A health management system
Through the health monitoring user-side communication between the health management system, the problem of existing equipment being unable to seek help in a timely manner is solved, and timely rescue of users in emergencies is achieved, especially for users with inconvenient language and activities.
Patent Information
- Application Number
- CN202211011545.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-23
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2042-08-23
AI Technical Summary
The existing health testing management equipment lacks the function of alarm and help, which makes it impossible for users to send rescue messages in a timely manner in case of emergencies, especially when language communication or inconvenient activity.
A health management system is designed to detect the user's health through the health monitoring user's end, and upload the detection results and rescue instructions to the server through the data network. The server calls for alarm and asks for help based on the user's preset information. The system includes the health monitoring user, the data network (such as GPRS, WIFI, Bluetooth) and the server communication, and provides feedback and help instructions using light strip flickering and speaker broadcasting.
It realizes that in the case of a user's physical emergency, rescue information can be sent in a timely manner through simple operations, improving the timeliness of rescue in emergencies, especially for users with inconvenient language and activities.
Smart Images

Figure CN115670395B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of health management, and in particular, relates to a health management system. Background Art
[0002] The pulse can be felt through the human body surface, such as the human arteries on the inside of the wrist and the side of the neck. The human circulatory system consists of blood vessels, blood and the heart, which are responsible for transporting the oxygen, carbon dioxide, nutrients and waste needed by the human body.
[0003] Pulse maintains the basic needs of survival and can reflect the health status of the human body. By detecting and recording the user's pulse, the user's health status can be managed to a certain extent. When people encounter emergencies, they need to seek help from external police or medical personnel. In the event of abnormal physical conditions of the user, such as difficulty in verbal communication or movement, the issuance of rescue information can increase the timeliness of rescue. However, existing health detection and management equipment does not have the function of alarming and seeking help. Summary of the Invention
[0004] In order to achieve the purpose of being able to perform daily health checks on users while issuing rescue information instructions based on simple user operations, the present invention adopts the following technical solutions:
[0005] The purpose of the present invention is to provide a health management system that detects the daily health status of a user through a health monitoring user terminal, and after the user inputs a rescue command to the health monitoring user terminal, uploads it to a server through a data network;
[0006] The server sends an alarm for help based on the user's preset information, so that people can be rescued in time;
[0007] When an emergency occurs in the user's physical condition and it is inconvenient to communicate verbally or move around, a simple operation on the health monitoring user terminal can be used to issue a rescue command in a timely manner through the health monitoring user terminal.
[0008] In order to achieve the above-mentioned object, the present invention provides a health management system including a health monitoring user terminal for detecting the health condition of a user;
[0009] The health monitoring user terminal uploads the health test results to the server via a data network such as a GPRS network, a WIFI network or a Bluetooth network to detect the user's daily health condition;
[0010] The solution for using the health monitoring client to call for help on behalf of the user is:
[0011] The health monitoring client uploads the instructions input by the user to the server via a data network such as a GPRS network, a WIFI network or a Bluetooth network;
[0012] The server transmits a high-frequency flashing instruction of the light strip to the health monitoring user terminal, so that the user can get feedback in the event of an erroneous operation;
[0013] When user commands are continuously input to the server, the server transmits low-frequency flashing commands of the light strip to the health monitoring user terminal, and at the same time issues an alarm for help according to the user's preset information. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The following drawings are intended only to illustrate and explain the present invention, wherein:
[0015] Figure 1 A flowchart for using the health management system to detect the user's daily health status;
[0016] Figure 2 A flowchart for using the health management system to call for help on behalf of the user;
[0017] Figure 3 This is a schematic diagram of the structure of the health monitoring user end part of the present invention Figure 1 ;
[0018] Figure 4 This is a schematic diagram of the structure of the health monitoring user end part of the present invention Figure 2 ;
[0019] Figure 5 This is a schematic diagram of the structure of the health monitoring user end part of the present invention Figure 3 ;
[0020] Figure 6 This is a schematic diagram of the structure of the health monitoring user end part of the present invention Figure 4 ;
[0021] Figure 7 This is a schematic diagram of the structure of the health monitoring user end part of the present invention Figure 5 ;
[0022] Figure 8 This is a schematic diagram of the structure of the health monitoring user end part of the present invention Figure 6 ;
[0023] Figure 9 This is a schematic diagram of the structure of the health monitoring user end part of the present invention Figure 7 .
[0024] In the figure: placement box 1; cover 2; positioning frame 21; main board 22; button 23; collar 24; spring I 25; spring II 26; light strip 27; lifting seat 31; pressing seat 32; finger hook handle 33; rubber plate 34; inflation sleeve 41; flange 42; sliding sleeve 43; detection rod 44; airbag 45; patch 46; rescue button 47; pressure detector 51. DETAILED DESCRIPTION
[0025] In order to achieve the purpose of being able to perform daily health checks on users and issue rescue information instructions based on simple operations of users, the present invention provides a health management system, including a health monitoring user terminal for detecting the health status of users;
[0026] The health monitoring user terminal uploads the health test results to the server through a data network such as a GPRS network, a WIFI network or a Bluetooth network to detect the user's daily health condition.
[0027] Reference Figure 1 and Figure 7 As shown, an embodiment of the health management system provided by the present invention, which uses a health monitoring user terminal to detect the user's health status:
[0028] The health monitoring user terminal includes a placement box 1 and a mainboard 22 installed in the placement box 1;
[0029] An inflatable sleeve 41 is installed in the placement box 1, and a detection rod 44 is movably installed in the inflatable sleeve 41. A patch 46 is provided at the end of the detection rod 44. The user holds the detection rod 44 so that the inner side of the wrist abuts against the patch. The sensor built into the detection rod 44 and connected to the patch detects the user's pulse, thereby realizing health detection of the user;
[0030] The sensor is connected to the main board 22 via a wire.
[0031] Reference Figure 7-9 As shown, the health management system provided by the present invention further improves the detection stick 44 and adds an embodiment of a health detection method for the user:
[0032] The inflatable sleeve 41 is installed on the side of the placement box 1 through a flange 42. A sliding sleeve 43 is slidably connected inside the inflatable sleeve 41. The interior of the sliding sleeve 43 is hollow. A detection rod 44 is slidably connected inside the sliding sleeve 43. The interior of the detection rod 44 is hollow. An air bag 45 connected to the detection rod 44 is provided at the end of the detection rod 44. A pressure detector 51 is provided at the end of the inflatable sleeve 41.
[0033] The patch 46 is provided on the airbag 45. The sensor installed inside the patch 46 on the airbag 45 is connected to the main board 22 via a wire. The wire passes through the hollow area of the inflatable sleeve 41, the sliding sleeve 43 and the detection rod 44, and is connected to the main board 22.
[0034] A cylindrical sealing rubber sleeve is installed at the position where the wire passes through the inflatable sleeve 41. The wire is adhered to the middle perforation of the cylindrical sealing rubber sleeve and filled with sealant to achieve sealing measures for the inflatable sleeve 41.
[0035] The end of the inflatable sleeve 41 passes through one side of the placement box 1, and an inflatable hole is provided at the exposed end of the inflatable sleeve 41;
[0036] By delivering a specified amount of gas into the inflatable sleeve 41, the operating state of the device including the internal pressure state of the inflatable sleeve 41 and the extended length of the detection rod 44 are adjusted;
[0037] The side of the inflatable sleeve 41 is connected to a branch pipe, on which a pressure detector 51 is installed. When the user presses the airbag 45 with his hand, the air pressure value in the inflatable sleeve 41 is changed, thereby realizing the use of the pressure detector 51 to detect the user's daily hand grip strength.
[0038] The user holds the area of the detection rod 44 where the airbag 45 is not installed, pushes the detection rod 44, and makes the detection rod 44 slide on the sliding sleeve 43, thereby changing the air pressure value in the inflatable sleeve 41, and then using the pressure detector 51 to detect the user's daily arm strength.
[0039] Through the above operations, the user's muscle condition and physical condition are analyzed. Long-term testing can analyze whether the user's health status has declined, provide health maintenance suggestions to the user, and achieve comprehensive health management for the user.
[0040] Reference Figure 2-7 As shown, an embodiment of the health management system provided by the present invention is described, in which a user issues a designated rescue instruction through a health monitoring user terminal:
[0041] The placement box 1 can be installed at the user's daily rest or work location, so that when the user's physical condition is in an emergency and it is inconvenient to communicate verbally or move, a rescue instruction can be issued in time through the health monitoring user terminal.
[0042] The solution for using the health monitoring client to call for help on behalf of the user is:
[0043] The health monitoring client uploads the instructions input by the user to the server through a data network such as a GPRS network, a WIFI network or a Bluetooth network;
[0044] The placement box 1 is provided with a cover 2, on which a main board 22 and two buttons 23 are provided. The main board 22 is provided with a communication device, a storage device, a microphone and a speaker, which enable the user to communicate with medical staff through the communication device and to upload instructions to a server through a data network.
[0045] The storage device stores an audio file of first aid instructions corresponding to the user's condition, and the first aid voice is broadcast to the user through the speaker, so that the user can save himself. When the user has difficulty speaking or is unable to continuously control the button 23, the broadcast volume of the speaker is gradually increased to attract rescuers or nearby people to help.
[0046] Reference Figure 2-6 As shown, an embodiment of the health management system provided by the present invention is described, in which a server transmits a flashing instruction of the light strip 27 to a health monitoring user terminal, so that the user can get feedback in the event of an erroneous operation:
[0047] The cover 2 is provided with a light strip 27. A power supply for supplying power to the light strip 27 and the main board 22 is also installed on the cover 2. The light strip 27 is connected to the main board 22 via a wire.
[0048] The server transmits the flashing instruction of the light strip 27 to the health monitoring user terminal, so that the user can get feedback in the event of an erroneous operation;
[0049] While the server is calling for help on behalf of the user based on the user's preset information, it uses the built-in speaker of the health monitoring user terminal to broadcast emergency voice.
[0050] When user commands are continuously input to the server, the server will send out an alarm for help based on the user's preset information.
[0051] Reference Figure 3-7 As shown, the health management system provided by the present invention is described, and the component structure of the health monitoring user terminal used for command input in this application is shown:
[0052] The cover 2 is provided with two buttons 23 for users to upload instructions to the server. The buttons 23 are connected to the mainboard 22 via wires. The two buttons 23 are controlled by lifting the lifting seat 31 and pressing the pressing seat 32 respectively.
[0053] The lower side of the cover 2 is fixedly connected to a positioning frame 21 by fasteners, and two buttons 23 are respectively installed on the lower side of the cover 2 and the upper side of the positioning frame 21;
[0054] A plurality of slide posts are installed between the positioning frame 21 and the cover body 2 , and the lifting seat 31 and the pressing seat 32 are slidably connected to the plurality of slide posts on both sides respectively; a collar 24 is installed on each slide post.
[0055] A spring I 25 is sleeved on the outer side of the sliding column connected to the lifting seat 31. The two ends of the spring I 25 are respectively welded and fixed to the lifting seat 31 and the collar 24. The collar 24 is installed on the lower side of the cover body 2 through fasteners.
[0056] The outer side of the sliding column connected to the pressing seat 32 is sleeved with a spring II 26. The two ends of the spring II 26 are respectively welded and fixed to the pressing seat 32 and the collar 24. The collar 24 is mounted on the upper side of the positioning frame 21 through fasteners.
[0057] The lifting seat 31 is fixedly connected to the movable end of the button 23 installed on the lower side of the cover body 2 by a fastener; the pressing seat 32 is fixedly connected to the movable end of the button 23 installed on the upper side of the positioning frame 21 by a fastener;
[0058] A finger hook handle 33 is provided on the upper side of the lifting seat 31 , and a rubber plate 34 is provided on the upper side of the pressing seat 32 .
[0059] Reference Figure 3-7 As shown, two embodiments of the health management system provided by the present invention are described, in which a user uses a health monitoring user terminal to input a rescue command:
[0060] The user hooks the thumb of one hand on the finger hook handle 33 and pulls the lifting seat 31 upward, and presses the rubber plate 34 with the remaining fingers to input the rescue command;
[0061] During this process, the control directions of the finger hook handle 33 and the rubber plate 34 are opposite, so that after the rubber plate 34 is accidentally hit, the alarm will not be triggered immediately, thereby increasing the reliability of the rescue information.
[0062] The user only presses the rubber plate 34 to send a rescue pending instruction to the server. Then, the light strip 27 on the health monitoring user terminal flashes at a high frequency and the volume of the emergency voice broadcast by the speaker is gradually increased to detect whether it is a user's mistake.
[0063] When user commands are continuously input to the server, the server transmits low-frequency flashing commands of the light strip to the health monitoring user terminal, and at the same time issues an alarm for help according to the user's preset information.
[0064] The size of the placement box 1 and the cover 2 are individually set for different users, and the area of the rubber plate 34 is 1.5 times the area of the user's palm;
[0065] Moreover, the coverage area of the rubber plate 34 accounts for one-half to one-third of the upper side area of the cover body 2, so that when an emergency occurs in the user's physical condition and when it is inconvenient to communicate verbally or move, a rescue instruction can be issued in time through the health monitoring user terminal.
[0066] Reference Figure 7As shown, an embodiment of the health management system provided by the present invention, which adds a user alarm and help method:
[0067] The side of the detection rod 44 is provided with a rescue button 47, which is also connected to the main board 22 via a wire. When the user presses the rescue button 47, the light strip 27 on the health monitoring user end flashes and the volume of the emergency voice broadcast by the speaker gradually increases to detect whether it is a user's mistake.
[0068] After that, when subsequent user commands are continuously input to the server, the server will send an alarm for help based on the user's preset information;
[0069] The combination of the rescue button 47, the finger hook handle 33 and the rubber plate 34 allows the user to call for help in a variety of ways.
Claims
1. A health management system, characterized by: Including a health monitoring user terminal for detecting the user's health condition; The health monitoring user terminal uploads the health test results to the server via the data network; The health monitoring user terminal uploads the rescue command input by the user to the server through the data network, and then the server transmits the light strip (27) flashing command to the health monitoring user terminal so that the user can get feedback. After confirming the user's rescue command, the server replaces the user to call for help according to the user's preset information; The light strip (27) is mounted on a cover (2) on one side of the placement box (1); the cover (2) is located inside the placement box (1) and is also equipped with a main board (22) capable of controlling the light strip (27) to flash; The mainboard (22) is provided with a communication device for communication between the user and medical staff; An inflatable sleeve (41) is installed in the placement box (1), a detection rod (44) is movably installed in the inflatable sleeve (41), and a patch (46) is provided at the end of the detection rod (44). The user holds the detection rod (44) so that the inner side of the wrist abuts against the patch, and the user's health data is detected through a sensor connected to the patch built into the detection rod (44), and the sensor is connected to the main board (22) through a wire. The detection rod (44) is hollow inside and an air bag (45) is provided at the end thereof. The patch is provided on the air bag (45). A pressure detector (51) for detecting air pressure is provided at the end of the inflatable sleeve (41). By holding the air bag (45) to deform it, the air pressure inside the inflatable sleeve (41) is changed, thereby detecting the health of the user's hand muscles through the pressure detector (51).
2. The health management system according to claim 1, characterized in that: The data network includes one or more of a GPRS network, a WIFI network and a Bluetooth network.
3. The health management system according to claim 1, characterized in that: The server uses the built-in speaker of the health monitoring user terminal to broadcast emergency voice according to the user's preset information while replacing the user to call the police for help.
4. The health management system according to claim 1, characterized in that: Two buttons (23) for users to upload instructions to the server are installed on the cover (2). The buttons (23) are connected to the main board (22) through wires. The two buttons (23) are controlled by lifting the lifting seat (31) and pressing the pressing seat (32) respectively.
5. The health management system according to claim 4, characterized in that: Trigger two buttons (23) at the same time to upload the rescue instructions.
6. The health management system according to claim 4, characterized in that: The corresponding button (23) is triggered by pressing the pressing seat (32) alone, and the rescue instruction to be determined is uploaded.
Citation Information
Patent Citations
Healthy sign guardianship of ring type, alarm
CN205514557U