another example, the first function information display area can also display the function attributes, which at least include one or more of the patient information, alarm information, power information, volume information and wireless information. For another example, the first function information display area can also display the function keys, for example, one or more of the setting keys, menu keys and the like, specifically, the function keys here are deep multi-level menu results, and multiple steps of operation are required to find a certain function.

[0069] The processor can adjust the partition layout on the display interface by calling the program in the memory, and generate the corresponding soft keys or texts, graphic information to represent the above-mentioned function settings, function attributes and / or function keys.

[0070] Figure 3 A monitor display interface in a normal display mode is provided, which includes two display areas. One is a first physiological data display area 101, in which physiological data is displayed, and the physiological data is divided into text numerical information 1001 and waveform data 1002. The other is a first function information display area 102, in which function information is displayed, and the function information is in turn a function key, alarm information and volume information. Clicking the function key 1021 can pop up a function setting window related to monitoring attribute setting and interface icon setting, for example, clicking the function key can pop up a setting interface for monitoring items, monitoring information, monitoring attributes and function icon setting. Of course, different display positions can be set for different physiological indexes for the first physiological data display area 101, which is not limited in the embodiment.

[0071] In step S40, a touch screen operation received by the touch display screen is detected.

[0072] In one embodiment of the present step, the processor detects the touch screen operation received by the touch display screen by calling a program in the memory.

[0073] The touch display screen can determine the touch point on the screen by detecting the capacitance change, and the processor determines the touch screen operation corresponding to the touch track based on the touch point on the touch display screen. In some embodiments, the touch screen operation includes one or more of single-finger sliding operation, multi-finger sliding operation, click operation and other gesture operations according to predetermined rules.

[0074] In step S50, if the first touch screen operation meeting the preset re-partition rule is detected, the second partition setting of the display interface is obtained, and the second partition setting includes a second physiological data display area, a second function information display area and a third function information display area.

[0075] In one embodiment of the present step, to avoid the display device from being unable to display the information required by medical staff on one display interface at the same time, the display interface can be arranged as needed, that is, the re-partition rule can be set in advance according to the use occasion or mode of the monitor, and the re-partition rule contains the display position, display content and other display parameters of the physiological data display area and the function information display area after partitioning, such as setting the physiological data display area after partitioning in the middle position to facilitate medical staff to view physiological data. The re-partition rule is provided with a corresponding trigger operation and partition setting after triggering in advance, and the trigger operation here can be one of a touch screen operation, such as a single-finger sliding operation, a multi-finger sliding operation and a click operation.

[0076] The physiological data display area in the second partition setting can be used to display the physiological data monitored by the physiological data monitoring module 10. The function information display area after partitioning can be used to display not only the function information of the monitor, but also the function key icon. The function key icon is the key icon that is predefined as a hot key or other shortcut operation interface by the user. The function key icon is a single-level menu result, and only one step is needed to find a function. The function information is consistent with the function information disclosed in step S10, including but not limited to one or more of patient information, alarm information, power information, volume information, attribute setting key, and wireless information. The embodiment is not limited in particular.

[0077] Generally, the monitor needs to monitor the physiological indicators of the patient in real time. The second physiological data display area and the second function information display area in the second partition setting can be the physiological data display area and the function information display area at the second time, which are used to display the physiological data obtained at the second time and the function information of the monitor. Alternatively, in some embodiments, the second physiological data display area and the second function information display area in the second partition setting can be the partition setting of the display interface of the monitor in the second state. The second state can be a monitoring mode, for example, the monitoring mode can be a first monitoring mode for a critical patient or a second monitoring mode for a sub-critical patient, etc. In addition, for the second partition setting at the second time or the second state, since the display content of the first physiological data display area can be displayed in the second physiological data display area, the second partition setting will not affect the continuity and effectiveness of the physiological indicator monitoring.

[0078] During the switching process of the partition setting, the data of different physiological data display areas is continuously displayed, so as to ensure that the monitor performs real-time monitoring and uninterrupted display of physiological data.

[0079] In step S60, at least one physiological data is displayed in the second physiological data display area.

[0080] In one embodiment of the present step, the at least one physiological data can be obtained by the at least one physiological data monitoring module 10 of the monitor, or the at least one physiological data can be the physiological data obtained after the processor processes the original physiological data obtained by the at least one physiological data monitoring module 10. Figure 1 In the second physiological data display area, text numerical information 1001 and waveform data 1002 can be displayed, or only text numerical information 1001 can be displayed in the second physiological data display area.

[0081] In step S70, data other than the at least one physiological data is displayed in the second function information display area.

[0082] In one embodiment of the present step, the second function information display area is configured to display function attributes of the monitor, and thus the data other than the at least one physiological data includes, but is not limited to, one or more of patient information, alarm information, power information, volume information, wireless information, and attribute setting buttons. The present embodiment is not limited in this regard. For example, the second function information display area can display a function setting window, through which the layout of the display interface, the font size, the display content of the display area, and the like can be adjusted. Also for example, the second function information display area can also display function attributes, which include at least one or more of patient information, alarm information, power information, volume information, and wireless information. Yet for example, the second function information display area can also display function buttons, such as one or more of a setting button, a menu button, and the like. Specifically, the function buttons herein are deep-level multi-level menu results, and require multiple steps of operation to find a certain function.

[0083] In step S80, at least one function button icon is displayed in the third function information display area, and the function button icon is configured to represent a corresponding function operation.

[0084] The function button icon herein is a button icon that is predefined by a user as a hot key or other shortcut operation interface, and the corresponding button is a single-level menu result, and only one step of operation is required to find a certain function.

[0085] Specifically, the at least one function button icon includes at least one soft button associated with a function operation. The function operation includes attribute setting, interface setting, alarm closing, alarm opening, measurement starting, shutdown, standby, and the like. Each function button icon corresponds to a function operation, and the user clicks the corresponding function button icon to enter a corresponding function operation interface or window, or the processor directly obtains a corresponding function instruction based on the user's click operation and performs a corresponding operation. For example, when the user clicks a function button icon representing alarm closing, the monitor closes the current alarm. When the user clicks a function button icon representing attribute setting, the processor pops up an attribute setting window or a function setting window on the display interface.

[0086] Based on this, the first touch screen operation that meets the preset re-partitioning rule can include a parameter setting operation, and the above-mentioned window is popped up based on the parameter setting operation, such as the attribute setting window or the function setting window. Of course, the first touch screen operation can also be a touch screen operation that triggers the second partition setting, such as a hot key display operation. Specifically, the first touch screen operation can be pre-set by medical personnel.

[0087] In one of the embodiments, the processor 30 detects the touch screen operation received by the touch display in real time; if the first touch screen operation conforming to the preset re-partition rule is detected, the second partition setting is further acquired. The second partition setting includes a second physiological data display area, a second function information display area and a third function information display area. For example, Figure 4a The display interface after re-partitioning is shown, in which the second physiological data display area 202 is arranged between the second function display area 201 and the third function display area 203, and compared with the first embodiment, the area of the second physiological data display area 202 is smaller than that of the first physiological data display area 101, and the area of the second function information display area 201 is greater than or equal to that of the first function information display area 102. Figure 3 The display interface is shown, in which the area of the second physiological data display area 201 is smaller than that of the first physiological data display area 101, and the area of the second function information display area 201 is greater than or equal to that of the first function information display area 102.

[0088] Further, in one of the embodiments, the content displayed in the second function display area 201 includes the content displayed in the first function display area. Alternatively, the second function display area 201 includes a pop-up window on the display interface, which includes the attribute setting window or the function setting window, such as Figure 4a In the second function display area 201 of the embodiment, the pop-up window is included.

[0089] In the embodiment of Figure 4a , by re-partitioning the display interface, the display of the second function display area 201 will not cover the display of the physiological data. In addition, in one of the embodiments, the second physiological data display area displays the text numerical information about the physiological data, and generally, the display of the physiological data includes the text numerical information (such as 1001 in Figure 3 ) and the waveform data (such as 1002 in Figure 3 ). In one of the embodiments, the physiological parameter displayed in the second physiological data display area does not include the waveform data. The text numerical information includes the numerical information of the basic parameters, for example, at least one of the electrocardiogram data, the blood oxygen saturation data, the body temperature data, the respiration data, the heart rate data and the blood pressure data. In one of the embodiments, the second physiological data display area displays the text numerical information of at least one physiological parameter, but does not include the waveform data. The second physiological data display area, the second function information display area and the third function information display area are arranged side by side on the display interface.

[0090] In one of the embodiments, based on the first touch screen operation, the second partition setting is acquired, so that the processor forms the interface distribution as shown in Figure 4b . The second partition setting includes a second physiological data display area 302, a second function information display area 301 and a third function information display area 303. The second physiological data display area 302 displays the text numerical information of at least one physiological parameter (such as Figure 3waveform data (e.g. Figure 3 The content displayed by the second functional information display area 301 includes, but is not limited to, one or more of patient information, alarm information, power information, volume information, attribute setting buttons, and wireless information, and the embodiments are not limited in this regard. When the display area for displaying the functional button icons is displayed, it does not cover the normally displayed physiological parameter display area, so that the user can observe the real-time physiological parameters without being affected by the adjustment of settings or the appearance of alarm information, etc.

[0091] In one embodiment, to facilitate the medical staff to quickly find a functional button icon, the third functional information display area (e.g. Figure 4a 203 in Figure 4b 303 in Figure 4a and Figure 4b 203, 201, and 303, 301 in Thus, by reconfiguring the partitions, the functional display area does not cover the physiological parameter display area.

[0092] Further, in one embodiment, the above method further includes the following steps:

[0093] After obtaining the first partition configuration of the display interface, if an alarm event is detected, a second partition configuration of the display interface is obtained, the second partition configuration including a second physiological data display area, a second functional information display area, and a third functional information display area; at least one physiological data is displayed in the second physiological data display area; data other than the at least one physiological data is displayed in the second functional information display area; and at least one functional button icon is displayed in the third functional information display area, the functional button icon being used to represent a corresponding functional operation.

[0094] In this embodiment, the alarm event includes, but is not limited to, physiological alarms and technical alarms. Specifically, the physiological alarm refers to an alarm issued by the physiological data monitoring module when the physiological data exceeds the alarm threshold, for example, an alarm issued by the electrocardiogram data monitoring module when the patient's heart rate exceeds 140 beats per minute; and the technical alarm refers to an alarm event generated by a failure of a device in the monitor, for example, a short circuit of the electrocardiogram data monitoring module, or a memory shortage, etc.

[0095] In one embodiment, the above steps are implemented by a processor running a program in the memory. Based on this embodiment, when the monitor automatically detects an alarm event, the reacquisition of the partition configuration is automatically triggered, so that the partition configuration of the touch display screen is changed to the second partition configuration.

[0096] For example, in one embodiment, after the first partition setting of the display interface is acquired, the monitor displays the display interface as shown in FIG. 2A, and when the processor detects an alarm event, the second partition setting is acquired automatically, and the display interface is adjusted to the display layout as shown in FIG. 2B. Figure 3 In the specific implementation process, the second physiological data display area displays the text value information and waveform data of at least one physiological parameter, and the content displayed by the second function information display area includes but is not limited to one or more of patient information, alarm information, power information, volume information, attribute setting keys and wireless information. The present embodiment is not specifically limited, and specific reference can be made to the related explanations of the function information display area mentioned in the foregoing. In one embodiment, the second function information display area does not display a pop-up window, for example, does not display the attribute setting window or the function setting window mentioned above. Figure 4b

[0097] In some embodiments, the above method further includes the following steps:

[0098] If the duration of the detected alarm event exceeds the first preset duration, and no other touch screen operation is detected within the first preset duration, the display interface is switched from the second partition setting to the first partition setting. In one embodiment, the above steps are realized by the processor running the program in the memory. Based on the monitoring of time, the layout of the display interface can be adjusted automatically.

[0099] In some embodiments, the above method further includes the following steps:

[0100] When any of the following conditions is met, the display interface is switched from the second partition setting to the first partition setting.

[0101] No other touch screen operation is detected within the first preset duration; a second touch screen operation is detected in a preset area of the display interface; and a third touch screen operation meeting a first preset operation track is detected.

[0102] ​In one embodiment, the above steps are implemented by a processor executing a program in the memory. The second touch screen operation and / or the third touch screen operation can include at least one of a sliding operation, a single-finger sliding operation, a multi-finger sliding operation, a tapping operation, and the like input on the touch display screen, and a gesture operation performed according to a predetermined rule. The preset operation trajectory includes a moving trajectory of a contact position of an input part (e.g., a user's finger) of the touch screen operation on the display interface, and the preset operation trajectory includes, but is not limited to, a point contact, a straight line moving trajectory, a curved line moving trajectory, and the like. Of course, the first preset operation trajectory can be compared with a moving trajectory corresponding to the third touch screen operation input in the second physiological parameter display area or the second function information display area, and can also be compared with a moving trajectory corresponding to the third touch screen operation input in the entire display interface. The preset area can include any one position in the second physiological parameter display area or the second function information display area. The monitoring based on the touch screen operation can automatically adjust the layout of the display interface.

[0103] In some embodiments, the above method for displaying physiological parameters further includes the following steps:

[0104] displaying a first part of at least one function key icon in the third function information display area;

[0105] if a fourth touch screen operation conforming to a second preset operation trajectory is detected in the third function information display area, in response to the fourth touch screen operation, displaying a second part of the at least one function key icon in the third function information display area.

[0106] In one embodiment, the above steps are implemented by a processor executing a program in the memory. The second preset operation trajectory in the present embodiment includes, but is not limited to, a point contact, a straight line moving trajectory, a curved line moving trajectory, and the like. The fourth touch screen operation can be a straight line movement of a contact position of an input part of the touch screen operation in the third function information display area, for example, a straight line movement of the contact position of the input part in the third function information display area 403 in the direction of the arrow 404 in FIG. 4B. Figure 4c The second function information display area 401 is the second function information display area mentioned above, and the second physiological parameter display area 402 is the second physiological parameter display area mentioned above. The first part of the at least one function key icon is a combination of function key icons displayed in the area 303 in FIG. 3B, and the second part of the at least one function key icon is a combination of function key icons displayed in the area 403 in FIG. 4B. Figure 4b The second function information display area 401 is the second function information display area mentioned above, and the second physiological parameter display area 402 is the second physiological parameter display area mentioned above. The first part of the at least one function key icon is a combination of function key icons displayed in the area 303 in FIG. 3B, and the second part of the at least one function key icon is a combination of function key icons displayed in the area 403 in FIG. 4B. Figure 4c The second function information display area 401 is the second function information display area mentioned above, and the second physiological parameter display area 402 is the second physiological parameter display area mentioned above. The first part of the at least one function key icon is a combination of function key icons displayed in the area 303 in FIG. 3B, and the second part of the at least one function key icon is a combination of function key icons displayed in the area 403 in FIG. 4B.

[0107] In some embodiments, the above method further includes the following steps:

[0108] displaying a first part of at least one function key icon in the third function information display area; and in response to a fifth touch screen operation for representing a moving target function key icon detected in the third function display area, moving the target function key icon to a target position and rearranging all function key icons in the third function information area.

[0109] In one embodiment, as shown in Figure 4d If a continuous tapping or sliding operation 406 is detected in the area where the lock screen key icon is located in the third function information display area 403, the operation is further tracked and responded. Assuming that the continuous tapping or sliding operation 406 disappears when the lock screen key icon is located at the function key icon 405, the lock screen key icon is set at the function key icon 405, and correspondingly, the function key icon 407 is moved to the original position of the lock screen key icon, and the function key icon 405 is moved to the original position of the function key icon 407. At this time, the display interface is as shown in Figure 4e The target position is located by tracking the moving track of the input part (e.g. user's finger) contacting the touch display screen, for example, the target position corresponding to the fifth touch screen operation is determined by tracking the obtained moving track, so as to rearrange the function key icons.

[0110] In one embodiment, the above steps are realized by a processor running a program stored in a memory.

[0111] In some embodiments, the above method further comprises the following steps:

[0112] After the second partition setting of the display interface is obtained, if a sixth touch screen operation for representing a hidden function key is detected, a third partition setting of the display interface is obtained, the third partition setting comprising a third physiological data display area and a fourth function information display area; the display content of the first physiological data display area is displayed in the third physiological data display area; and the display content of the first function information display area is displayed in the fourth function information display area.

[0113] Further, in one embodiment, the second function information display area of the display interface obtained based on the above second partition setting comprises the aforementioned pop-up window, and in the third function information display area, at least one text value information of a physiological parameter is displayed, but no waveform data is included. For example, Figure 4fAs shown, when the pop-up window 504 is popped up in the second function information display area 501, the window is suspended over part or all of the second physiological data display area 505, the text value information of at least one physiological parameter in the second physiological data display area 505 is displayed in the third function information display area 502, and the function button icons originally displayed in the third function information display area are collectively transparentized or hidden. The triggering of the collective transparentization or hiding of the function button icons originally displayed in the third function information display area can be based on the sixth touch screen operation, such as clicking the soft button 503. Figure 4f For example, the function button icons originally displayed in the third function information display area can be expanded by clicking the soft button 503, so as to realize the switching between the display of the function button icons in the third function information display area and the display of the text value information of the physiological parameter. Of course, the function button icons originally displayed in the third function information display area can also be expanded by clicking the soft button 503, so as to form the simultaneous display of the function button icons and the text value information of the physiological parameter in the third function information display area, which is similar to Figure 4a .

[0114] In one embodiment, the above steps are realized by a processor running a program in the memory. Based on this embodiment, the function buttons can be hidden when the medical staff does not need the function buttons, so as to avoid the occupation of the display interface by the function buttons. Of course, in one of the embodiments, when the processor detects a corresponding touch screen operation, such as a touch screen operation for indicating the hiding of the function buttons, the second partition setting of the display interface is restored to the first partition setting.

[0115] In addition, in order to facilitate more medical staff to view the monitoring data in real time, an external expansion screen can be externally connected to the monitor. The external expansion screen is connected to the processor and can synchronously display the display content of the display interface. Of course, the external expansion screen can also display a certain display area and display the hidden function hot keys and other function keys. The present embodiment is not limited in this regard and can be specifically set according to actual needs.

[0116] The monitor provided by the embodiments of the present application can switch the display interface from the first partition device to the second partition setting when a first touch screen operation meeting a preset re-partition rule is detected. Since the parameter setting related data, the physiological data, and the function button icons can be separately displayed in the second partition setting, the problem of the parameter setting interface shielding part or all of the physiological data can be solved, so as to facilitate the medical staff to view the monitoring data in real time.

[0117] Based on the above description of the structure of the monitor and the display method applied to the monitor, Figure 5 a structural embodiment of a display device of a monitor is provided, which comprises a first partition display module 10, a touch screen operation detection module 20, and a second partition display module 30.

[0118] The first partition display module 10 is configured to acquire a first partition setting on the display interface of the touch display screen, the first partition setting comprising a first physiological data display area and a first function information display area; display at least one physiological data in the first physiological data display area; and display data other than the at least one physiological data in the first function information display area.

[0119] The touch operation detection module 20 is configured to detect a touch operation received by the touch display screen.

[0120] The second partition display module 30 is configured to, if the first touch operation meeting the preset re-partition rule is detected, acquire a second partition setting of the display interface, the second partition setting comprising a second physiological data display area, a second function information display area and a third function information display area; display the at least one physiological data in the second physiological data display area; display the data other than the at least one physiological data in the second function information display area; and display at least one function key icon in the third function information display area, the function key icon being used to represent a corresponding function operation.

[0121] In the embodiment, the specific execution process of the first partition display module 10 is consistent with the specific execution process of steps S10-S30 in the above embodiment, the specific execution process of the touch operation detection module 20 is consistent with the specific execution process of step S40 in the above embodiment, and the specific execution process of the second partition display module 30 is consistent with the specific execution process of steps S50-S80 in the above embodiment. Therefore, the embodiment will not be described herein again, and please refer to the above embodiment.

[0122] In some embodiments, the apparatus further comprises the following modules:

[0123] The third partition display module is configured to, after the first partition setting of the display interface is acquired, acquire a second partition setting of the display interface if an alarm event is detected, the second partition setting comprising a second physiological data display area, a second function information display area and a third function information display area; display the at least one physiological data in the second physiological data display area; display the data other than the at least one physiological data in the second function information display area; and display at least one function key icon in the third function information display area, the function key icon being used to represent a corresponding function operation.

[0124] In some embodiments, the apparatus further comprises the following modules:

[0125] The first partition switching module is configured to, if the duration of the alarm event exceeds the first preset duration and no other touch operation is detected within the first preset duration, switch the display interface from the second partition setting to the first partition setting.

[0126] In some embodiments, the apparatus further comprises the following modules:

[0127] The second partition switching module is configured to switch the display interface from the second partition setting to the first partition setting when any of the following conditions is met:

[0128] No other touch screen operation is detected within a first preset time period; a second touch screen operation is detected within a preset area of the display interface; and a third touch screen operation meeting a first preset operation track is detected.

[0129] In some embodiments, the apparatus further comprises the following modules:

[0130] The fourth partition display module is configured to display a first part of at least one function key icon in the third function information display area; and in response to a fourth touch screen operation meeting a second preset operation track being detected in the third function information display area, display a second part of the at least one function key icon in the third function information display area.

[0131] In some embodiments, the apparatus further comprises the following modules:

[0132] The fifth partition display module is configured to display a first part of at least one function key icon in the third function information display area; and in response to a fifth touch screen operation for moving a target function key icon being detected in the third function display area, move the target function key icon to a target position and rearrange all the function key icons in the third function information area.

[0133] In some embodiments, the apparatus further comprises the following modules:

[0134] The sixth partition display module is configured to, after obtaining the second partition setting of the display interface, obtain a third partition setting of the display interface in response to a sixth touch screen operation for hiding a function key being detected, the third partition setting comprising a third physiological data display area and a fourth function information display area; display the display content of the second physiological data display area in the third physiological data display area; and display the display content of the second function information display area in the fourth function information display area.

[0135] The display apparatus for a monitor provided in the embodiments of the present application can switch the display interface from the first partition setting to the second partition setting in response to a first touch screen operation meeting a preset re-partition rule being detected. Since the parameter setting related data, physiological data and function key icons can be displayed separately in the second partition setting, the problem of the parameter setting interface blocking part or even all the physiological data can be solved, thereby facilitating the medical staff to view the monitoring data in real time.

[0136] The embodiment of the present application provides a storage medium, which stores a program, and the program is executed by a processor to realize the display method applied to a monitor.

[0137] Those skilled in the art can understand that all or part of the functions of the various methods in the above embodiments can be realized by means of hardware or by means of a computer program. When all or part of the functions in the above embodiments are realized by means of a computer program, the program can be stored in a computer readable storage medium, and the storage medium can include: a read-only memory, a random access memory, a magnetic disk, an optical disk, a hard disk, etc. The above functions are realized by executing the program by a computer. For example, the program is stored in a memory of a device, and when the program in the memory is executed by a processor, all or part of the above functions can be realized. In addition, when all or part of the functions in the above embodiments are realized by means of a computer program, the program can also be stored in a storage medium such as a server, another computer, a disk, an optical disk, a flash disk or a mobile hard disk, and is saved in a memory of a local device by downloading or copying, or the system of the local device is updated in version, and when the program in the memory is executed by a processor, all or part of the functions in the above embodiments can be realized.

[0138] The above application is described by using specific examples, which is only used to help understanding the present application, and does not limit the present application. According to the idea of the present application, those skilled in the art can change the above specific embodiments.

Claims

1. A monitor characterized by, The application relates to a physiological data monitoring device, comprising: at least one physiological data monitoring module, a memory, a touch display screen and a processor; the at least one physiological data monitoring module is used for monitoring at least one physiological data of a patient, wherein the at least one physiological data comprises at least one of electrocardiogram data, blood oxygen saturation data, body temperature data, respiration data, heart rate data and blood pressure data; the memory is used for storing programs and the at least one physiological data; the touch display screen is used for receiving touch screen operations under the control of the processor, wherein the touch screen operations at least comprise a first touch screen operation conforming to a preset re-partitioning rule; the processor is used for running the programs in the memory to realize the following processes: acquiring a first partition setting on the display interface of the touch display screen, wherein the first partition setting comprises a first physiological data display area and a first function information display area, and the area of the first physiological data display area is larger than the area of the first function information display area; displaying the at least one physiological data in the first physiological data display area, wherein the at least one physiological data comprises text numerical information and waveform data of at least one physiological parameter; displaying data other than the at least one physiological data in the first function information display area, wherein the data other than the at least one physiological data comprises one or more of patient information, alarm information, power information, volume information, attribute setting buttons and wireless information; detecting the touch screen operations received by the touch display screen; if the first touch screen operation is detected, acquiring a second partition setting of the display interface to switch the display interface from the first partition setting to the second partition setting, wherein the second partition setting comprises a second function information display area and a third function information display area, the data other than the at least one physiological data is displayed in the second function information display area, the second function information display area comprises a pop-up window, and the text numerical information of the at least one physiological parameter is displayed in the third function information display area; and wherein during the switching of the display interface from the first partition setting to the second partition setting, the at least one physiological data being displayed is continuously displayed; and the switched display interface at least meets one of the following conditions: the area of the third function information display area is smaller than the area of the first physiological data display area; and the area of the second function information display area is equal to or larger than the area of the first function information display area.

2. The monitor of claim 1, wherein, the first function information display area is located at the edge of the display interface, and / or the third function information display area is located at the edge of the display interface.

3. The monitor of claim 1, wherein, the third function information display area and the first function information display area are vertically arranged on the display interface.

4. The monitor of claim 1, wherein, the distribution of the display interface obtained based on the second partition setting adopts the following mode: only the text numerical information of the at least one physiological parameter is displayed in the third function information display area, and the waveform data of the at least one physiological parameter is not displayed.

5. The monitor of claim 1, wherein, the processor is further used for running the programs in the memory to realize the following processes: At least one function button icon is also displayed in the third function information display area, and the function button icon is used to represent a corresponding function operation.

6. The monitor of claim 1, wherein, The processor is further configured to execute a program in the memory to implement the following process: The display interface is switched from the second partition setting to the first partition setting when any of the following conditions is met: No other touch screen operation is detected within a first preset time period; A second touch screen operation is detected in a preset area of the display interface; A third touch screen operation that meets a first preset operation track is detected.

7. The monitor of any one of claims 1 to 6, wherein, The touch screen operation further includes a sixth touch screen operation used to represent an expanded display of the function button icon, and the processor is further configured to execute a program in the memory to implement the following process: If the sixth touch screen operation is detected, the function button icon and the text numerical value information of the at least one physiological parameter are simultaneously displayed in the third function information display area in response to the sixth touch screen operation.

8. A display method applied to a monitor, characterized by, Comprise: A first partition setting on a touch display screen display interface is acquired, and the first partition setting includes a first physiological data display area and a first function information display area, wherein the area of the first physiological data display area is greater than the area of the first function information display area; At least one physiological data is displayed in the first physiological data display area, and the at least one physiological data includes text numerical value information and waveform data of at least one physiological parameter; Data other than the at least one physiological data is displayed in the first function information display area, and the data other than the at least one physiological data includes one or more of patient information, alarm information, power information, volume information, attribute setting buttons, and wireless information; A touch screen operation received by the touch display screen is detected, and the touch screen operation at least includes a first touch screen operation that meets a preset re-partition rule; If the first touch screen operation is detected, a second partition setting of the display interface is acquired to switch the display interface from the first partition setting to the second partition setting, and the second partition setting includes a second function information display area and a third function information display area, wherein data other than the at least one physiological data is displayed in the second function information display area, and the second function information display area includes a pop-up window, and text numerical value information of the at least one physiological parameter is displayed in the third function information display area; and wherein during the switching of the display interface from the first partition setting to the second partition setting, the at least one physiological data being displayed is continuously displayed, and the switched display interface at least meets one of the following conditions: The area of the third function information display area is less than the area of the first physiological data display area; The area of the second function information display area is equal to or greater than the area of the first function information display area.

9. The method of claim 8, wherein, The first function information display area is located at an edge of the display interface, and / or the third function information display area is located at an edge of the display interface.

10. The method of claim 8, wherein, The third function information display area and the first function information display area are vertically arranged on the display interface.

11. The method of claim 8, wherein, The distribution of the display interface obtained based on the second partition setting is in the following manner: Only text numerical information of the at least one physiological parameter is displayed in the third functional information display area, but the waveform data of the at least one physiological parameter is not displayed.

12. The method of claim 8, wherein, Further comprising: At least one functional key icon is further displayed in the third functional information display area, and the functional key icon is used to represent a corresponding function operation.

13. The method of claim 8, wherein, Further comprising: When any of the following conditions is met, the display interface is switched from the second partition setting to the first partition setting; No other touch screen operation is detected within a first preset time length; A second touch screen operation is detected in a preset area of the display interface; A third touch screen operation conforming to a first preset operation track is detected.

14. The method according to any one of claims 8 to 13, characterized in that, The touch screen operation further comprises a sixth touch screen operation used to represent an expanded display of a functional key icon, and the method further comprises: If the sixth touch screen operation is detected, the functional key icon and the text numerical information of the at least one physiological parameter are simultaneously displayed in the third functional information display area in response to the sixth touch screen operation.

15. A display method applied to a monitor, characterized by, Comprising: A first partition setting on a touch display screen display interface is obtained, the first partition setting comprises a first display area and a second display area, wherein at least one physiological data is displayed in the first display area, and the at least one physiological data comprises text numerical information and waveform data of at least one physiological parameter; data other than the at least one physiological data is displayed in the second display area; and wherein the area of the first display area is greater than the area of the second display area; A touch screen operation received by the touch display screen is detected, and the touch screen operation at least comprises a first touch screen operation conforming to a preset re-partition rule; If the first touch screen operation is detected, a second partition setting of the display interface is obtained to switch the display interface from the first partition setting to the second partition setting, the second partition setting comprises a third display area and a fourth display area, wherein data other than the at least one physiological data is displayed in the third display area, and the third display area comprises a pop-up window, and text numerical information of the at least one physiological parameter is displayed in the fourth display area; and wherein during the switching of the display interface from the first partition setting to the second partition setting, the at least one physiological data being displayed is continuously displayed, and the switched display interface at least meets one of the following conditions: The area of the fourth display area is less than the area of the first display area; The area of the third display area is equal to or greater than the area of the second display area.

16. The method of claim 15, wherein, The first display area is located at an edge of the display interface, and / or the fourth display area is located at an edge of the display interface.

17. The method of claim 15, wherein, The fourth display area and the first display area are vertically arranged on the display interface.

18. The method of claim 15, wherein, The distribution of the display interface obtained based on the second partition setting is in the following manner: Only text numerical information of the at least one physiological parameter is displayed in the fourth display area, but the waveform data of the at least one physiological parameter is not displayed.

19. The method of claim 15, wherein, Further comprising: At least one function button icon is also displayed in the fourth display area, and the function button icon is used to represent a corresponding function operation.

20. The method of claim 15, wherein, Further comprising: When any of the following conditions is met, the display interface is switched from the second partition setting to the first partition setting; No other touch screen operation is detected within a first preset time period; A second touch screen operation is detected in a preset area of the display interface; A third touch screen operation conforming to a first preset operation track is detected.

21. The method of any one of claims 15-20, wherein, The touch screen operation further comprises a sixth touch screen operation used to represent an expanded display of the function button icon, and the method further comprises: If the sixth touch screen operation is detected, the function button icon and the text numerical information of the at least one physiological parameter are simultaneously displayed in the fourth display area in response to the sixth touch screen operation.

Citation Information

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