Health examination virtual scene dynamic display and user behavior guide device
By using intelligent distribution machines and handheld touchscreens, the problems of low process efficiency, human-computer interaction deficiencies, and incomplete knowledge dissemination in the traditional health check model have been solved. Intelligent route navigation, health knowledge dissemination, and real-time vital sign monitoring have been achieved, improving the efficiency of health checks and the user experience.
Patent Information
- Application Number
- CN202511018752.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-23
- Publication Date
- 2025-11-04
AI Technical Summary
Traditional health checkup models suffer from inefficient processes, poor human-computer interaction, and incomplete knowledge dissemination. This is especially true when health checkup centers rely on physical information desks, resulting in users wasting time on average and severe information silos between departments, making it impossible to achieve real-time data synchronization and dynamic guidance.
It employs intelligent distribution machines, display and guidance handheld touchscreens, health monitoring wristbands, cloud-based health knowledge bases, and user cloud databases. Through facial recognition, millimeter-wave monitoring radar, and navigation modules, it achieves intelligent path guidance, health knowledge dissemination, and real-time vital sign monitoring. Combined with wireless charging and limit components, it optimizes the use of the equipment.
It enables intelligent route navigation, health knowledge dissemination, real-time vital sign monitoring, and adaptive diversion of departmental traffic, shortening examination time, improving efficiency, avoiding queuing and information silos, and providing personalized health management.
Smart Images

Figure CN120895191A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of health examination guiding devices, and specifically relates to a health examination virtual scene dynamic display and user behavior guiding device. BACKGROUND
[0002] With uneven distribution of global medical resources and surging demand for chronic disease management (WHO 2024 report shows that chronic diseases account for 73% of death causes), the traditional health examination mode faces three technical bottlenecks:
[0003] 1. Physical space limitation: existing physical examination centers rely on physical guide desks, resulting in low process efficiency (users waste an average of 23 minutes on path searching), and the information island phenomenon of departments is serious, and data of devices such as ultrasound and CT cannot be synchronized to the guide system in real time;
[0004] 2. Defects in human-computer interaction: traditional touch screen guide devices lack feature perception ability and cannot dynamically adjust the guiding strategy;
[0005] 3. Incomplete knowledge popularization: in the traditional examination process, it is inconvenient to popularize health knowledge to users and to inform them in advance about the examination process and precautions;
[0006] Therefore, the application provides a health examination virtual scene dynamic display and user behavior guiding device to improve the above problems. SUMMARY
[0007] In view of the above situation, in order to overcome the defects of the prior art, the application provides a health examination virtual scene dynamic display and user behavior guiding device, which effectively solves the problem of poor use effect of the existing health guiding device.
[0008] To achieve the above purpose, the application provides the following technical scheme: a health examination virtual scene dynamic display and user behavior guiding device, comprising an intelligent distribution machine, a plurality of display and guiding handheld touch screens, a health monitoring bracelet, a cloud health knowledge base and a user cloud database, the display and guiding handheld touch screens are located in the interior of the intelligent distribution machine, and the intelligent distribution machine, the display and guiding handheld touch screens, the health monitoring bracelet, the cloud health knowledge base and the user cloud database are interconnected;
[0009] The intelligent distribution machine is composed of a body, a health knowledge display screen, a face recognition camera one, a touch control screen and a plurality of storage trays, the health knowledge display screen is fixedly connected to the top end of the body, the face recognition camera one and the touch control screen are both fixedly connected to the top end of the front face of the body, and the storage trays are inserted into the front face and both sides of the body;
[0010] The middle position of the front top end of the display and guide handheld touch screen is fixedly provided with the face recognition camera two, and the middle position of the front bottom end of the display and guide handheld touch screen is fixedly provided with the millimeter wave monitoring radar. The inside of the display and guide handheld touch screen is provided with a main control module, a floor detailed map storage module, a navigation module, a department flow adaptive distribution module, a physical examination path generation module, a physical examination process display module, a health knowledge storage module, a user information temporary storage module, a millimeter wave radar monitoring module, a WiFi module, a display module, a positioning module, an alarm module, a linear vibration module, a face recognition and information matching module, a wireless charging module and a chip sensing module.
[0011] Preferably, the intelligent distribution machine, the display and guide handheld touch screen, the cloud health knowledge base and the user cloud database are connected through a WiFi network, and the health monitoring bracelet is connected with the intelligent distribution machine, the cloud health knowledge base and the user cloud database through a 5G network.
[0012] Preferably, the navigation module is one of a Baidu navigation platform, a Gaode navigation platform and a Tencent navigation platform.
[0013] Preferably, the display and guide handheld touch screen is fixedly provided with a handle on both sides.
[0014] Preferably, the front of the storage tray is fixedly provided with an LED lamp strip, the bottom of the inside of the storage tray is fixedly provided with a wireless charging coil and a sensing chip, and recesses are formed in the middle positions of the top of the storage tray on both sides.
[0015] Preferably, the middle position of the back of the storage tray is fixedly provided with an iron block, and the inside of the intelligent distribution machine is fixedly provided with a plurality of limiting components matched with the storage tray.
[0016] Preferably, the limiting component is composed of a strip-shaped support plate, an electromagnet and two ejection units, the strip-shaped support plate is fixedly connected to the inside of the intelligent distribution machine, the electromagnet is fixedly connected to the middle position of the front of the strip-shaped support plate, and the ejection units are connected to both ends of the strip-shaped support plate in a penetrating manner.
[0017] Preferably, the ejection unit is composed of a limiting rod, a limiting plate and a spring, the limiting rod is slidably inserted into the strip-shaped support plate, the limiting plate is fixedly connected to one end of the limiting rod, and the spring is sleeved on the limiting rod and located between the limiting plate and the strip-shaped support plate.
[0018] Preferably, the health monitoring bracelet is composed of a monitor body and an elastic band connected with the monitor body.
[0019] Preferably, the dynamic display of the health examination virtual scene and the display and guidance mode of the user behavior guidance device comprises the following steps:
[0020] Step one, after the user enters the hospital or examination center, the user performs face recognition according to the prompt on the intelligent distribution machine and takes the display and guidance handheld touch screen;
[0021] Step two, the display and guidance handheld touch screen automatically generates a physical examination process and path according to patient information and personnel flow of each department, and adjusts the path in real time according to the change of personnel flow, realizes path navigation, has a navigation deviation reminding function, and needs to reserve a virtual position in the queuing process of each department, so that the user can be inserted into the virtual position for rapid examination;
[0022] Step three, during the examination waiting period, the display and guidance handheld touch screen calls the internal video or text content of the cloud health knowledge base to realize health popularization for the user, and can also display the examination process and precautions;
[0023] Step four, the user enters each department for health examination, and judges the subsequent process according to the examination result, returns the display and guidance handheld touch screen and leaves the hospital if all the examination indexes are normal, and can also perform chronic disease early warning according to the indexes; if the user is in a sub-health state, the medical staff distributes the corresponding health monitoring bracelet according to the patient's physical condition, the user can take it home for real-time monitoring, and regularly performs examination; if the user's examination data is abnormal, the user enters the corresponding diagnosis and treatment department for further diagnosis and treatment;
[0024] Step five, after the diagnosis and treatment are completed, the user can watch or forward the post-treatment and recuperation video, then returns the display and guidance handheld touch screen and leaves the hospital;
[0025] Step six, all user examination data are uploaded to the user cloud database for comparison and reference of the examination data in the later period.
[0026] Compared with the prior art, the present application has the following advantages:
[0027] (1) In work, the display and guidance handheld touch screen can be stored and distributed through the intelligent distribution machine, the intelligent path guidance can be realized through the display and guidance handheld touch screen, the guidance strategy can be dynamically adjusted, the user examination time can be shortened, the examination efficiency can be improved, the health knowledge popularization can be realized, and the examination process and precautions can be reminded;
[0028] (2), by setting millimeter wave monitoring radar, can real-time collection of user physical data, for the inspection process to provide data reference;
[0029] (3), can be according to the department personnel flow automatic shunt, avoid the emergence of long queue, also avoid the department information island phenomenon;
[0030] (4), by setting wireless charging coil, inductive chip, iron block, limiting assembly, can realize to show and guide hand held touch screen position sensing and charging, at the same time realize to show and guide hand held touch screen limiting and ejection;
[0031] (5), by setting health monitoring bracelet composed of monitor body and elastic band, can carry out real-time physical sign monitoring to sub health user. BRIEF DESCRIPTION OF DRAWINGS
[0032] The accompanying drawings are included to provide a further understanding of the application, and constitute a part of the specification, illustrate the application, and together with the embodiments of the application, serve to explain the application, and do not constitute the limitation of the application.
[0033] In the drawings:
[0034] Figure 1 It is health examination virtual scene dynamic display and user behavior guiding device structure schematic view for the application;
[0035] Figure 2 It is intelligent distribution machine structure schematic view for the application;
[0036] Figure 3 It is show and guide hand held touch screen structure schematic view for the application;
[0037] Figure 4 It is show and guide hand held touch screen internal module connection schematic view for the application;
[0038] Figure 5 It is storage tray and limiting assembly structure schematic view for the application;
[0039] Figure 6 It is limiting assembly structure schematic view for the application;
[0040] Figure 7 It is health monitoring bracelet structure schematic view for the application;
[0041] Figure 8 It is health examination virtual scene dynamic display and user behavior guiding device show and guide flow chart for the application;
[0042] In the diagram: 1. Intelligent dispensing machine; 2. Handheld touchscreen for display and guidance; 3. Health monitoring wristband; 4. Cloud-based health knowledge base; 5. User cloud database; 6. Machine body; 7. Health knowledge display screen; 8. Face recognition camera one; 9. Touch control screen; 10. Storage tray; 11. Face recognition camera two; 12. Millimeter-wave monitoring radar; 13. Main control module; 14. Detailed map storage module for each floor; 15. Navigation module; 16. Departmental traffic adaptive allocation module; 17. Physical examination route generation module; 18. Physical examination process display module; 19. Health knowledge storage module; 20. User information. 21. Temporary storage module; 22. Millimeter-wave radar monitoring module; 23. WiFi module; 24. Display module; 25. Positioning module; 26. Alarm module; 27. Linear vibration module; 28. Face recognition and information matching module; 29. Wireless charging module; 30. Chip sensing module; 31. Handle; 32. LED light strip; 33. Wireless charging coil; 34. Sensing chip; 35. Groove; 36. Iron block; 37. Limiting component; 38. Strip support plate; 39. Electromagnet; 40. Ejection unit; 41. Limiting rod; 42. Limiting plate; 43. Spring; 44. Monitor body; 45. Elastic band. Detailed Implementation
[0043] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0044] Implementation examples, by Figures 1 to 8 The present invention provides a device for dynamic display of virtual scene of health check and guidance of user behavior, including intelligent distribution machine 1, several display and guidance handheld touch screens 2, health monitoring bracelets 3, cloud health knowledge base 4 and user cloud database 5. The display and guidance handheld touch screens 2 are located inside the intelligent distribution machine 1, and the intelligent distribution machine 1, the display and guidance handheld touch screens 2, the health monitoring bracelets 3, the cloud health knowledge base 4 and the user cloud database 5 are interconnected.
[0045] The intelligent distribution machine 1 distributes products to the handheld touchscreen 2 for display and guidance; the health monitoring bracelet 3 monitors the vital signs of sub-healthy users in real time; the cloud-based health knowledge base 4 stores health knowledge; and the user cloud database 5 stores user data.
[0046] The intelligent distribution machine 1 is composed of a body 6, a health knowledge display screen 7, a face recognition camera 8, a touch control screen 9 and a plurality of storage trays 10. The health knowledge display screen 7 is fixedly connected to the top end of the body 6. The face recognition camera 8 and the touch control screen 9 are both fixedly connected to the top end of the front face of the body 6. The storage trays 10 are inserted into the front face and both sides of the body 6.
[0047] The health knowledge display screen 7 can display health knowledge and guide paths in the lobby. The face recognition camera 8 can perform face recognition on users. The touch control screen 9 can be easily operated by users. The storage trays 10 can store the display and guide handheld touch screen 2.
[0048] The display and guide handheld touch screen 2 is fixedly arranged at the middle position of the top end of the front face of the display and guide handheld touch screen 2. A millimeter wave monitoring radar 12 is fixedly arranged at the middle position of the bottom end of the front face of the display and guide handheld touch screen 2. The display and guide handheld touch screen 2 is internally provided with a main control module 13, a detailed floor map storage module 14, a navigation module 15, a department flow adaptive distribution module 16, a physical examination path generation module 17, a physical examination process display module 18, a health knowledge storage module 19, a user information temporary storage module 20, a millimeter wave radar monitoring module 21, a WiFi module 22, a display module 23, a positioning module 24, an alarm module 25, a linear vibration module 26, a face recognition and information matching module 27, a wireless charging module 28 and a chip sensing module 29. The detailed floor map storage module 14, the navigation module 15, the department flow adaptive distribution module 16, the physical examination path generation module 17, the physical examination process display module 18, the health knowledge storage module 19, the user information temporary storage module 20, the millimeter wave radar monitoring module 21, the WiFi module 22, the display module 23, the positioning module 24, the alarm module 25, the linear vibration module 26, the face recognition and information matching module 27, the wireless charging module 28 and the chip sensing module 29 are all connected with the main control module 13.
[0049] The display and guide handheld touch screen 2 can store detailed in-hospital maps and realize intelligent navigation, shorten the time for users to find departments, improve examination efficiency, adaptively distribute according to department flow, avoid long queues, automatically generate physical examination paths, popularize health knowledge for users, and provide examination processes and precautions in advance. The millimeter wave radar monitoring module 21 realizes intelligent monitoring of user signs and provides assistance for subsequent examinations. The positioning module 24 realizes real-time positioning of user positions. The linear vibration module 26 can prompt users to avoid deviating from the navigation path and missing queuing information.
[0050] The intelligent distribution machine 1, the display and guide handheld touch screen 2, the cloud health knowledge base 4 and the user cloud database 5 are connected with a WiFi network, and the health monitoring bracelet 3 is connected with the intelligent distribution machine 1, the cloud health knowledge base 4 and the user cloud database 5 through a 5G network, so that network interconnection can be realized;
[0051] The navigation module 15 is one of a Baidu navigation platform, a Gaode navigation platform and a Tencent navigation platform, so that the navigation accuracy and efficiency are improved by using a mature navigation platform;
[0052] The display and guide handheld touch screen 2 is provided with a handle 30 on each side, the front of the storage tray 10 is provided with an LED lamp strip 31, the bottom of the storage tray 10 is provided with a wireless charging coil 32 and an induction chip 33, and recesses 34 are formed in the middle positions of the two sides of the top of the storage tray 10, so that the LED lamp strip 31 can realize pop-up reminding, the wireless charging coil 32 can realize wireless charging, and the induction chip 33 can realize storage position induction;
[0053] The middle position of the back of the storage tray 10 is provided with an iron block 35, and the inside of the intelligent distribution machine 1 is provided with a plurality of limiting assemblies 36 matched with the storage tray 10, the limiting assembly 36 is composed of a strip-shaped supporting plate 37, an electromagnet 38 and two ejection units 39, the strip-shaped supporting plate 37 is fixedly connected to the inside of the intelligent distribution machine 1, the electromagnet 38 is fixedly connected to the middle position of the front of the strip-shaped supporting plate 37, and the ejection unit 39 is connected to the two ends of the strip-shaped supporting plate 37 in a penetrating manner, the ejection unit 39 is composed of a limiting rod 40, a limiting plate 41 and a spring 42, the limiting rod 40 is slidably inserted into the strip-shaped supporting plate 37, the limiting plate 41 is fixedly connected to one end of the limiting rod 40, and the spring 42 is sleeved on the limiting rod 40 and located between the limiting plate 41 and the strip-shaped supporting plate 37;
[0054] When the display and guide handheld touch screen 2 is put back into the intelligent distribution machine 1, the electromagnet 38 realizes magnetic attraction limiting of the iron block 35, so as to realize magnetic attraction limiting of the storage tray 10, when the display and guide handheld touch screen 2 is taken out, the electromagnet 38 is released from limiting, the spring 42 drives the limiting rod 40 to move, the storage tray 10 is ejected through the limiting rod 40, and the user can take out the display and guide handheld touch screen 2 from the storage tray 10;
[0055] The health monitoring bracelet 3 is composed of a monitor body 43 and an elastic band 44, the elastic band 44 is connected with the monitor body 43, the user can carry the health monitoring bracelet 3, and real-time detection function is realized, so as to provide help for subsequent examination;
[0056] The display and guide mode of the health examination virtual scene dynamic display and user behavior guide device comprises the following steps:
[0057] Step one, after the user enters the hospital or examination center, face recognition is performed according to the prompt on the intelligent distribution machine 1, and a display and guide handheld touch screen 2 is taken;
[0058] Step two, the display and guide handheld touch screen 2 automatically generates a physical examination process and path according to patient information and personnel flow of each department, and adjusts the path in real time according to personnel flow changes, realizes path navigation, has a navigation deviation reminding function, and needs to reserve a virtual position in the queuing process of each department. When there is an emergency user, the virtual position can be inserted to realize rapid examination;
[0059] Step three, during the examination waiting period, the display and guide handheld touch screen 2 calls the video or text content in the cloud health knowledge base 4 to realize health popularization to the user, and can also display the examination process and precautions;
[0060] Step four, the user enters each department for health examination, and the subsequent process is determined according to the examination results. If all the indicators are normal, the user returns the display and guide handheld touch screen 2 and leaves the hospital. According to the indicators, chronic disease early warning can also be performed. If the user is in a sub-healthy state, the medical staff assigns a corresponding health monitoring bracelet 3 according to the patient's physical condition. The user can take it home for real-time monitoring and regular examination. If the user's examination data is abnormal, further diagnosis and treatment in the corresponding diagnosis and treatment department are needed;
[0061] Step five, after the diagnosis and treatment are completed, the user can watch or forward the post-treatment and recuperation video, then return the display and guide handheld touch screen 2 and leave the hospital;
[0062] Step six, all user examination data are uploaded to the user cloud database 5 for comparison and reference of the examination data in the later period;
[0063] In work, through the setting of the intelligent distribution machine, the display and guide handheld touch screen can be stored and distributed. Through the setting of the display and guide handheld touch screen, intelligent path guidance can be realized, the guidance strategy can be dynamically adjusted, the user examination time can be shortened, the examination efficiency can be improved, health knowledge popularization can be realized, and the examination process and precautions can be reminded. Through the setting of the millimeter wave monitoring radar, user physical sign data can be collected in real time to provide data reference for the examination process. According to the personnel flow of each department, automatic shunting can be realized to avoid long queues and department information island phenomenon. Through the setting of the wireless charging coil, the induction chip, the iron block and the limiting assembly, the position sensing and charging of the display and guide handheld touch screen can be realized, and the display and guide handheld touch screen can be limited and ejected. Through the setting of the health monitoring bracelet composed of the monitor body and the elastic band, real-time physical sign monitoring of sub-healthy users can be realized.
Claims
1. A virtual scene dynamic display and user behavior guidance device for health checkups, comprising an intelligent distribution machine (1), several display and guidance handheld touchscreens (2), a health monitoring wristband (3), a cloud-based health knowledge base (4), and a user cloud database (5), characterized in that: The display and guidance handheld touch screen (2) is located inside the smart distribution machine (1), and the smart distribution machine (1), the display and guidance handheld touch screen (2), the health monitoring bracelet (3), the cloud health knowledge base (4) and the user cloud database (5) are interconnected; The intelligent distribution machine (1) consists of a body (6), a health knowledge display screen (7), a face recognition camera (8), a touch control screen (9), and several storage trays (10). The health knowledge display screen (7) is fixedly connected to the top of the body (6). The face recognition camera (8) and the touch control screen (9) are both fixedly connected to the top of the front of the body (6). The storage trays (10) are inserted into the front and sides of the body (6). A face recognition camera (11) is fixedly installed at the center of the top of the front of the handheld touchscreen (2). A millimeter-wave monitoring radar (12) is fixedly installed at the center of the bottom of the front of the handheld touchscreen (2). The handheld touchscreen (2) contains a main control module (13), a detailed map storage module for each floor (14), a navigation module (15), a departmental traffic adaptive allocation module (16), a physical examination path generation module (17), a physical examination process display module (18), a health knowledge storage module (19), a user information temporary storage module (20), a millimeter-wave radar monitoring module (21), a WiFi module (22), a display module (23), a positioning module (24), an alarm module (25), and a wired connection. The vibration module (26), face recognition and information matching module (27), wireless charging module (28) and chip sensing module (29), detailed map storage module (14) for each floor, navigation module (15), adaptive allocation module for departmental traffic (16), physical examination path generation module (17), physical examination process display module (18), health knowledge storage module (19), user information temporary storage module (20), millimeter-wave radar monitoring module (21), WiFi module (22), display module (23), positioning module (24), alarm module (25), linear vibration module (26), face recognition and information matching module (27), wireless charging module (28) and chip sensing module (29) are all connected to the main control module (13).
2. The device for dynamic display of a virtual health checkup scene and guidance of user behavior according to claim 1, characterized in that: The intelligent distribution machine (1), the display and guidance handheld touch screen (2), the cloud health knowledge base (4) and the user cloud database (5) are connected to a WiFi network, and the health monitoring bracelet (3) is connected to the intelligent distribution machine (1), the cloud health knowledge base (4) and the user cloud database (5) via a 5G network.
3. The device for dynamic display of a virtual health checkup scene and guidance of user behavior according to claim 1, characterized in that: The navigation module (15) is one of the Baidu navigation platform, Gaode navigation platform, and Tencent navigation platform.
4. The device for dynamic display of a virtual health checkup scene and guidance of user behavior according to claim 1, characterized in that: Handles (30) are fixedly installed on both sides of the display and guidance handheld touch screen (2).
5. The device for dynamic display of a virtual health checkup scene and guidance of user behavior according to claim 1, characterized in that: An LED light strip (31) is fixedly installed on the front of the storage tray (10), a wireless charging coil (32) and a sensing chip (33) are fixedly installed at the bottom inside the storage tray (10), and a groove (34) is opened in the middle of both sides of the top of the storage tray (10).
6. The device for dynamic display of a virtual health checkup scene and guidance of user behavior according to claim 1, characterized in that: An iron block (35) is fixedly installed in the middle of the back of the storage tray (10), and several limiting components (36) that match the storage tray (10) are fixedly installed inside the intelligent distribution machine (1).
7. The device for dynamic display of a virtual health checkup scene and guidance of user behavior according to claim 6, characterized in that: The limiting component (36) consists of a strip support plate (37), an electromagnet (38), and two ejection units (39). The strip support plate (37) is fixedly connected to the inside of the intelligent dispensing machine (1), the electromagnet (38) is fixedly connected to the middle position of the front of the strip support plate (37), and the ejection unit (39) is connected through to both ends of the strip support plate (37).
8. The device for dynamic display of a virtual health checkup scene and guidance of user behavior according to claim 7, characterized in that: The ejection unit (39) consists of a limiting rod (40), a limiting plate (41), and a spring (42). The limiting rod (40) slides through the strip support plate (37), the limiting plate (41) is fixedly connected to one end of the limiting rod (40), and the spring (42) is sleeved on the limiting rod (40) and located between the limiting plate (41) and the strip support plate (37).
9. A device for dynamic display of a virtual health checkup scene and guidance of user behavior according to claim 1, characterized in that: The health monitoring bracelet (3) consists of a monitor body (43) and an elastic band (44), with the elastic band (44) connected to the monitor body (43).
10. The display and guidance method of a virtual scene dynamic display and user behavior guidance device for health checkups according to claims 1-9, characterized in that: Includes the following steps: Step 1: After entering the hospital or examination center, the user performs facial recognition according to the prompts on the intelligent dispensing machine (1) and receives the display and guidance handheld touch screen (2); Step 2, Display and guide the handheld touch screen (2) Automatically generate physical examination process and path according to patient information and personnel flow in each department, and adjust the path in real time according to changes in personnel flow. At the same time, it can realize path navigation and has a navigation deviation reminder function. Virtual positions need to be reserved in the queuing process of each department. When there are emergency users, virtual positions can be inserted to realize quick examination. Step 3: During the waiting period, display and guide the handheld touch screen (2) to access the cloud health knowledge base (4) internal video or text content to popularize health knowledge to users, and at the same time display the examination process and precautions; Step 4: Users enter various departments for health check-ups. The subsequent process is determined based on the check-up results. If all indicators are normal, the user returns the display and guidance handheld touchscreen (2) and leaves the hospital. At the same time, chronic disease warnings can be issued based on the indicators. If the patient is in a sub-healthy state, the medical staff will distribute a corresponding health monitoring bracelet (3) according to the patient's physical condition. The user can take it home for real-time monitoring and regular check-ups. If the user's check-up data is abnormal, the user will be taken to the corresponding diagnostic and treatment department for further diagnosis and treatment. Step 5: After diagnosis and treatment are completed, users can watch or forward the post-treatment and recuperation videos, then return the display and guidance handheld touch screen (2) and leave the hospital; Step 6: All user inspection data is uploaded to the user cloud database (5) for later comparison and reference.