Monitoring information display method, monitoring system and related equipment
Patent Information
- Application Number
- CN202280101277.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2022-10-28
- Filing Date
- 2022-11-28
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2042-11-28
AI Technical Summary
When existing bedside monitoring equipment displays physiological parameter information collected by mobile monitoring equipment, the display effect is single and cannot meet the diverse monitoring needs.
Design a monitoring system, including a bedside monitoring device and a mobile monitoring device that can be attached to the human body. Through different display modes and monitoring modes, the bedside monitoring device can distinguish and display first physiological parameter information and wearable activity information, or display The second physiological parameter information supports diverse monitoring display.
The monitoring display effect is improved, and the display mode of the bedside monitoring device can be dynamically adjusted according to the different monitoring modes of the mobile monitoring device to meet diverse monitoring needs.
Smart Images

Figure CN120077635A_ABST
Abstract
Description
Monitoring information display method, monitoring system and related equipment
[0001] CROSS-REFERENCE TO RELATED APPLICATIONS
[0002] This application is based on the international patent application with international application number PCT / CN2022 / 128414, application date October 28, 2022, and application name “Information Display Method and Bedside Monitoring Device”, and claims the priority of the international patent application. The entire contents of the international patent application are hereby incorporated into this application by introduction. Technical Field
[0003] The present invention relates to the technical field of medical equipment, and in particular to a monitoring information display method, a monitoring system and related equipment. Background Art
[0004] Bedside monitors can collect and display physiological parameter signals from the human body, allowing medical staff to check them in a timely manner and determine the patient's physical condition.
[0005] At present, mobile monitoring equipment can collect physiological parameter signals of the human body as the patient moves. Bedside monitors usually display physiological parameter information determined by physiological parameter signals collected independently by mobile monitoring equipment or bedside monitors in a fixed mode, and the monitoring display effect is single.
[0006] Summary of the Invention
[0007] The embodiments of the present application are intended to provide a monitoring information display method, a monitoring system and related equipment.
[0008] The technical solution of the embodiment of the present application is implemented as follows:
[0009] An embodiment of the present application provides a monitoring system, comprising: a bedside monitoring device and a mobile monitoring device attachable to a human body;
[0010] The display mode of the bedside monitoring device includes a first display mode and a second display mode;
[0011] The monitoring modes of the mobile monitoring device include a first monitoring mode and a second monitoring mode;
[0012] The frequency at which the mobile monitoring device operates in the first monitoring mode is lower than the frequency at which it operates in the second monitoring mode; the frequency at which the mobile monitoring device operates in the first monitoring mode is lower than the frequency at which it operates in the second monitoring mode, including at least one of the following two situations: the signal acquisition frequency of the mobile monitoring device operating in the first monitoring mode is lower than the signal acquisition frequency of the mobile monitoring device operating in the second monitoring mode, and the data transmission frequency of the mobile monitoring device operating in the first monitoring mode is lower than the data transmission frequency of the mobile monitoring device operating in the second monitoring mode;
[0013] When the display mode of the bedside monitoring device is the first display mode and the mobile monitoring device operates in the first monitoring mode, the bedside monitoring device obtains first physiological parameter information and wearing activity information, and displays the first physiological parameter information and the wearing activity information separately;
[0014] When the display mode of the bedside monitoring device is the second display mode and the mobile monitoring device operates in the second monitoring mode, the bedside monitoring device at least obtains second physiological parameter information and displays the second physiological parameter information;
[0015] The first physiological parameter information and the second physiological parameter information are obtained by the bedside monitoring device receiving the physiological parameter signal of the human body collected by the mobile monitoring device and processing the physiological parameter signal of the human body, or by the bedside monitoring device receiving the physiological parameter information of the human body generated by the mobile monitoring device;
[0016] The wearing activity information is obtained by the bedside monitoring device receiving the non-physiological parameter signal collected by the mobile monitoring device and at least processing the non-physiological parameter signal, or the bedside monitoring device receives the wearing activity information of the human body generated by the mobile monitoring device;
[0017] The wearable activity information includes at least one of posture information, position information, exercise time, and sleep time of the human body.
[0018] An embodiment of the present application provides a monitoring system display method, which is applied to a monitoring system, wherein the monitoring system includes a bedside monitoring device and a mobile monitoring device that can be attached to a human body, wherein the display mode of the bedside monitoring device includes a first display mode and a second display mode, and the monitoring mode of the mobile monitoring device includes a first monitoring mode and a second monitoring mode;
[0019] The method comprises:
[0020] When the display mode of the bedside monitoring device is the first display mode and the mobile monitoring device operates in the first monitoring mode:
[0021] The bedside monitoring device receives the physiological parameter signal of the human body collected by the mobile monitoring device and processes the physiological parameter signal of the human body to obtain first physiological parameter information, or the bedside monitoring device receives the first physiological parameter information of the human body generated by the mobile monitoring device;
[0022] The bedside monitoring device receives the non-physiological parameter signal collected by the mobile monitoring device and processes at least the non-physiological parameter signal to obtain wear activity information, or the bedside monitoring device receives the wear activity information of the human body generated by the mobile monitoring device, wherein the wear activity information includes at least one of posture information, position information, exercise time, and sleep time of the human body;
[0023] The bedside monitoring device distinguishes and displays the first physiological parameter information and the wearing activity information;
[0024] When the display mode of the bedside monitoring device is the second display mode and the mobile monitoring device operates in the second monitoring mode,
[0025] The bedside monitoring device receives the physiological parameter signal of the human body collected by the mobile monitoring device and processes the physiological parameter signal of the human body to obtain second physiological parameter information, or the bedside monitoring device receives the second physiological parameter information of the human body generated by the mobile monitoring device;
[0026] The bedside monitoring device displays the second physiological parameter information.
[0027] An embodiment of the present application provides a bedside monitoring device, the bedside monitoring device comprising: a communication unit, a processor, a memory, and a display;
[0028] The communication unit wirelessly communicates with a mobile monitoring device attached to a human body;
[0029] The communication unit is used to receive the physiological parameter signal of the human body collected by the mobile monitoring device and process the physiological parameter signal of the human body by the processor to obtain physiological parameter information, or receive the physiological parameter information of the human body generated by the mobile monitoring device;
[0030] The communication unit is further configured to receive the non-physiological parameter signal collected by the mobile monitoring device and process the non-physiological parameter signal at least by the processor to obtain the wearing activity information, or receive the wearing activity information of the human body generated by the mobile monitoring device;
[0031] The memory is configured to store executable instructions, and the processor is configured to execute the executable instructions, so that the processor performs the following operations:
[0032] When the display mode of the bedside monitoring device is the first display mode, obtaining first physiological parameter information and wearing activity information, and controlling the display to distinguish and display the first physiological parameter information and the wearing activity information;
[0033] When the display mode of the bedside monitoring device is the second display mode, at least obtaining second physiological parameter information, and controlling the display to display the second physiological parameter information;
[0034] The wearable activity information includes at least one of the posture information, position information, exercise time and sleep time of the human body.
[0035] An embodiment of the present application provides a mobile monitoring device, wherein the monitoring mode of the mobile monitoring device includes a first monitoring mode and a second monitoring mode;
[0036] The frequency at which the mobile monitoring device operates in the first monitoring mode is lower than the frequency at which it operates in the second monitoring mode; the frequency at which the mobile monitoring device operates in the first monitoring mode is lower than the frequency at which it operates in the second monitoring mode, including at least one of the following two situations: the signal acquisition frequency of the mobile monitoring device operating in the first monitoring mode is lower than the signal acquisition frequency of the mobile monitoring device operating in the second monitoring mode, and the data transmission frequency of the mobile monitoring device operating in the first monitoring mode is lower than the data transmission frequency of the mobile monitoring device operating in the second monitoring mode;
[0037] The mobile monitoring device includes a first acquisition module, a second acquisition module, a processor and a communication unit, wherein:
[0038] The first acquisition module is used to acquire physiological parameter signals of a human body or process the acquired physiological parameter signals to obtain physiological parameter information of the human body;
[0039] The second acquisition module is used to acquire non-physiological parameter signals or at least process the acquired non-physiological parameter signals to obtain the wearable activity information of the human body;
[0040] The communication unit is used to establish a communication connection with the bedside monitoring device;
[0041] The processor is configured to perform the following operations:
[0042] When the monitoring mode of the mobile monitoring device is the first monitoring mode, sending a first physiological parameter signal or first physiological parameter information, and sending a non-physiological parameter signal or the wearable activity information to the bedside monitoring device through the communication unit, so that the bedside monitoring device displays the first physiological parameter information and the wearable activity information; wherein the wearable activity information includes at least one of human body posture information, position information, exercise time, and sleep time;
[0043] When the monitoring mode of the mobile monitoring device is the second monitoring mode, a second physiological parameter signal or second physiological parameter information is sent to the bedside monitoring device through the communication unit, so that the bedside monitoring device displays the second physiological parameter information.
[0044] An embodiment of the present application provides a monitoring information display method, which is applied to a bedside monitoring device that communicates with a mobile monitoring device that can be attached to a human body;
[0045] The method comprises:
[0046] The bedside monitoring device receives the physiological parameter signal of the human body collected by the mobile monitoring device and processes the physiological parameter signal of the human body to obtain first physiological parameter information, or the bedside monitoring device receives the first physiological parameter information of the human body generated by the mobile monitoring device;
[0047] The bedside monitoring device receives the non-physiological parameter signal collected by the mobile monitoring device and processes at least the non-physiological parameter signal to obtain the wear activity information, or the bedside monitoring device receives the wear activity information of the human body generated by the mobile monitoring device;
[0048] The bedside monitoring device distinguishes and displays the first physiological parameter information and the wearable activity information; wherein the wearable activity information includes at least one of human body posture information, position information, exercise time and sleep time.
[0049] A bedside monitoring device, comprising: a communication unit, a processor, a memory, and a display;
[0050] The communication unit wirelessly communicates with a mobile monitoring device attached to a human body;
[0051] The communication unit is used to receive the physiological parameter signal of the human body collected by the mobile monitoring device and process the physiological parameter signal of the human body by the processor to obtain physiological parameter information, or receive the physiological parameter information of the human body generated by the mobile monitoring device;
[0052] The communication unit is further configured to receive the non-physiological parameter signal collected by the mobile monitoring device and process the non-physiological parameter signal at least by the processor to obtain the wearing activity information, or receive the wearing activity information of the human body generated by the mobile monitoring device;
[0053] The memory is configured to store executable instructions, and the processor is configured to execute the executable instructions, so that the processor performs the following operations:
[0054] The processor acquires first physiological parameter information and the wearing activity information, and controls the display to distinguish and display the first physiological parameter information and the wearing activity information;
[0055] The wearable activity information includes at least one of human body posture information, position information, exercise time and sleep time.
[0056] An embodiment of the present application provides a mobile monitoring device, comprising a first acquisition module, a second acquisition module, a processor, and a communication unit, wherein:
[0057] The first acquisition module is used to acquire physiological parameter signals of a human body or process the acquired physiological parameter signals to obtain physiological parameter information of the human body;
[0058] The second acquisition module is used to acquire non-physiological parameter signals or at least process the acquired non-physiological parameter signals to obtain the wearable activity information of the human body;
[0059] The communication unit is used to establish a communication connection with the bedside monitoring device;
[0060] The processor is configured to perform the following operations:
[0061] sending a first physiological parameter signal or first physiological parameter information to the bedside monitoring device through the communication unit; and sending a non-physiological parameter signal or the wearing activity information through the communication unit, so that the bedside monitoring device displays the first physiological parameter information and the wearing activity information;
[0062] The wearable activity information includes at least one of human body posture information, position information, exercise time and sleep time.
[0063] An embodiment of the present application provides a monitoring system, comprising: a bedside monitoring device and a mobile monitoring device attachable to a human body;
[0064] The bedside monitoring device establishes a communication connection with the mobile monitoring device;
[0065] Wherein, the bedside monitoring device is the above-mentioned bedside monitoring device.
[0066] The embodiment of the present application provides a monitoring information display method, a monitoring system and related equipment, the monitoring system comprising: a bedside monitoring device and a mobile monitoring device attachable to a human body; the display mode of the bedside monitoring device comprises a first display mode and a second display mode; the monitoring mode of the mobile monitoring device comprises a first monitoring mode and a second monitoring mode; wherein, the frequency of the mobile monitoring device operating in the first monitoring mode is lower than the frequency of the mobile monitoring device operating in the second monitoring mode; the frequency of the mobile monitoring device operating in the first monitoring mode is lower than the frequency of the mobile monitoring device operating in the second monitoring mode, which includes at least one of the following two situations: the signal acquisition frequency of the mobile monitoring device operating in the first monitoring mode is lower than the signal acquisition frequency of the mobile monitoring device operating in the second monitoring mode, and the data transmission frequency of the mobile monitoring device operating in the first monitoring mode is lower than the data transmission frequency of the mobile monitoring device operating in the second monitoring mode; when the display mode of the bedside monitoring device is the first display mode and the mobile monitoring device operates in the first monitoring mode, the bedside monitoring device The device obtains first physiological parameter information and wearable activity information, and displays the first physiological parameter information and the wearable activity information separately; when the display mode of the bedside monitoring device is the second display mode and the mobile monitoring device operates in the second monitoring mode, the bedside monitoring device at least obtains the second physiological parameter information and displays the second physiological parameter information; wherein the first physiological parameter information and the second physiological parameter information are obtained by the bedside monitoring device receiving the physiological parameter signal of the human body collected by the mobile monitoring device and processing the physiological parameter signal of the human body, or the bedside monitoring device receives the physiological parameter information of the human body generated by the mobile monitoring device; the wearable activity information is obtained by the bedside monitoring device receiving the non-physiological parameter signal collected by the mobile monitoring device and at least processing the non-physiological parameter signal, or the bedside monitoring device receives the wearable activity information of the human body generated by the mobile monitoring device; the wearable activity information includes at least one of the posture information, position information, exercise time and sleep time of the human body. The technical solution provided by the embodiment of the present application can display monitoring information in different display modes for different monitoring modes of the mobile monitoring device, support diverse monitoring displays, and improve the monitoring display effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0067] FIG1 is a schematic diagram of the structure of a monitoring system provided in an embodiment of the present application;
[0068] FIG2 is a schematic structural diagram of a bedside monitoring device provided in an embodiment of the present application;
[0069] FIG3 is a schematic structural diagram of a mobile monitoring device provided in an embodiment of the present application;
[0070] FIG4 is a first schematic diagram of an exemplary display interface provided in an embodiment of the present application;
[0071] FIG5 is a schematic diagram of an exemplary area division of a display interface provided in an embodiment of the present application;
[0072] FIG6 is a second schematic diagram of an exemplary display interface provided in an embodiment of the present application;
[0073] FIG7 is a third schematic diagram of an exemplary display interface provided in an embodiment of the present application;
[0074] FIG8 is a fourth schematic diagram of an exemplary display interface provided in an embodiment of the present application;
[0075] FIG9 is a fifth schematic diagram of an exemplary display interface provided in an embodiment of the present application;
[0076] FIG10 is a sixth schematic diagram of an exemplary display interface provided in an embodiment of the present application;
[0077] FIG11 is a seventh schematic diagram of an exemplary display interface provided in an embodiment of the present application;
[0078] FIG12 is a schematic diagram eight of an exemplary display interface provided in an embodiment of the present application;
[0079] FIG13 is a ninth diagram of an exemplary display interface provided in an embodiment of the present application;
[0080] FIG14 is a schematic diagram 10 of an exemplary display interface provided in an embodiment of the present application;
[0081] FIG15 is a flowchart of a monitoring information display method according to an embodiment of the present application;
[0082] FIG16 is a second flow chart of a monitoring information display method provided in an embodiment of the present application;
[0083] FIG17 is a third flow chart of a monitoring information display method provided in an embodiment of the present application. DETAILED DESCRIPTION
[0084] In order to make the purpose, technical solutions and advantages of the embodiments of the present disclosure clearer, the technical solutions in the embodiments of the present disclosure will be clearly and completely described below in conjunction with the drawings in the embodiments of the present disclosure. Obviously, the described embodiments are part of the embodiments of the present disclosure, rather than all the embodiments. The following embodiments are used to illustrate the present disclosure, but are not used to limit the scope of the present disclosure. Based on the embodiments in the present disclosure, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present disclosure.
[0085] In the following description, reference is made to “some embodiments”, which describes a subset of all possible embodiments, but it will be understood that “some embodiments” may be the same subset or different subsets of all possible embodiments and may be combined with each other without conflict.
[0086] It should be pointed out that the terms "first\second\third" involved in the embodiments of the present disclosure are only used to distinguish similar objects and do not represent a specific ordering of the objects. It can be understood that "first\second\third" can be interchanged with the preset order or sequence when permitted, so that the embodiments of the present disclosure described here can be implemented in an order other than that illustrated or described here.
[0087] An embodiment of the present application provides a monitoring system. Figure 1 is a schematic diagram of the structure of a monitoring system provided in an embodiment of the present application. As shown in Figure 1, in an embodiment of the present application, the monitoring system includes: a bedside monitoring device 1 and a mobile monitoring device 2 that can be attached to the human body; the bedside monitoring device 1 establishes a communication connection with the mobile monitoring device 2.
[0088] It should be noted that in the embodiments of the present application, the bedside monitoring device 1 is typically placed in a fixed location, such as a hospital room, and cannot move with the patient's body. The mobile monitoring device 2, on the other hand, can be attached to the patient's body and can move with the patient's body. Both the bedside monitoring device 1 and the mobile monitoring device 2 can provide medical monitoring of the patient. The communication connection established between the bedside monitoring device 1 and the mobile monitoring device 2 can be a wireless communication connection, or, of course, a wired communication connection.
[0089] It should be noted that in the embodiments of the present application, the mobile monitoring device 2 can collect physiological parameter signals of the human body, which may specifically include signals such as the human electrocardiogram (ECG) signal, respiratory signal, blood oxygen saturation (BOS) signal, blood pressure signal, and body temperature signal. These signals can be processed to obtain corresponding physiological parameter information such as ECG parameters, respiratory parameters, blood oxygen saturation (BOS) parameters, blood pressure parameters, and body temperature parameters. The mobile monitoring device 2 includes at least one physiological parameter monitoring module, and the physiological parameter signals are determined by the at least one physiological parameter monitoring module.
[0090] It should be noted that in the embodiments of the present application, the mobile monitoring device 2 can collect physiological parameter signals and non-physiological parameter signals of the human body when the human body is in different positions. The non-physiological parameter signals are determined by the mobile monitoring device 2 attached to the human body by monitoring the sensor signals of the mobile monitoring device 2 itself. For example, the mobile monitoring device 2 may also include devices such as a gyroscope and an accelerometer to monitor the sensor signals of the mobile monitoring device 2 itself to determine wearable activity information such as position information and posture information.
[0091] It should be noted that in the embodiment of the present application, the bedside monitoring device 1 can also collect physiological parameter signals of the human body, and its type can be at least partially the same as the physiological parameter signals collected by the mobile monitoring device 2. Of course, it can also be completely different, which is not limited in the embodiment of the present application.
[0092] Figure 2 is a schematic diagram of the structure of a bedside monitoring device provided in an embodiment of the present application. As shown in Figure 2, in an embodiment of the present application, the bedside monitoring device 1 includes: a communication unit 11, a processor 12, a memory 13 and a display 14;
[0093] The communication unit 11 wirelessly communicates with the mobile monitoring device 2 attached to the human body;
[0094] The communication unit 11 is used to receive the physiological parameter signals of the human body collected by the mobile monitoring device 2 and process the physiological parameter signals of the human body through the processor 12 to obtain physiological parameter information, or receive the physiological parameter information of the human body generated by the mobile monitoring device 2;
[0095] The communication unit 11 is further configured to receive the non-physiological parameter signals collected by the mobile monitoring device 2 and process the non-physiological parameter signals at least through the processor to obtain wear activity information, or receive wear activity information of the human body generated by the mobile monitoring device 2;
[0096] The memory 13 is used to store executable instructions, and the processor 12 is used to execute the executable instructions, so that the processor 12 performs the following operations:
[0097] The processor 12 obtains the first physiological parameter information and the wearing activity information, and controls the display 14 to display the first physiological parameter information and the wearing activity information separately;
[0098] The wearable activity information includes at least one of human body posture information, position information, exercise time and sleep time.
[0099] FIG3 is a schematic diagram of the structure of a mobile monitoring device provided in an embodiment of the present application. As shown in FIG3 , in an embodiment of the present application, the mobile monitoring device 2 includes a first acquisition module 21, a second acquisition module 22, a processor 23 and a communication unit 24, wherein:
[0100] The first acquisition module 21 is used to acquire physiological parameter signals of the human body or process the acquired physiological parameter signals to obtain physiological parameter information of the human body;
[0101] The second acquisition module 22 is used to collect non-physiological parameter signals or at least process the collected non-physiological parameter signals to obtain wearable activity information of the human body;
[0102] The communication unit 24 is used to establish a communication connection with the bedside monitoring device 1;
[0103] The processor 23 is configured to perform the following operations:
[0104] sending a first physiological parameter signal or first physiological parameter information to the bedside monitoring device 1 through the communication unit 24; and sending a non-physiological parameter signal or wearing activity information through the communication unit 24, so that the bedside monitoring device 1 displays the first physiological parameter information and the wearing activity information;
[0105] The wearable activity information includes at least one of human body posture information, position information, exercise time and sleep time.
[0106] It should be noted that in the embodiments of the present application, referring to the above-mentioned bedside monitoring device 1 and mobile monitoring device 2, it can be the bedside monitoring device 1 that determines the physiological parameter information and / or wear activity information of the human body, or it can be the mobile monitoring device 2 that determines the physiological parameter information and / or wear activity information of the human body. The specific execution entity can be determined according to actual needs and application scenarios, and the embodiments of the present application are not limited.
[0107] For example, in an embodiment of the present application, as shown in FIG4 , the processor 12 in the bedside monitoring device 1 controls the display 14 to display the first physiological parameter information, including: electrocardiogram (ECG) parameters, respiration (Resp) parameters, blood oxygen saturation (SpO2) parameters, blood pressure (NIBP) parameters, and body temperature (Temp) parameters. These physiological parameters are displayed only in numerical form. Wearable activity information includes human body posture information, location information, exercise time, sleep time, and EWS score. As shown in Figure 4, in the wearable activity information, the posture information is displayed in the form of an icon representing the human posture, specifically an icon of a walking person. The location information is displayed in text form, specifically "West Corridor of Hepatobiliary Surgery Department on the 2nd Floor". The exercise time and sleep time are both displayed in the form of numerical values and time bars. The total length of the exercise time bar represents the time of one day, and the filled part in the time bar represents the period of human exercise. The numerical value of the exercise time is the duration of human exercise. The total length of the sleep time bar represents the duration from 8pm to 8am, and the filled part in the time bar represents the period of human sleep. The numerical value of the sleep time is the total duration of human sleep. The EWS score is displayed in the form of a numerical value, specifically the numerical value "4" displayed in the circular icon in the figure.
[0108] In an embodiment of the present application, the first physiological parameter information may include multiple first main parameter data and at least one second main parameter data, wherein the first main parameter data is numerical data, and furthermore, may include numerical first auxiliary parameter data and / or at least one waveform data. The font of the multiple first main parameter data included in the first physiological parameter information is larger than the font of the at least one second main parameter data included in the wear activity information. Optionally, the first main parameter data may represent a higher degree of importance and / or more obviousness of physiological changes in the human body than the second main parameter data, and therefore, the first main parameter data is displayed in a larger font for easier viewing.
[0109] In an embodiment of the present application, the interface displayed by the display 14 can be divided into different display areas, see Figure 5, which can be divided into: a wear information area, a parameter area, a status bar and a hot key area, wherein the wear information area is the first display area, and the parameter area is the second display area. The specific area division, the number of areas, and the area size of each area and the information used for display can be set according to actual needs. The second display area includes multiple sub-display areas, and at least some of the sub-display areas in the multiple sub-display areas have the same area. A sub-display area is used to display a first main parameter data, and the area occupied by the first main parameter data displayed in each sub-display area exceeds the preset threshold of the area of the sub-display area to which it belongs. The specific preset threshold can be set according to actual needs and application scenarios, and is not limited in the embodiment of the present application.
[0110] It should be noted that in an embodiment of the present application, the area occupied by the first main parameter data displayed in each sub-display area can exceed 40%, 50%, or even a larger proportion of the area of the sub-display area to which it belongs. In this way, the display of the first main parameter data in each sub-area is more obvious and prominent, making it easier to view.
[0111] In an embodiment of the present application, the processor 12 in the bedside monitoring device 1 controls the display 14 to distinguish and display the first physiological parameter information and the wear activity information, including: controlling the display 14 to distinguish and display the first physiological parameter information and the wear activity information with different colors and / or different marks. Referring to Figure 4, the first physiological parameter information and the wear activity information can be distinguished and displayed with multiple colors and multiple marks. Specifically, the electrocardiogram (ECG) parameter can be a value "92" displayed in green, the blood pressure (NIBP) parameter can be a value "98" displayed in blue, the respiration (Resp) parameter can be a value "18" displayed in yellow, and the body temperature (Temp) parameter can be a value "36.8" displayed in white, so that medical staff can distinguish different information and quickly view it. Optionally, the first physiological parameter information is displayed in a first color / first tone, and the wear activity information is displayed in a second color / second tone, the first color and the second color are different colors, and the first tone and the second tone are different tones. Optionally, the first physiological parameter information specifically includes different parameters, which can be displayed in different colors / different tones, and the wearing activity information specifically includes different information, which can also be displayed in different colors / different tones.
[0112] In an embodiment of the present application, the processor 12 in the bedside monitoring device 1 controls the display 14 to distinguish and display the first physiological parameter information and the wearing activity information, including: controlling the display 14 to display the wearing activity information in the first display area and displaying the first physiological parameter information in the second display area.
[0113] It should be noted that in the embodiments of the present application, the first display area can be displayed in the top, bottom, left and right of the interface, and can be folded and expanded; the position can be dragged at will, and the user can customize it according to his or her preferences; the display content of the first display area can be set to any combination; the detailed information displayed by clicking on the target information item in the first display area can have no obstruction on the first physiological parameter information displayed in the second display area.
[0114] It should be noted that in the embodiment of the present application, the first display area and the second display area are arranged vertically or horizontally. Referring to Figure 5, the first display area and the second display area are arranged horizontally, and the first display area is located to the left of the second display area.
[0115] In an embodiment of the present application, the bedside monitoring device adjusts the arrangement of the first display area and the second display area based on an adjustment instruction input by a user; wherein the adjustment instruction includes:
[0116] In the case where the first display area and the second display area are arranged vertically, an instruction for instructing adjustment of the vertical position between the first display area and the second display area, or an instruction for instructing adjustment of the first display area and the second display area to a horizontal arrangement;
[0117] When the first display area and the second display area are arranged horizontally, the command is used to indicate the left-right position adjustment between the first display area and the second display area, or the command is used to indicate the first display area and the second display area to be adjusted to the top-bottom arrangement.
[0118] It is understood that in the embodiments of the present application, the arrangement positions of the first display area and the second display area can be adjusted independently according to actual needs. For example, the first display area and the second display area are arranged side by side, wherein the first display area is on the left and the second display area is on the right. Referring to FIG. 5 , the first display area can be adjusted from the left to the right on the interface displayed on the display 14 according to the instruction indicating that the first display area is adjusted from the left to the right, and accordingly, the second display area is adjusted from the right to the left.
[0119] It should be noted that, in the embodiment of the present application, the adjustment instruction can specifically be a moving operation, and the processor 12 in the bedside monitoring device 1 can adjust the arrangement position of the display area according to the movement trajectory of the moving operation. For example, referring to Figure 5, the user can touch any position in the first display area displayed on the display 14, and then perform a drag action to the right, thereby generating a movement trajectory from left to right. The first display area will move from the left to the right following the movement trajectory, and accordingly, the second display area can adaptively move from the right to the left. In addition, the adjustment instruction can also be a click operation, a touch gesture, etc., and the specific adjustment instruction is not limited in the embodiment of the present application.
[0120] In an embodiment of the present application, the processor 12 in the bedside monitoring device 1 may control the display 14 to display detailed information of the target information item in the third display area based on an operation instruction input by the user for the target information item, and the third display area partially or completely covers the first display area;
[0121] Alternatively, based on an operation instruction input by the user for the target information item, the display 14 is controlled to display part of the wearing activity information in the first display area and display detailed information of the target information item in the first display area;
[0122] Alternatively, based on an operation instruction input by the user for the target information item, the display 14 is controlled not to display the wearing activity information in the first display area, and detailed information of the target information item is displayed in the first display area;
[0123] The target information item is any item of wearing activity information.
[0124] It will be appreciated that in the embodiments of the present application, upon receiving an operation instruction for any item of wearable activity information, i.e., a target information item, such as a selection operation, the processor 12 in the bedside monitoring device 1 may control the display 14 to display detailed information of the target information item in a third display area that partially or completely covers the first display area. Optionally, the third display area has the same area as the first display area and completely covers the first display area, obscuring the wearable activity information. After the medical staff views the detailed information of the target information item, the processor 12 may control the display 14 to stop displaying the third display area. In this case, the first display area will not be covered, allowing the medical staff to continue viewing the wearable activity information displayed in the first display area. Optionally, the processor 12 may control the display 14 to stop displaying the third display area if the display time of the third display area reaches a certain length of time, or may control the display 14 to stop displaying the third display area in accordance with an instruction to stop displaying the third display area upon receiving an instruction to stop displaying the third display area. This embodiment of the present application is not limited thereto.
[0125] It is understood that in the embodiment of the present application, upon receiving an operation instruction for a target information item, the processor 12 in the bedside monitoring device 1 can also control the display 14 to display a portion of the wearable activity information in the first display area, and display the detailed information of the target information item in the first display area. In this way, while viewing the detailed information of the target information item, medical personnel can also simultaneously view the portion of the wearable activity information and the first physiological parameter information, facilitating a more accurate assessment of the patient's physical condition. The portion of the wearable activity information displayed in the first area can be set independently or selected based on the importance of the information, for example, selecting the more important portion of the wearable activity information for display, which is not limited in the embodiment of the present application.
[0126] It can be understood that in an embodiment of the present application, when the processor 12 in the bedside monitoring device 1 receives an operation instruction for the target information item, it can also control the display 14 not to display the wearing activity information in the first display area, and display the detailed information of the target information item in the first display area. At this time, the first physiological parameter information displayed in the second display area will not be blocked, and medical staff can view the first physiological parameter information at the same time as viewing the detailed information of the target information item.
[0127] For example, in an embodiment of the present application, referring to FIG4 , the wear activity information displayed in the first display area includes an EWS score. When the processor 12 in the bedside monitoring device 1 receives an operation instruction for the EWS score, it controls the display 14 to not display the original information in the first display area in the first display area, and displays detailed information of the EWS score, referring to FIG6 , specifically including a respiration (RR) parameter, a blood oxygen saturation (SpO2) parameter, an oxygen concentration (Supp.O2) parameter, a body temperature (Temp) parameter, a systolic blood pressure (BP-S) parameter, and a consciousness level (LOC) parameter. Each parameter corresponds to a sub-score, wherein the consciousness level (LOC) parameter is specifically Alert, indicating that the human body is sensitive to reaction. The sub-scores of each parameter are displayed in the form of a bar. The length of the bar is associated with the specific value of the sub-score. The longer the bar, the more the direction of the bar can reflect the change trend of the sub-score relative to the baseline threshold. A scale of the sub-score standard can also be displayed above the sub-parameter and the sub-score. Optionally, the displayed information can be closed based on the user's operation, and the information in the first area continues to be displayed. In addition, referring to Figure 6, a manual calculation (Calcuate) icon can also be displayed in the first display area, and the calculation of EWS can be started at any time by clicking it. A setup (Setup) icon can also be displayed, and the property setting window can be entered by clicking it to select other functions, page settings, and mode settings. A reset (Reset) icon can also be displayed, and a trend chart of historical human warning status scores can also be displayed, that is, the timeline displayed in the first display area and the different scores marked at different times on the timeline. The real-time status icon of the human body can also be displayed at the top, that is, the icon formed by the circle above the first display area and the value "7".
[0128] For example, in an embodiment of the present application, referring to FIG4 , the wearable activity information displayed in the first display area includes sleep time. Upon receiving an operation instruction for sleep time, the processor 12 in the bedside monitoring device 1 controls the display 14 to not display the original information in the first display area, but to display detailed information about sleep time. Referring to FIG7 , a curve graph of sleep time can be displayed. Furthermore, the control for sleep time is associated with the exercise time and sleep time details pages, so FIG7 can also display a bar graph of exercise time. Furthermore, since the duration of human exercise and sleep can reflect the degree of pain in the human body, the displayed detailed information also includes the human body's pain score.
[0129] In an embodiment of the present application, referring to Figure 4, when at least the posture information and other information of the human body are displayed in the first display area, the posture information and other information are arranged up and down; the other information includes at least one of position information, exercise time, sleep time and warning status evaluation. The warning status evaluation is determined by the bedside monitoring device receiving the physiological parameter signal collected by the mobile monitoring device and at least processing the physiological parameter signal, or the bedside monitoring device receiving the human body warning status evaluation generated by the mobile monitoring device.
[0130] It should be noted that, in the embodiment of the present application, when the first display area at least displays the posture information of the human body and other information, the posture information and other information may also be arranged left and right.
[0131] It should be noted that, in the embodiment of the present application, the area occupied by the posture information is not less than a preset proportion of the area of the first display area, such as 1 / 3, 2 / 5, etc.
[0132] In an embodiment of the present application, in the above-mentioned monitoring system, the display scheme of the bedside monitoring device 1 is the display mode of the bedside monitoring device 1, which can correspond to the monitoring mode of the mobile monitoring device 2. Different display modes correspond to different monitoring modes, which are described in detail below.
[0133] In an embodiment of the present application, referring to FIG1 , a monitoring system includes: a bedside monitoring device 1 and a mobile monitoring device 2 attachable to a human body;
[0134] The display mode of the bedside monitoring device 1 includes a first display mode and a second display mode;
[0135] The monitoring mode of the mobile monitoring device 2 includes a first monitoring mode and a second monitoring mode;
[0136] The frequency of the mobile monitoring device 2 operating in the first monitoring mode is lower than the frequency of the mobile monitoring device 2 operating in the second monitoring mode; the frequency of the mobile monitoring device 2 operating in the first monitoring mode is lower than the frequency of the mobile monitoring device 2 operating in the second monitoring mode, which includes at least one of the following two situations: the signal acquisition frequency of the mobile monitoring device 2 operating in the first monitoring mode is lower than the signal acquisition frequency of the mobile monitoring device 2 operating in the second monitoring mode, and the data transmission frequency of the mobile monitoring device 2 operating in the first monitoring mode is lower than the data transmission frequency of the mobile monitoring device 2 operating in the second monitoring mode;
[0137] When the display mode of the bedside monitoring device 1 is the first display mode and the mobile monitoring device 2 operates in the first monitoring mode, the bedside monitoring device 1 obtains the first physiological parameter information and the wearing activity information, and displays the first physiological parameter information and the wearing activity information separately;
[0138] When the display mode of the bedside monitoring device 1 is the second display mode and the mobile monitoring device 2 operates in the second monitoring mode, the bedside monitoring device 1 at least obtains the second physiological parameter information and displays the second physiological parameter information;
[0139] The first physiological parameter information and the second physiological parameter information are obtained by the bedside monitoring device 1 receiving the physiological parameter signal of the human body collected by the mobile monitoring device 2 and processing the physiological parameter signal of the human body, or by the bedside monitoring device 1 receiving the physiological parameter information of the human body generated by the mobile monitoring device 2;
[0140] The wearing activity information is obtained by the bedside monitoring device 1 receiving the non-physiological parameter signal collected by the mobile monitoring device 2 and at least processing the non-physiological parameter signal, or the bedside monitoring device 1 receives the human body wearing activity information generated by the mobile monitoring device 2;
[0141] The wearable activity information includes at least one of human body posture information, position information, exercise time, and sleep time.
[0142] It should be noted that, in the embodiment of the present application, among the monitoring modes of the mobile monitoring device 2, the first monitoring mode is actually a wearable mode in which the mobile monitoring device 2 performs human body monitoring when the mobile monitoring device 2 moves with the human body in a large range, and the second monitoring mode is actually a continuous mode in which the human body is basically in a specific area, for example, in a ward, and the mobile monitoring device 2 performs human body monitoring when the human body moves with the human body in a small range.
[0143] It should be noted that in the embodiments of the present application, the first display mode of the bedside monitoring device 1 corresponds to the mobile monitoring device 2 operating in the first monitoring mode; the second display mode of the bedside monitoring device 1 corresponds to the mobile monitoring device 2 operating in the second monitoring mode. Mobile monitoring device 2 can determine the monitoring mode and then notify the bedside monitoring device 1; when the mobile monitoring device 2 is operating in the first monitoring mode, the bedside monitoring device 1 uses the first display mode for display; when the mobile monitoring device 2 is operating in the second monitoring mode, the bedside monitoring device 1 uses the second display mode for display. Alternatively, when the bedside monitoring device 1 determines that the mobile monitoring device 2 needs to operate in the first monitoring mode or the second monitoring mode, the bedside monitoring device 1 notifies or controls the mobile monitoring device 2 to operate in the corresponding monitoring mode. Optionally, after notification or control, the bedside monitoring device 1 can adjust its own display mode to correspond to the monitoring mode of the mobile monitoring device 2. For example, the user controls the required display mode on the bedside monitoring device 1, and then notifies the mobile monitoring device 2 of the monitoring mode in which it operates; when the bedside monitoring device 1 is controlled to display in the first display mode, the mobile monitoring device 2 is notified to operate in the first monitoring mode; when the bedside monitoring device 1 is controlled to display in the second display mode, the mobile monitoring device 2 is notified to operate in the second monitoring mode.
[0144] It can be understood that in the embodiments of the present application, referring to Figures 2 and 3, the bedside monitoring device 1 includes a communication unit 11, and the mobile monitoring device 2 includes a communication unit 24. When the mobile monitoring device 2 operates in the first monitoring mode and the second monitoring mode, information is sent to the communication unit 11 of the bedside monitoring device 1 through the communication unit 24.
[0145] In an embodiment of the present application, the first physiological parameter information includes at least physiological parameter information of a numerical type, and the second physiological parameter information includes physiological parameter information of a numerical type and a waveform type.
[0146] For example, in an embodiment of the present application, as shown in FIG4 , when the display mode of the bedside monitoring device 1 is the first display mode, the first physiological parameter information displayed includes: electrocardiogram (ECG) parameters, respiration (Resp) parameters, blood oxygen saturation (SpO2) parameters, blood pressure (NIBP) parameters, and body temperature (Temp) parameters. These physiological parameters are displayed only in numerical form. Optionally, when the display mode of the bedside monitoring device 1 is the first display mode, a human early warning assessment, such as an EWS score, is also included.
[0147] Exemplarily, in an embodiment of the present application, as shown in FIG8 , when the display mode of the bedside monitoring device 1 is the second display mode, the second physiological parameter information displayed may include: electrocardiogram (ECG) parameters, respiration (Resp) parameters, blood oxygen saturation (SpO2) parameters, blood pressure (NIBP) parameters, and body temperature (Temp) parameters and pulse volume (Pleth) parameters, wherein these parameters are displayed in numerical form and / or waveform form. For example, in FIG8 , the electrocardiogram (ECG) parameters are specifically displayed in the form of an ECG waveform and an ECG numerical value, and the body temperature (Temp) parameter is specifically displayed in numerical form, that is, the displayed numerical value "36.8". In addition, as shown in FIG8 , some other relevant information of these parameters is also displayed, which can be set according to actual needs and is not limited in the embodiment of the present application. For example, above the body temperature (Temp) parameter "36.8", the time information "14:30" of the body temperature (Temp) parameter is displayed. As shown in FIG8 , the display 14 can also display historical trend information of the second physiological parameter information in numerical form, specifically displaying the heart rate (HR) parameter, blood oxygen saturation (SpO2) parameter, respiratory rate (RR) parameter and blood pressure (NIBP) parameter obtained every 30 minutes from 13:30 to 15:30.
[0148] In an embodiment of the present application, wearable activity information may include posture information, which includes at least one of sleeping state information, lying state information, moving state information, falling state information, and standing state information. The bedside monitoring device 1 displays different posture information in different icons and / or text forms. Specific display formats for different posture information can be found in Figures 4, 9, and 11.
[0149] In the embodiment of the present application, the posture information includes normal posture information and abnormal posture information; the prompt intensity corresponding to the abnormal posture information displayed by the bedside monitoring device 1 is higher than the prompt intensity corresponding to the normal posture information displayed by the bedside monitoring device 1.
[0150] It should be noted that for different human bodies, their normal posture information and abnormal posture information may be different. For example, for a certain human body, its abnormal posture information may be falling state information, and its normal posture information may be lying state information, sleeping state information, moving state information, etc. The embodiment of the present application is not limited to this. Abnormal posture information can be displayed with a higher prompt intensity than normal posture information, including but not limited to larger fonts, more obvious main colors of icons, or animations.
[0151] In an embodiment of the present application, when the display mode of the bedside monitoring device 1 is the first display mode and the mobile monitoring device 2 operates in the first monitoring mode, if the posture information of the human body is fall status information, the bedside monitoring device 1 displays the first prompt information corresponding to the fall status information, and the first prompt information includes an icon and / or text corresponding to the fall status information, and includes the real-time position information of the human body.
[0152] It should be noted that, in the embodiment of the present application, referring to FIG11 , the icon used to represent a human body falling can be an icon displayed in a flashing, animated or special color, and can also display the real-time location information of the human body, so that medical staff can check it more promptly so that they can provide timely assistance when the patient falls. In addition, referring to FIG11 , the prompt information corresponding to the fall status information can also include a "confirm" icon, and the medical staff can confirm that the human body is in a fall state by clicking on the icon. If the icon is not clicked, it can be displayed continuously, or it can be canceled after a certain period of time, and a reminder can be given in other forms, for example, playing an alarm prompt sound, etc., which is not limited in the embodiment of the present application.
[0153] It should be noted that in an embodiment of the present application, referring to Figure 12, when the display mode of the bedside monitoring device 1 is the second display mode and the mobile monitoring device 2 operates in the second monitoring mode, in the process of displaying the second physiological parameter information, if the posture information of the human body is fall status information, the bedside monitoring device 1 can also display the first prompt information corresponding to the fall status.
[0154] In an embodiment of the present application, when the display mode of the bedside monitoring device 1 is the first display mode and the mobile monitoring device 2 operates in the first monitoring mode, the bedside monitoring device 1 obtains a warning status assessment of the human body and displays the warning status assessment; the warning status assessment is determined by the bedside monitoring device 1 receiving the physiological parameter signal collected by the mobile monitoring device 2 and at least processing the physiological parameter signal, or by the bedside monitoring device 1 receiving the warning status assessment of the human body generated by the mobile monitoring device 2.
[0155] In the embodiments of the present application, the early warning status assessment includes, but is not limited to, EWS statistical information, which includes at least one of the following: the current EWS score, the sub-scores and measured values of N parameters corresponding to the EWS score, and the EWS score change trend, where N is a natural number greater than or equal to 1. As shown in FIG4 , the numerical value "4" displayed in the circular icon on the left represents the EWS score.
[0156] It should be noted that in the embodiments of the present application, the EWS score mainly assigns corresponding scores to some physiological parameter information, and then uses the statistical values of the scores to evaluate the scores that characterize the patient's clinical status or potential risks. Based on different EWS scores, medical staff can take different treatment measures for patients. For example, 0 to 5 points indicate that the patient's condition is stable and there is no potential risk of critical illness. Treatment can be given according to general routine procedures. 5 to 8 points indicate that the patient's condition is unstable, with large changes and potential critical illness. Priority treatment should be given to the patient, and the patient should be informed of the relevant situation in a timely manner. The patient should be arranged to be admitted to a specialist ward or even an intensive care unit in a timely manner. A score greater than 9 indicates that the patient's condition is critical and the risk of death is significantly increased. If conditions permit, the patient should be immediately sent to an intensive care unit or a specialist ward for treatment.
[0157] In an embodiment of the present application, the measured values of the above-mentioned N parameters may be values obtained through physiological parameter information of the human body. Scoring rules corresponding to each parameter may be stored in the monitoring device. For example, if the heart rate parameter is 51-100, the corresponding score may be 0, and if it is 41-50 or 101-110, the corresponding score is 1. The EWS score is determined by the scores of N parameters. For example, the EWS score is determined by five scores corresponding to five parameters. The specific number of parameters and parameter types are not limited in this embodiment of the application.
[0158] It should be noted that in the embodiment of the present application, the warning status evaluation can be displayed in the first display area. Of course, the warning status evaluation can also be determined not to be displayed according to actual needs and the interface size of the display 14. See Figure 13, which does not display the EWS score.
[0159] In the embodiments of the present application, the bedside monitoring device 1 described above separately displays the first physiological parameter information and the wear activity information, specifically when the display mode of the bedside monitoring device 1 is the first display mode and the mobile monitoring device 2 is operating in the first monitoring mode. Specific separate display methods can be displaying the wear activity information in the first display area and the first physiological parameter information in the second display area as described above, or using different colors and / or different markings for separate display as described above, which will not be further described here.
[0160] In an embodiment of the present application, the area displaying the second physiological parameter information in the second display mode is the fourth display area;
[0161] The second display area in the first display mode and the fourth display area in the second display mode occupy at least part of the same area on the display 14; and / or,
[0162] In the first display mode, the occupied area of the first display area is smaller than the occupied area of the second display area; and / or,
[0163] The total occupied area of the first display area and the second display area in the display 14 in the first display mode is the same as the occupied area of the fourth display area in the display 14 in the second display mode.
[0164] For example, in an embodiment of the present application, referring to FIG4 , the area of the first display region in the first display mode is smaller than the area of the second display region. For another example, referring to FIG4 and FIG8 , the fourth display region displaying the second physiological parameter information in the second display mode has the same total occupied area as the first display region and the second display region in the first display mode.
[0165] In an embodiment of the present application, the bedside monitoring device 1 may determine its display mode based on specific conditions, which will be described in detail below.
[0166] In an embodiment of the present application, when a first preset condition is met, the bedside monitoring device 1 determines that its display mode is the first display mode; the first preset condition includes at least one of the following:
[0167] A first instruction input by the user on the bedside monitoring device 1 to display in the first display mode is received; a second instruction sent by the mobile monitoring device 2 to instruct the bedside monitoring device to display in the first display mode is received; an indicator reflecting the communication status between the mobile monitoring device 2 and the bedside monitoring device 1 meets the first indicator condition; and an indicator reflecting the health status of the human body meets the second indicator condition.
[0168] Among them, if the mobile monitoring device 2 notifies the bedside monitoring device 1 to operate in the first monitoring mode, it can serve as a second instruction instructing the bedside monitoring device 1 to display in the first display mode; or, if the mobile monitoring device 2 transmits data at a higher frequency to send physiological parameter signals and / or non-physiological parameter signals to the bedside monitoring device 1, it can serve as a second instruction instructing the bedside monitoring device 1 to display in the first display mode.
[0169] In an embodiment of the present application, the indicator reflecting the communication status between the mobile monitoring device 2 and the bedside monitoring device 1 meets the first indicator condition, including at least one of the following: the communication connection between the mobile monitoring device 2 and the bedside monitoring device 1 is a non-point-to-point wireless communication connection; when the bedside monitoring device 1 is located in the ward, the mobile monitoring device 2 is located outside the ward; the communication distance between the mobile monitoring device 2 and the bedside monitoring device 1 is greater than the first preset distance threshold.
[0170] It should be noted that, in the embodiments of the present application, the non-point-to-point wireless communication connection may include a wireless communication connection via an access point (AP) network connection. Since non-point-to-point communication connections consume a lot of power, in this case, a first monitoring mode with a lower transmission frequency / acquisition frequency can be used to save power, and the corresponding bedside monitoring device 1 can display in the first display mode.
[0171] It will be appreciated that in the embodiments of the present application, bedside monitoring device 1 is a monitor located within a ward, and mobile monitoring device 2 is located outside the ward. The communication distance between the two is relatively long, and a higher transmission frequency / acquisition frequency would result in excessive power consumption. Therefore, in this case, a first monitoring mode with a lower transmission frequency / acquisition frequency can be used to conserve power, and the corresponding bedside monitoring device 1 can display in the first display mode. Furthermore, if mobile monitoring device 2 is located outside the ward, meaning that the patient wearing it has left, this may indicate that the patient's condition has improved. In this case, there is no need to use the second monitoring mode with a higher transmission frequency / acquisition frequency; the first monitoring mode with a lower transmission frequency / acquisition frequency can be used, and the corresponding bedside monitoring device 1 can display in the first display mode.
[0172] The distance between mobile monitoring device 2 and bedside monitoring device 1 is greater than a first preset distance threshold, similar to the situation where bedside monitoring device 1 is inside the ward and mobile monitoring device 2 is outside. Due to the large distance between the two and the long communication distance, a higher transmission frequency / acquisition frequency would consume too much power. Therefore, in this case, the first monitoring mode with a lower transmission frequency / acquisition frequency can be used to save power, and the corresponding bedside monitoring device 1 can display in the first display mode. In addition, the distance between mobile monitoring device 2 and bedside monitoring device 1 is long. If bedside monitoring device 1 is a monitor inside the ward, this also means that mobile monitoring device 2 may be outside the ward, that is, the patient wearing it has left the ward, which may mean that the patient's condition has improved. In this case, there is no need to use the second monitoring mode with a higher transmission frequency / acquisition frequency. The first monitoring mode with a lower transmission frequency / acquisition frequency can be used, and the corresponding bedside monitoring device 1 can display in the first display mode.
[0173] In an embodiment of the present application, the indicator reflecting the health status of the human body meets the second indicator condition, including at least one of the following: the time for the mobile monitoring device 2 to monitor the human body in the second monitoring mode reaches the first time threshold; the warning status assessment of the human body is higher than the first assessment threshold, and the warning status assessment is determined at least based on the received physiological parameter signal, or the warning status assessment is sent by the mobile monitoring device 2 and obtained by the mobile monitoring device 2 at least based on the physiological parameter signal; at least one item of the physiological parameter information of the human body is normal at the current moment and / or in the preset historical time period; the posture information of the human body is normal state information.
[0174] In this embodiment, at least one of the monitoring time, the EWS score based on the monitoring data, the monitoring data itself, and other unexpected events is used as an indicator reflecting the health status of the human body. Among them, for the monitoring time, for example, within 8 hours after surgery is a relatively important monitoring time. During this time, the patient needs to be closely monitored to ensure that the patient monitors possible postoperative risks. After the time, the condition is generally stable. Therefore, after the mobile monitoring device 2 has monitored the patient for 8 hours, a first monitoring mode with a lower transmission frequency / acquisition frequency can be adopted. Of course, this is only exemplary. In other cases, other time thresholds (collectively referred to as first time thresholds) can be used for judgment.
[0175] In addition, the EWS score based on monitoring data can reflect the patient's overall condition. When the EWS score is higher than the first assessment threshold, the patient's overall condition can be considered stable or good. Therefore, the first monitoring mode with a lower transmission frequency / collection frequency should be adopted at this time.
[0176] Furthermore, if the monitoring data is normal, it generally indicates that the patient's overall condition is stable or good. Therefore, the first monitoring mode with a lower transmission / collection frequency should be used. Similarly, if the patient has not experienced a motor accident, the second monitoring mode with a higher transmission / collection frequency is not necessary; the first monitoring mode with a lower transmission / collection frequency is sufficient.
[0177] In an embodiment of the present application, when the second preset condition is met, the bedside monitoring device 1 determines that its display mode is the second display mode; the second preset condition includes at least one of the following: receiving a third instruction input by the user on the bedside monitoring device 1 to display in the second display mode; receiving a fourth instruction sent by the mobile monitoring device 2 to instruct the bedside monitoring device to display in the second display mode; an indicator reflecting the communication status between the mobile monitoring device 2 and the bedside monitoring device 1 satisfies the third indicator condition; an indicator reflecting the health status of the human body satisfies the fourth indicator condition.
[0178] Among them, if the mobile monitoring device 2 notifies the bedside monitoring device 1 to operate in the second monitoring mode, it can serve as a third instruction instructing the bedside monitoring device 1 to display in the second display mode; or, if the mobile monitoring device 2 transmits data at a lower frequency to send physiological parameter signals and / or non-physiological parameter signals to the bedside monitoring device 1, it can serve as a third instruction instructing the bedside monitoring device 1 to display in the second display mode.
[0179] In an embodiment of the present application, the bedside monitoring device 1 may display a switching operation control; when an operation on the switching operation control is detected, it is determined that a third instruction input by the user on the bedside monitoring device 1 for display in the second display mode is received.
[0180] It should be noted that in the embodiment of the present application, referring to Figure 4, the switching operation control is specifically the "enter 2min continuous mode" control in the figure. When the bedside monitoring device 1 detects an operation on it, it receives a third instruction, thereby switching from the display content in the first display mode shown in Figure 4 to the display content in the second display mode shown in Figure 14.
[0181] It should be noted that in the embodiments of the present application, after the display mode of the bedside monitoring device 1 switches from the first display mode to the second display mode, if the elapsed time reaches a first preset time threshold and a second preset condition is not met, the display mode of the bedside monitoring device 1 switches back to the first display mode. For example, after the display mode of the bedside monitoring device 1 switches from the first display mode to the second display mode, if 120 seconds elapse and the second preset condition is not met, the device switches back to the first display mode. In addition, a countdown indicator indicating the switch back to the first display mode may be displayed in the second display mode, i.e., "Wear 120s" as shown in FIG. 14 .
[0182] In an embodiment of the present application, the indicator reflecting the communication status between the mobile monitoring device 2 and the bedside monitoring device 1 meets the third indicator condition, including at least one of the following: the communication connection between the mobile monitoring device 2 and the bedside monitoring device 1 is a point-to-point wireless communication connection; when the bedside monitoring device 1 is located in the ward, the mobile monitoring device 2 is located inside the ward; the communication distance between the mobile monitoring device 2 and the bedside monitoring device 1 is not greater than the second preset distance threshold.
[0183] The point-to-point wireless communication connection involved in the embodiments of the present application may include a Bluetooth connection, a Wireless Fidelity (WIFI) direct connection, a Wireless Medical Telemetry Services (WMTS) direct connection, etc. Since the point-to-point communication connection has low power consumption, the mobile monitoring device will not consume much power even if the transmission frequency / collection frequency is high. Therefore, the mobile monitoring device 2 can operate in the second monitoring mode. In this case, the bedside monitoring device 1 can correspondingly use the second display mode.
[0184] It will be appreciated that in the embodiment of the present application, when bedside monitoring device 1 is a monitor located within a ward and mobile monitoring device 2 is also located within the ward, since both mobile monitoring device 2 and bedside monitoring device 1 are within the same ward, the communication distance between them is short. Even with a high transmission frequency / acquisition frequency, power consumption will not be significant. Therefore, in this case, mobile monitoring device 2 can operate in the second monitoring mode, and bedside monitoring device 1 can correspondingly use the second display mode. Furthermore, the fact that mobile monitoring device 2 is located within the ward, meaning that the patient wearing it has not left, may indicate that the patient's condition is not yet suitable for leaving the bed. In this case, the second monitoring mode with a higher transmission frequency / acquisition frequency is even more desirable to ensure monitoring safety.
[0185] If the distance between mobile monitoring device 2 and bedside monitoring device 1 is no greater than the second preset distance threshold, similar to the situation where both are in the same ward, due to the small distance between them and the short communication distance, even with a higher transmission frequency / acquisition frequency, the power consumption will not be too high. Therefore, in this case, mobile monitoring device 2 can operate in the second monitoring mode, and bedside monitoring device 1 can correspondingly use the second display mode. In addition, if the distance between mobile monitoring device 2 and bedside monitoring device 1 is small, if bedside monitoring device 1 is a monitor in the ward, this also means that mobile monitoring device 2 is also located in the ward, that is, the patient wearing it has not left the ward, which may mean that the patient's condition is not yet suitable for leaving the bed. In this case, it is more necessary to use the second monitoring mode with a higher transmission frequency / sampling frequency to ensure monitoring safety.
[0186] In an embodiment of the present application, the indicator reflecting the health status of the human body satisfies the fourth indicator condition, including at least one of the following: the time for the mobile monitoring device to monitor the human body in the first monitoring mode reaches a second time threshold; the warning status assessment of the human body is lower than the second assessment threshold, and the warning status assessment is determined at least based on the received physiological parameter signal, or the warning status assessment is sent by the mobile monitoring device and obtained by the mobile monitoring device based on at least the physiological parameter signal; at least one item of the physiological parameter information of the human body is abnormal at the current moment and / or in a preset historical time period; the posture information of the human body is abnormal status information.
[0187] In this embodiment, at least one of the monitoring time, the EWS score based on the monitoring data, the monitoring data itself, and other unexpected events is used as an indicator reflecting the health status of the human body. Among them, for the monitoring time, for example, within 8 hours after surgery is a relatively important monitoring time, during which the patient needs to be closely monitored to ensure that the patient monitors possible postoperative risks. Therefore, when the monitoring time of the mobile monitoring data for the patient is less than 8 hours, a second monitoring mode with a higher transmission frequency / sampling frequency should be adopted. Of course, this is only exemplary. In other cases, other time thresholds (collectively referred to as the second time threshold) can be used for judgment.
[0188] In addition, the EWS score based on monitoring data can reflect the patient's overall condition. When the EWS score is lower than the second assessment threshold, it can be considered that the patient's overall condition still requires more monitoring data to ensure safety. Therefore, the second monitoring mode with a higher transmission frequency / sampling frequency should be adopted at this time.
[0189] In addition, some important physiological parameter information (such as heart rate, blood oxygen saturation, etc.) that may reflect changes in the disease if abnormal is found should be closely monitored immediately. In such cases, a second monitoring mode with a higher transmission frequency / sampling frequency should also be used.
[0190] Furthermore, even if abnormalities in physiological parameter information disappear after a period of monitoring or treatment, and the patient no longer exhibits these abnormalities, close monitoring can be continued for a period of time to ensure that the patient remains normal. This can further enhance monitoring safety. In this scenario, even if at least one physiological parameter is currently normal but exhibited abnormalities within a preset timeframe prior to the current moment, a second monitoring mode with a higher transmission / sampling frequency is still required. Specifically, the transmission mode is not switched immediately after the abnormality disappears. Instead, data transmission continues in the second monitoring mode with a higher transmission / sampling frequency for a preset period, and then switches to the first monitoring mode after the preset period.
[0191] Furthermore, if a patient movement accident occurs, such as a fall, the fall may be caused by an abnormality in the patient or an abnormality may occur due to the fall. Therefore, the second monitoring mode with a higher transmission frequency / sampling frequency should be used to ensure monitoring safety. After transmitting monitoring data in the second monitoring mode for a period of time, if no abnormality is detected or if an abnormality was detected but has disappeared, the first monitoring mode can be switched to.
[0192] In an embodiment of the present application, when the display mode of the bedside monitoring device 1 is the first display mode and the mobile monitoring device 2 operates in the first monitoring mode and meets the second preset condition, the bedside monitoring device 1 displays a second prompt message; the second prompt message is used to indicate switching from the first display mode to the second display mode after a preset time period.
[0193] Exemplarily, in an embodiment of the present application, the first prompt information can be a countdown mark, and does not block the display of any other information. The countdown mark includes at least a countdown value. Of course, the countdown mark can also include a specific mark, and the starting value of the countdown value can be a value of a certain duration.
[0194] It is understood that in the embodiments of the present application, the second preset condition must be continuously satisfied within a preset time period before the first display mode can be switched to the second display mode after the preset time period. If the second preset condition is not satisfied within the preset time period, the timer is stopped at the moment the second preset condition is not satisfied, and the display mode switch from the first display mode to the second display mode will not be performed. This can ensure the accuracy of the display mode switch. For example, the bedside monitoring device 1 is located in the ward, and the communication connection between the mobile monitoring device 2 and the bedside monitoring device 1 is a non-point-to-point wireless communication connection, which actually represents that the human body may move from inside the ward to outside the ward. In actual application scenarios, if the human body only returns from outside the ward to inside the ward for a short time and then moves outside the ward, there is actually no need to switch from the first display mode to the second display mode during this period. The setting of the preset time period and the detection of whether the second preset condition is continuously satisfied within the preset time period can avoid frequent switching of the display mode.
[0195] In an embodiment of the present application, the bedside monitoring device 1 may further display a countdown indicator until the next refresh display; the countdown indicator includes at least a countdown value.
[0196] For example, in an embodiment of the present application, referring to FIG. 4 , FIG. 9 to FIG. 11 , and FIG. 13 , the countdown prompting the refresh display is marked as “Wear 120s Refresh” in the first display area, which does not block any information, that is, is displayed in a blank display position.
[0197] It should be noted that, in an embodiment of the present application, the bedside monitoring device 1 may also transmit the acquired wearing activity information, the first physiological parameter information, or the second physiological parameter information to the mobile terminal for display on the mobile terminal.
[0198] The bedside monitoring device 1 provided in the embodiment of the present application can display monitoring information in different display modes according to different monitoring modes of the mobile monitoring device 2, supports diverse monitoring displays, and improves the monitoring display effect.
[0199] The embodiment of the present application provides a bedside monitoring device 1. Referring to the structure of the bedside monitoring device 1 shown in FIG2 , the bedside monitoring device 1 includes: a communication unit 11 , a processor 12 , a memory 13 , and a display 14 ;
[0200] The communication unit 11 wirelessly communicates with the mobile monitoring device 2 attached to the human body;
[0201] The communication unit 11 is used to receive the physiological parameter signals of the human body collected by the mobile monitoring device 2 and process the physiological parameter signals of the human body through the processor 12 to obtain physiological parameter information, or receive the physiological parameter information of the human body generated by the mobile monitoring device 2;
[0202] The communication unit 11 is further configured to receive the non-physiological parameter signals collected by the mobile monitoring device 2 and process the non-physiological parameter signals at least through the processor to obtain wear activity information, or receive wear activity information of the human body generated by the mobile monitoring device 2;
[0203] The memory 13 is used to store executable instructions, and the processor 12 is used to execute the executable instructions, so that the processor 12 performs the following operations:
[0204] When the display mode of the bedside monitoring device 1 is the first display mode, the first physiological parameter information and the wearing activity information are obtained, and the display 14 is controlled to display the first physiological parameter information and the wearing activity information separately;
[0205] When the display mode of the bedside monitoring device 1 is the second display mode, at least the second physiological parameter information is obtained, and the display 14 is controlled to display the second physiological parameter information;
[0206] The wearable activity information includes at least one of human body posture information, position information, exercise time and sleep time.
[0207] In an embodiment of the present application, the processor 12 controls the display 14 to display the first physiological parameter information and the wearing activity information in different colors and / or different marks.
[0208] In an embodiment of the present application, the processor 12 controls the display 14 to distinguish and display the first physiological parameter information and the wear activity information, including: controlling the display 14 to display the wear activity information in the first display area and displaying the first physiological parameter information in the second display area.
[0209] In an embodiment of the present application, any item of the wearing activity information is a target information item, and the processor 12 further performs the following operations:
[0210] Based on the operation instruction input by the user for the target information item, the display 14 is controlled to display the detailed information of the target information item in the third display area, and the third display area partially or completely covers the first display area;
[0211] Alternatively, based on an operation instruction input by the user for the target information item, the display 14 is controlled to display part of the wearing activity information in the first display area and display detailed information of the target information item in the first display area; or
[0212] In the case where the user inputs an operation instruction for the target information item, the display 14 is controlled not to display the wearing activity information in the first display area, but to display detailed information of the target information item in the first display area.
[0213] In an embodiment of the present application, when the display mode of the bedside monitoring device 1 is the first display mode, the warning status assessment of the human body is obtained, and the display 14 is controlled to display the warning status assessment; wherein, the warning status assessment is obtained by processing the physiological parameter signal of the human body by the processor 12, or the warning status assessment is a warning status assessment generated by the mobile monitoring device 2 received through the communication unit.
[0214] In an embodiment of the present application, the processor 12 further performs the following operations:
[0215] When a first preset condition is met, the display mode of the bedside monitoring device 1 is determined to be the first display mode; the first preset condition includes at least one of the following: receiving a first instruction input by the user on the bedside monitoring device 1 to display in the first display mode; receiving a second instruction sent by the mobile monitoring device 2 to instruct the bedside monitoring device 1 to display in the first display mode, an indicator reflecting the communication status between the mobile monitoring device 2 and the bedside monitoring device 1 meets the first indicator condition, and an indicator reflecting the health status of the human body meets the second indicator condition.
[0216] When the second preset condition is met, the display mode of the bedside monitoring device 1 is determined to be the second display mode; the second preset condition includes at least one of the following: receiving a third instruction input by the user on the bedside monitoring device 1 to display in the second display mode, receiving a fourth instruction sent by the mobile monitoring device 2 to instruct the bedside monitoring device 1 to display in the second display mode, an indicator reflecting the communication status between the mobile monitoring device 2 and the bedside monitoring device 1 satisfies the third indicator condition, and an indicator reflecting the health status of the human body satisfies the fourth indicator condition.
[0217] The embodiment of the present application provides a mobile monitoring device 2, wherein the monitoring modes of the mobile monitoring device 2 include a first monitoring mode and a second monitoring mode;
[0218] The frequency of the mobile monitoring device 2 operating in the first monitoring mode is lower than the frequency of the mobile monitoring device 2 operating in the second monitoring mode; the frequency of the mobile monitoring device 2 operating in the first monitoring mode is lower than the frequency of the mobile monitoring device 2 operating in the second monitoring mode, which includes at least one of the following two situations: the signal acquisition frequency of the mobile monitoring device 2 operating in the first monitoring mode is lower than the signal acquisition frequency of the mobile monitoring device 2 operating in the second monitoring mode, and the data transmission frequency of the mobile monitoring device 2 operating in the first monitoring mode is lower than the data transmission frequency of the mobile monitoring device 2 operating in the second monitoring mode;
[0219] Referring to the structure of the mobile monitoring device 2 shown in FIG3 , the mobile monitoring device 2 includes a first acquisition module 21 , a second acquisition module 22 , a processor 23 and a communication unit 24 , wherein:
[0220] The first acquisition module 21 is used to acquire physiological parameter signals of the human body or process the acquired physiological parameter signals to obtain physiological parameter information of the human body;
[0221] The second acquisition module 22 is used to collect non-physiological parameter signals or at least process the collected non-physiological parameter signals to obtain wearable activity information of the human body;
[0222] The communication unit 24 is used to establish a communication connection with the bedside monitoring device;
[0223] The processor 23 is configured to perform the following operations:
[0224] When the monitoring mode of the mobile monitoring device 2 is the first monitoring mode, the first physiological parameter signal or first physiological parameter information, and the non-physiological parameter signal or wearing activity information are sent to the bedside monitoring device 1 through the communication unit 24, so that the bedside monitoring device 1 displays the first physiological parameter information and the wearing activity information; wherein the wearing activity information includes at least one of the posture information, position information, exercise time, and sleep time of the human body;
[0225] When the monitoring mode of the mobile monitoring device 2 is the second monitoring mode, the second physiological parameter signal or second physiological parameter information is sent to the bedside monitoring device 1 through the communication unit 24, so that the bedside monitoring device 1 displays the second physiological parameter information.
[0226] In an embodiment of the present application, when the third preset condition is met, the processor 23 determines that its monitoring mode is the first monitoring mode; the third preset condition includes at least one of the following: receiving a fifth instruction input by the user on the mobile monitoring device 2 to operate in the first monitoring mode; receiving a sixth instruction sent by the bedside monitoring device 1 to instruct the mobile monitoring device 2 to operate in the first monitoring mode; an indicator reflecting the communication status between the mobile monitoring device 2 and the bedside monitoring device 1 meets the first indicator condition; an indicator reflecting the health status of the human body meets the second indicator condition.
[0227] When the fourth preset condition is met, the processor 23 determines that its monitoring mode is the second monitoring mode; the fourth preset condition includes at least one of the following: receiving the seventh instruction input by the user on the mobile monitoring device 2 to work in the second monitoring mode; receiving the eighth instruction sent by the bedside monitoring device 1 to instruct the mobile monitoring device 2 to display in the second monitoring mode; the indicator reflecting the communication status between the mobile monitoring device 2 and the bedside monitoring device 1 meets the third indicator condition; the indicator reflecting the health status of the human body meets the fourth indicator condition.
[0228] The present application provides a monitoring information display method, which is applied to a monitoring system. The monitoring system includes a bedside monitoring device and a mobile monitoring device that can be attached to a human body. The display modes of the bedside monitoring device include a first display mode and a second display mode, and the monitoring modes of the mobile monitoring device include a first monitoring mode and a second monitoring mode. The method mainly includes the following steps:
[0229] FIG15 is a flow chart of a monitoring information display method provided in an embodiment of the present application. As shown in FIG15 , when the display mode of the bedside monitoring device is the first display mode and the mobile monitoring device operates in the first monitoring mode, the method includes:
[0230] S101: The bedside monitoring device receives a physiological parameter signal of a human body collected by a mobile monitoring device and processes the physiological parameter signal of the human body to obtain first physiological parameter information, or the bedside monitoring device receives the first physiological parameter information of the human body generated by the mobile monitoring device;
[0231] S102: The bedside monitoring device receives the non-physiological parameter signal collected by the mobile monitoring device and processes at least the non-physiological parameter signal to obtain wear activity information, or the bedside monitoring device receives the wear activity information of the human body generated by the mobile monitoring device, wherein the wear activity information includes at least one of posture information, position information, exercise time, and sleep time of the human body;
[0232] S103, the bedside monitoring device distinguishes and displays the first physiological parameter information and the wear activity information;
[0233] FIG16 is a second flow chart of a monitoring information display method provided by an embodiment of the present application. As shown in FIG16 , when the display mode of the bedside monitoring device is the second display mode and the mobile monitoring device operates in the second monitoring mode, the method includes:
[0234] S201: The bedside monitoring device receives a physiological parameter signal of a human body collected by a mobile monitoring device and processes the physiological parameter signal of the human body to obtain second physiological parameter information, or the bedside monitoring device receives the second physiological parameter information of the human body generated by the mobile monitoring device;
[0235] S202: The bedside monitoring device displays second physiological parameter information.
[0236] In an embodiment of the present application, the frequency at which the mobile monitoring device operates in the first monitoring mode is lower than the frequency at which it operates in the second monitoring mode; the frequency at which the mobile monitoring device operates in the first monitoring mode is lower than the frequency at which it operates in the second monitoring mode, including at least one of the following two situations: the signal acquisition frequency of the mobile monitoring device operating in the first monitoring mode is lower than the signal acquisition frequency at which it operates in the second monitoring mode, and the data transmission frequency of the mobile monitoring device operating in the first monitoring mode is lower than the data transmission frequency at which it operates in the second monitoring mode.
[0237] The present application provides a monitoring information display method, which is applied to a bedside monitoring device that communicates with a mobile monitoring device that can be attached to the human body. FIG17 is a flow diagram of a monitoring information display method provided by the present application. As shown in FIG17 , the method mainly includes the following steps:
[0238] S301: The bedside monitoring device receives a physiological parameter signal of a human body collected by a mobile monitoring device and processes the physiological parameter signal of the human body to obtain first physiological parameter information, or the bedside monitoring device receives the first physiological parameter information of the human body generated by the mobile monitoring device;
[0239] S302: The bedside monitoring device receives the non-physiological parameter signal collected by the mobile monitoring device and processes at least the non-physiological parameter signal to obtain wear activity information, or the bedside monitoring device receives the wear activity information of the human body generated by the mobile monitoring device;
[0240] S303. The bedside monitoring device distinguishes and displays the first physiological parameter information and the wear activity information; wherein the wear activity information includes at least one of the human body's posture information, position information, exercise time, and sleep time.
[0241] In an embodiment of the present application, the font size of the plurality of first main parameter data included in the first physiological parameter information is larger than the font size of the at least one second main parameter data included in the wearing activity information.
[0242] In an embodiment of the present application, the bedside monitoring device distinguishes and displays the first physiological parameter information and the wearing activity information, including: displaying the wearing activity information in the first display area and displaying the first physiological parameter information in the second display area.
[0243] In an embodiment of the present application, based on an operation instruction input by a user for a target information item, detailed information of the target information item is displayed in a third display area, and the third display area partially or completely covers the first display area;
[0244] Alternatively, based on an operation instruction input by the user for the target information item, part of the wearing activity information is displayed in the first display area, and detailed information of the target information item is displayed in the first display area;
[0245] Alternatively, based on an operation instruction input by the user for the target information item, the wearing activity information is not displayed in the first display area, and detailed information of the target information item is displayed in the first display area;
[0246] The target information item is any item of wearing activity information.
[0247] Those skilled in the art will appreciate that the embodiments of the present application may be provided as methods, systems, or computer program products. Therefore, the present application may adopt the form of hardware embodiments, software embodiments, or embodiments combining software and hardware. Furthermore, the present application may adopt the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage and optical storage, etc.) containing computer-usable program code.
[0248] The present application is described with reference to the flow chart and / or block diagram of the method, device (system), and computer program product according to the embodiment of the present application. It should be understood that each process and / or box in the flow chart and / or block diagram and the combination of the process and / or box in the flow chart and / or block diagram can be realized by computer program instructions. These computer program instructions can be provided to the processor of a general-purpose computer, a special-purpose computer, an embedded processor or other programmable signal processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable signal processing device produce a device for realizing the function specified in one process or multiple processes and / or one box or multiple boxes of the flow chart.
[0249] These computer program instructions may also be stored in a computer-readable memory that can direct a computer or other programmable signal processing device to operate in a specific manner, so that the instructions stored in the computer-readable memory produce a manufactured product including an instruction device that implements the functions specified in one or more processes in the flowchart and / or one or more boxes in the block diagram.
[0250] These computer program instructions may also be loaded onto a computer or other programmable signal processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, whereby the instructions executed on the computer or other programmable device provide steps for implementing the functions specified in one or more processes in the flowchart and / or one or more boxes in the block diagram.
[0251] The above description is merely a specific embodiment of the present application, but the scope of protection of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this application should be included in the scope of protection of this application. Therefore, the scope of protection of this application should be based on the scope of protection of the claims. Industrial Applicability
[0252] The embodiment of the present application provides a monitoring information display method, a monitoring system and related equipment, the monitoring system comprising: a bedside monitoring device and a mobile monitoring device attachable to a human body; the display mode of the bedside monitoring device comprises a first display mode and a second display mode; the monitoring mode of the mobile monitoring device comprises a first monitoring mode and a second monitoring mode; wherein, the frequency of the mobile monitoring device operating in the first monitoring mode is lower than the frequency of the mobile monitoring device operating in the second monitoring mode; the frequency of the mobile monitoring device operating in the first monitoring mode is lower than the frequency of the mobile monitoring device operating in the second monitoring mode, which includes at least one of the following two situations: the signal acquisition frequency of the mobile monitoring device operating in the first monitoring mode is lower than the signal acquisition frequency of the mobile monitoring device operating in the second monitoring mode, and the data transmission frequency of the mobile monitoring device operating in the first monitoring mode is lower than the data transmission frequency of the mobile monitoring device operating in the second monitoring mode; when the display mode of the bedside monitoring device is the first display mode and the mobile monitoring device operates in the first monitoring mode, the bedside monitoring device The device obtains first physiological parameter information and wearable activity information, and displays the first physiological parameter information and the wearable activity information separately; when the display mode of the bedside monitoring device is the second display mode and the mobile monitoring device operates in the second monitoring mode, the bedside monitoring device at least obtains the second physiological parameter information and displays the second physiological parameter information; wherein the first physiological parameter information and the second physiological parameter information are obtained by the bedside monitoring device receiving the physiological parameter signal of the human body collected by the mobile monitoring device and processing the physiological parameter signal of the human body, or the bedside monitoring device receives the physiological parameter information of the human body generated by the mobile monitoring device; the wearable activity information is obtained by the bedside monitoring device receiving the non-physiological parameter signal collected by the mobile monitoring device and at least processing the non-physiological parameter signal, or the bedside monitoring device receives the wearable activity information of the human body generated by the mobile monitoring device; the wearable activity information includes at least one of the posture information, position information, exercise time and sleep time of the human body. The technical solution provided by the embodiment of the present application can display monitoring information in different display modes for different monitoring modes of the mobile monitoring device, support diverse monitoring displays, and improve the monitoring display effect.
Claims
1. A monitoring system comprising: Bedside monitoring devices and mobile monitoring devices that can be attached to the human body; The display mode of the bedside monitoring device includes a first display mode and a second display mode; The monitoring modes of the mobile monitoring device include a first monitoring mode and a second monitoring mode; The frequency at which the mobile monitoring device operates in the first monitoring mode is lower than the frequency at which it operates in the second monitoring mode; the frequency at which the mobile monitoring device operates in the first monitoring mode is lower than the frequency at which it operates in the second monitoring mode, including at least one of the following two situations: the signal acquisition frequency of the mobile monitoring device operating in the first monitoring mode is lower than the signal acquisition frequency of the mobile monitoring device operating in the second monitoring mode, and the data transmission frequency of the mobile monitoring device operating in the first monitoring mode is lower than the data transmission frequency of the mobile monitoring device operating in the second monitoring mode; When the display mode of the bedside monitoring device is the first display mode and the mobile monitoring device operates in the first monitoring mode, the bedside monitoring device obtains first physiological parameter information and wearing activity information, and displays the first physiological parameter information and the wearing activity information separately; When the display mode of the bedside monitoring device is the second display mode and the mobile monitoring device operates in the second monitoring mode, the bedside monitoring device at least obtains second physiological parameter information and displays the second physiological parameter information; The first physiological parameter information and the second physiological parameter information are obtained by the bedside monitoring device receiving the physiological parameter signal of the human body collected by the mobile monitoring device and processing the physiological parameter signal of the human body, or by the bedside monitoring device receiving the physiological parameter information of the human body generated by the mobile monitoring device; The wearing activity information is obtained by the bedside monitoring device receiving the non-physiological parameter signal collected by the mobile monitoring device and at least processing the non-physiological parameter signal, or the bedside monitoring device receives the wearing activity information of the human body generated by the mobile monitoring device; The wearable activity information includes at least one of posture information, position information, exercise time, and sleep time of the human body.
2. The monitoring system according to claim 1, wherein: The first physiological parameter information at least includes physiological parameter information of numerical type; The second physiological parameter information includes physiological parameter information of a numerical type and physiological parameter information of a waveform type.
3. The monitoring system according to claim 1, wherein: The bedside monitoring device distinguishes and displays the first physiological parameter information and the wear activity information, including: The first physiological parameter information and the wearing activity information are displayed separately using different colors and / or different marks.
4. The monitoring system according to claim 1, wherein: The bedside monitoring device distinguishes and displays the first physiological parameter information and the wear activity information, including: The wearing activity information is displayed in the first display area, and the first physiological parameter information is displayed in the second display area.
5. The monitoring system according to claim 4, wherein: The first display area and the second display area are arranged vertically or horizontally.
6. The monitoring system according to claim 5, wherein: The bedside monitoring device adjusts the arrangement of the first display area and the second display area based on an adjustment instruction input by a user; The adjustment instruction includes: When the first display area and the second display area are arranged vertically, an instruction for instructing adjustment of the vertical position between the first display area and the second display area, or an instruction for instructing adjustment of the first display area and the second display area to a horizontal arrangement; When the first display area and the second display area are arranged left and right, an instruction is used to indicate the left-right position adjustment between the first display area and the second display area, or an instruction is used to indicate the first display area and the second display area to be adjusted to be arranged up and down.
7. The monitoring system according to claim 4, wherein: Any one of the wearing activity information is a target information item, Based on an operation instruction input by a user for the target information item, the bedside monitoring device displays detailed information of the target information item in a third display area, where the third display area partially or completely covers the first display area; or, Based on an operation instruction input by a user for the target information item, the bedside monitoring device displays part of the wearing activity information in the first display area and displays detailed information of the target information item in the first display area; or, Based on an operation instruction input by a user for the target information item, the bedside monitoring device does not display the wearing activity information in the first display area, and displays detailed information of the target information item in the first display area.
8. The monitoring system according to claim 4, wherein: The area displaying the second physiological parameter information in the second display mode is a fourth display area; The second display area in the first display mode and the fourth display area in the second display mode occupy at least part of the same area in the display; and / or, In the first display mode, the occupied area of the first display area is smaller than the occupied area of the second display area; and / or, The total occupied area of the first display area and the second display area in the display in the first display mode is the same as the occupied area of the fourth display area in the display in the second display mode.
9. The monitoring system according to claim 1, wherein: When the display mode of the bedside monitoring device is the first display mode and the mobile monitoring device operates in the first monitoring mode, the bedside monitoring device obtains a warning status assessment of the human body and displays the warning status assessment; the warning status assessment is determined by the bedside monitoring device receiving a physiological parameter signal collected by the mobile monitoring device and at least processing the physiological parameter signal, or by the bedside monitoring device receiving a warning status assessment of the human body generated by the mobile monitoring device.
10. The monitoring system according to claim 1, wherein: The posture information includes at least one of sleeping state information, lying state information, moving state information, falling state information, and standing state information; The bedside monitoring device displays different posture information in different icons and / or text forms.
11. The monitoring system according to claim 1, wherein: The posture information includes normal posture information and abnormal posture information; The prompt intensity corresponding to the abnormal posture information displayed by the bedside monitoring device is higher than the prompt intensity corresponding to the normal posture information displayed by the bedside monitoring device.
12. The monitoring system according to claim 1, wherein: The wearing activity information includes the posture information of the human body, When the display mode of the bedside monitoring device is the first display mode and the mobile monitoring device operates in the first monitoring mode, if the posture information of the human body is fall status information, the bedside monitoring device displays first prompt information corresponding to the fall status information, and the first prompt information includes an icon and / or text corresponding to the fall status information, and includes real-time position information of the human body.
13. The monitoring system according to claim 1, wherein: When a first preset condition is met, the bedside monitoring device determines that its display mode is the first display mode; The first preset condition includes at least one of the following: A first instruction input by a user to display in the first display mode on the bedside monitoring device is received; a second instruction sent by the mobile monitoring device to instruct the bedside monitoring device to display in the first display mode is received; an indicator reflecting the communication status between the mobile monitoring device and the bedside monitoring device meets a first indicator condition; and an indicator reflecting the health status of the human body meets a second indicator condition.
14. The monitoring system according to claim 13, wherein: The indicator reflecting the communication status between the mobile monitoring device and the bedside monitoring device satisfies a first indicator condition, including at least one of the following: The communication connection between the mobile monitoring device and the bedside monitoring device is a non-point-to-point wireless communication connection; When the bedside monitoring device is located in the ward, the mobile monitoring device is located outside the ward; The communication distance between the mobile monitoring device and the bedside monitoring device is greater than a first preset distance threshold.
15. The monitoring system according to claim 13, wherein: The indicator reflecting the health status of the human body satisfies a second indicator condition, including at least one of the following: The time for the mobile monitoring device to monitor the human body in the second monitoring mode reaches a first time threshold; The warning state assessment of the human body is higher than a first assessment threshold, the warning state assessment is determined based on at least the received physiological parameter signal, or the warning state assessment is sent by the mobile monitoring device and obtained by processing by the mobile monitoring device based on at least the physiological parameter signal; At least one of the physiological parameter information of the human body has no abnormality at the current moment and / or in a preset historical time period; The posture information of the human body is normal state information.
16. The monitoring system according to claim 1, wherein: When a second preset condition is met, the bedside monitoring device determines that its display mode is the second display mode; The second preset condition includes at least one of the following: receiving a third instruction input by the user to display in the second display mode on the bedside monitoring device; receiving a fourth instruction sent by the mobile monitoring device to instruct the bedside monitoring device to display in the second display mode; an indicator reflecting the communication status between the mobile monitoring device and the bedside monitoring device meets a third indicator condition; an indicator reflecting the health status of the human body meets a fourth indicator condition.
17. The monitoring system according to claim 16, wherein: The indicator reflecting the communication status between the mobile monitoring device and the bedside monitoring device satisfies a third indicator condition, including at least one of the following: The communication connection between the mobile monitoring device and the bedside monitoring device is a point-to-point wireless communication connection; When the bedside monitoring device is located in a ward, the mobile monitoring device is located within the ward; The communication distance between the mobile monitoring device and the bedside monitoring device is no greater than a second preset distance threshold.
18. The monitoring system according to claim 16, wherein: The indicator reflecting the health status of the human body satisfies the fourth indicator condition, including at least one of the following: The time for the mobile monitoring device to monitor the human body in the first monitoring mode reaches a second time threshold; The warning state assessment of the human body is lower than a second assessment threshold, the warning state assessment is determined based on at least the received physiological parameter signal, or the warning state assessment is sent by the mobile monitoring device and obtained by the mobile monitoring device based on at least the physiological parameter signal; At least one of the physiological parameter information of the human body is abnormal at the current moment and / or in a preset historical time period; The posture information of the human body is abnormal state information.
19. The monitoring system according to claim 16, wherein: When the display mode of the bedside monitoring device is the first display mode and the mobile monitoring device operates in the first monitoring mode and meets the second preset condition, the bedside monitoring device displays a second prompt message; the second prompt message is used to indicate switching from the first display mode to the second display mode after a preset time period.
20. The monitoring system according to claim 1, wherein: The bedside monitoring device displays a countdown mark indicating the time until the next refresh display; the countdown mark at least includes a countdown value.
21. The monitoring system according to claim 4, wherein: When at least the posture information of the human body and other information are displayed in the first display area, the posture information and the other information are arranged vertically; The other information includes at least one of location information, exercise time, sleep time and warning status assessment. The warning status assessment is determined by the bedside monitoring device receiving the physiological parameter signal collected by the mobile monitoring device and at least processing the physiological parameter signal, or by the bedside monitoring device receiving the human body warning status assessment generated by the mobile monitoring device.
22. A monitoring information display method, applied to a monitoring system, the monitoring system comprising a bedside monitoring device and a mobile monitoring device attachable to a human body, the display modes of the bedside monitoring device comprising a first display mode and a second display mode, and the monitoring modes of the mobile monitoring device comprising a first monitoring mode and a second monitoring mode; The method comprises: When the display mode of the bedside monitoring device is the first display mode and the mobile monitoring device operates in the first monitoring mode: The bedside monitoring device receives the physiological parameter signal of the human body collected by the mobile monitoring device and processes the physiological parameter signal of the human body to obtain first physiological parameter information, or the bedside monitoring device receives the first physiological parameter information of the human body generated by the mobile monitoring device; The bedside monitoring device receives the non-physiological parameter signal collected by the mobile monitoring device and processes at least the non-physiological parameter signal to obtain wear activity information, or the bedside monitoring device receives the wear activity information of the human body generated by the mobile monitoring device, wherein the wear activity information includes at least one of posture information, position information, exercise time, and sleep time of the human body; The bedside monitoring device distinguishes and displays the first physiological parameter information and the wearing activity information; When the display mode of the bedside monitoring device is the second display mode and the mobile monitoring device operates in the second monitoring mode, The bedside monitoring device receives the physiological parameter signal of the human body collected by the mobile monitoring device and processes the physiological parameter signal of the human body to obtain second physiological parameter information, or the bedside monitoring device receives the second physiological parameter information of the human body generated by the mobile monitoring device; The bedside monitoring device displays the second physiological parameter information.
23. The method according to claim 22, wherein The frequency at which the mobile monitoring device operates in the first monitoring mode is lower than the frequency at which it operates in the second monitoring mode; the frequency at which the mobile monitoring device operates in the first monitoring mode is lower than the frequency at which it operates in the second monitoring mode, including at least one of the following two situations: the signal acquisition frequency of the mobile monitoring device in the first monitoring mode is lower than the signal acquisition frequency of the mobile monitoring device in the second monitoring mode, and the data transmission frequency of the mobile monitoring device in the first monitoring mode is lower than the data transmission frequency of the mobile monitoring device in the second monitoring mode.
24. A bedside monitoring device, comprising: a communication unit, a processor, a memory, and a display; The communication unit wirelessly communicates with a mobile monitoring device attached to a human body; The communication unit is used to receive the physiological parameter signal of the human body collected by the mobile monitoring device and process the physiological parameter signal of the human body by the processor to obtain physiological parameter information, or receive the physiological parameter information of the human body generated by the mobile monitoring device; The communication unit is further configured to receive the non-physiological parameter signal collected by the mobile monitoring device and process the non-physiological parameter signal at least by the processor to obtain the wearing activity information, or receive the wearing activity information of the human body generated by the mobile monitoring device; The memory is configured to store executable instructions, and the processor is configured to execute the executable instructions, so that the processor performs the following operations: When the display mode of the bedside monitoring device is the first display mode, obtaining first physiological parameter information and wearing activity information, and controlling the display to distinguish and display the first physiological parameter information and the wearing activity information; When the display mode of the bedside monitoring device is the second display mode, at least obtaining second physiological parameter information, and controlling the display to display the second physiological parameter information; The wearable activity information includes at least one of the posture information, position information, exercise time and sleep time of the human body.
25. The bedside monitoring device according to claim 24, wherein: The controlling the display to distinguish and display the first physiological parameter information and the wearing activity information includes: The display is controlled to display the first physiological parameter information and the wearing activity information in different colors and / or different marks.
26. The bedside monitoring device according to claim 24, wherein: The controlling the display to distinguish and display the first physiological parameter information and the wearing activity information includes: The display is controlled to display the wearing activity information in a first display area and to display the first physiological parameter information in a second display area.
27. The bedside monitoring device according to claim 26, wherein: If any one of the wearing activity information is a target information item, the processor further performs the following operations: Based on an operation instruction input by a user for the target information item, controlling the display to display detailed information of the target information item in a third display area, wherein the third display area partially or completely covers the first display area; Alternatively, based on an operation instruction input by a user for the target information item, controlling the display to display part of the wearing activity information in the first display area and displaying detailed information of the target information item in the first display area; or, Based on an operation instruction input by a user for the target information item, the display is controlled not to display the wearing activity information in the first display area, and to display detailed information of the target information item in the first display area.
28. The bedside monitoring device according to claim 24, wherein: The processor also performs the following operations: When the display mode of the bedside monitoring device is the first display mode, obtaining a warning status assessment of the human body, and controlling the display to display the warning status assessment; The warning status evaluation is obtained by processing the physiological parameter signal of the human body by the processor, or the warning status evaluation is generated by the mobile monitoring device and received by the communication unit.
29. The bedside monitoring device according to claim 24, wherein: The processor also performs the following operations: When a first preset condition is met, determining that the display mode of the bedside monitoring device is the first display mode; The first preset condition includes at least one of the following: receiving a first instruction input by a user at the bedside monitoring device to display in the first display mode; receiving a second instruction sent by the mobile monitoring device to instruct the bedside monitoring device to display in the first display mode; an indicator reflecting the communication status between the mobile monitoring device and the bedside monitoring device satisfies a first indicator condition, and an indicator reflecting the health status of the human body satisfies a second indicator condition; If a second preset condition is met, determining that the display mode of the bedside monitoring device is the second display mode; The second preset condition includes at least one of the following: receiving a third instruction input by the user on the bedside monitoring device to display in the second display mode, receiving a fourth instruction sent by the mobile monitoring device to instruct the bedside monitoring device to display in the second display mode, an indicator reflecting the communication status between the mobile monitoring device and the bedside monitoring device satisfies a third indicator condition, and an indicator reflecting the health status of the human body satisfies a fourth indicator condition.
30. A mobile monitoring device, wherein the monitoring mode of the mobile monitoring device includes a first monitoring mode and a second monitoring mode; in, The frequency at which the mobile monitoring device operates in the first monitoring mode is lower than the frequency at which it operates in the second monitoring mode; the frequency at which the mobile monitoring device operates in the first monitoring mode is lower than the frequency at which it operates in the second monitoring mode includes at least one of the following two situations: the signal acquisition frequency of the mobile monitoring device in the first monitoring mode is lower than the signal acquisition frequency of the mobile monitoring device in the second monitoring mode, and the data transmission frequency of the mobile monitoring device in the first monitoring mode is lower than the data transmission frequency of the mobile monitoring device in the second monitoring mode; The mobile monitoring device includes a first acquisition module, a second acquisition module, a processor and a communication unit, wherein: The first acquisition module is used to acquire physiological parameter signals of a human body or process the acquired physiological parameter signals to obtain physiological parameter information of the human body; The second acquisition module is used to acquire non-physiological parameter signals or at least process the acquired non-physiological parameter signals to obtain the wearable activity information of the human body; The communication unit is used to establish a communication connection with the bedside monitoring device; The processor is configured to perform the following operations: When the monitoring mode of the mobile monitoring device is the first monitoring mode, sending a first physiological parameter signal or first physiological parameter information, and sending a non-physiological parameter signal or the wearable activity information to the bedside monitoring device through the communication unit, so that the bedside monitoring device displays the first physiological parameter information and the wearable activity information; wherein the wearable activity information includes at least one of human body posture information, position information, exercise time, and sleep time; When the monitoring mode of the mobile monitoring device is the second monitoring mode, a second physiological parameter signal or second physiological parameter information is sent to the bedside monitoring device through the communication unit, so that the bedside monitoring device displays the second physiological parameter information.
31. The mobile monitoring device according to claim 30, wherein: When a third preset condition is met, the processor determines that the monitoring mode is the first monitoring mode; The third preset condition includes at least one of the following: A fifth instruction input by a user on the mobile monitoring device to operate in the first monitoring mode is received; a sixth instruction sent by the bedside monitoring device to instruct the mobile monitoring device to operate in the first monitoring mode is received; an indicator reflecting the communication status between the mobile monitoring device and the bedside monitoring device satisfies a first indicator condition; and an indicator reflecting the health status of the human body satisfies a second indicator condition; When a fourth preset condition is met, the processor determines that the monitoring mode is the second monitoring mode; The fourth preset condition includes at least one of the following: receiving a seventh instruction input by the user on the mobile monitoring device to operate in the second monitoring mode; receiving an eighth instruction sent by the bedside monitoring device to instruct the mobile monitoring device to display in the second monitoring mode; an indicator reflecting the communication status between the mobile monitoring device and the bedside monitoring device satisfies a third indicator condition; and an indicator reflecting the health status of the human body satisfies a fourth indicator condition.
32. A monitoring information display method, applied to a bedside monitoring device, wherein the bedside monitoring device communicates with a mobile monitoring device attachable to a human body; The method comprises: The bedside monitoring device receives the physiological parameter signal of the human body collected by the mobile monitoring device and processes the physiological parameter signal of the human body to obtain first physiological parameter information, or the bedside monitoring device receives the first physiological parameter information of the human body generated by the mobile monitoring device; The bedside monitoring device receives the non-physiological parameter signal collected by the mobile monitoring device and processes at least the non-physiological parameter signal to obtain the wear activity information, or the bedside monitoring device receives the wear activity information of the human body generated by the mobile monitoring device; The bedside monitoring device distinguishes and displays the first physiological parameter information and the wearable activity information; wherein the wearable activity information includes at least one of human body posture information, position information, exercise time and sleep time.
33. The method according to claim 32, wherein The font size of the plurality of first main parameter data included in the first physiological parameter information is larger than the font size of the at least one second main parameter data included in the wearing activity information.
34. The method of claim 32, wherein: The bedside monitoring device distinguishes and displays the first physiological parameter information and the wear activity information, including: The wearing activity information is displayed in the first display area, and the first physiological parameter information is displayed in the second display area.
35. The method according to claim 34, wherein The method further comprises: Based on an operation instruction input by a user for a target information item, detailed information of the target information item is displayed in a third display area, wherein the third display area partially or completely covers the first display area; Alternatively, based on an operation instruction input by a user for the target information item, part of the wearing activity information is displayed in the first display area, and detailed information of the target information item is displayed in the first display area; Alternatively, based on an operation instruction input by the user for the target information item, the wearing activity information is not displayed in the first display area, and detailed information of the target information item is displayed in the first display area; The target information item is any one of the wearing activity information.
36. A bedside monitoring device, comprising: a communication unit, a processor, a memory, and a display; The communication unit wirelessly communicates with a mobile monitoring device attached to a human body; The communication unit is used to receive the physiological parameter signal of the human body collected by the mobile monitoring device and process the physiological parameter signal of the human body by the processor to obtain physiological parameter information, or receive the physiological parameter information of the human body generated by the mobile monitoring device; The communication unit is further configured to receive the non-physiological parameter signal collected by the mobile monitoring device and process the non-physiological parameter signal at least by the processor to obtain the wearing activity information, or receive the wearing activity information of the human body generated by the mobile monitoring device; The memory is configured to store executable instructions, and the processor is configured to execute the executable instructions, so that the processor performs the following operations: The processor acquires first physiological parameter information and the wearing activity information, and controls the display to distinguish and display the first physiological parameter information and the wearing activity information; The wearable activity information includes at least one of human body posture information, position information, exercise time and sleep time.
37. The bedside monitoring device according to claim 36, wherein: The font size of the plurality of first main parameter data included in the first physiological parameter information is larger than the font size of the at least one second main parameter data included in the wearing activity information.
38. The bedside monitoring device according to claim 36, wherein: The controlling the display to distinguish and display the first physiological parameter information and the wearing activity information includes: The display is controlled to display the first physiological parameter information and the wearing activity information in different colors and / or different marks.
39. The bedside monitoring device according to claim 36, wherein: The controlling the display to distinguish and display the first physiological parameter information and the wearing activity information includes: The display is controlled to display the wearing activity information in a first display area and to display the first physiological parameter information in a second display area.
40. The bedside monitoring device according to claim 39, wherein: Based on an operation instruction input by a user for a target information item, controlling the display to display detailed information of the target information item in a third display area, wherein the third display area partially or completely covers the first display area; Alternatively, based on an operation instruction input by a user for the target information item, the display is controlled to display part of the wearing activity information in the first display area, and detailed information of the target information item is displayed in the first display area; Alternatively, based on an operation instruction input by a user for the target information item, controlling the display to not display the wearing activity information in the first display area and to display detailed information of the target information item in the first display area; The target information item is any one of the wearing activity information.
41. The bedside monitoring device according to claim 37, wherein: The first main parameter data is numerical data; The second display area includes multiple sub-display areas, at least some of the multiple sub-display areas have the same area, one sub-display area is used to display a first main parameter data, and the area occupied by the first main parameter data displayed in each sub-display area exceeds a preset threshold value of the area of the sub-display area to which it belongs.
42. The bedside monitoring device according to claim 36, wherein: The first physiological parameter information further includes first auxiliary parameter data of numerical type and / or at least one waveform type data.
43. A mobile monitoring device, comprising a first acquisition module, a second acquisition module, a processor, and a communication unit, wherein: The first acquisition module is used to acquire physiological parameter signals of a human body or process the acquired physiological parameter signals to obtain physiological parameter information of the human body; The second acquisition module is used to acquire non-physiological parameter signals or at least process the acquired non-physiological parameter signals to obtain the wearable activity information of the human body; The communication unit is used to establish a communication connection with the bedside monitoring device; The processor is configured to perform the following operations: sending a first physiological parameter signal or first physiological parameter information to the bedside monitoring device through the communication unit; and sending a non-physiological parameter signal or the wearing activity information through the communication unit, so that the bedside monitoring device displays the first physiological parameter information and the wearing activity information; The wearable activity information includes at least one of human body posture information, position information, exercise time and sleep time.
44. A monitoring system comprising: Bedside monitoring devices and mobile monitoring devices that can be attached to the human body; The bedside monitoring device establishes a communication connection with the mobile monitoring device; Wherein, the bedside monitoring device is the bedside monitoring device as described in any one of claims 36 to 42.
Citation Information
Patent Citations
Monitoring method, monitor and computer storage medium
CN112911992A
Information processing system, information processing server, information processing program, and fatigue evaluation method
EP3096235A1
Mobile monitoring apparatus, monitoring and caretaking apparatus, monitoring and caretaking system, and patient status monitoring method
WO2020133426A1
Patient state monitoring system and method
WO2020133541A1