Multifunctional medical detection instrument and use method thereof

By incorporating a testing channel within a circular equipment frame and a movable testing chair design, the problems of large space occupation and the need for personnel to move back and forth in traditional testing methods are solved, achieving an efficient, safe, and multifunctional testing process suitable for medical settings with limited space.

CN121910482AInactive Publication Date: 2026-04-24XUZHOU HAIOS MEDICAL TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
XUZHOU HAIOS MEDICAL TECH CO LTD
Filing Date
2026-01-19
Publication Date
2026-04-24
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional medical testing methods require separate testing rooms or workstations for different items, resulting in large space occupation. Testing personnel need to move back and forth between different workstations, which can easily lead to fatigue for the elderly and people with mobility difficulties. Furthermore, medical staff cannot keep up with the testing progress in real time, and there are issues with insufficient safety protection.

Method used

The device features a ring-shaped frame design with internal testing channels, a carrier plate workbench, and testing instruments. It is equipped with a movable testing chair and a medical staff seat, allowing testing personnel to move within the channel to complete multiple tests, while medical staff can operate simultaneously. The combination of ultraviolet sterilization and a conveyor belt improves testing efficiency and safety.

Benefits of technology

It significantly shortens testing time, increases the number of tests per unit time, makes better use of medical space, reduces personnel travel, enhances safety and the continuity of the testing process, and is suitable for scenarios with limited space.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN121910482A_ABST
    Figure CN121910482A_ABST
Patent Text Reader

Abstract

The invention discloses a multifunctional medical detection instrument and a use method thereof, and belongs to the technical field of medical detection, the multifunctional medical detection instrument comprises an annular equipment frame, and a detection channel is arranged in the annular equipment frame. By arranging the annular equipment frame, the detection channel can be formed in the annular equipment frame, the carrier plate workbench and the detection instrument main body are intensively arranged in the detection channel, and the movable detection chair is arranged, so that detection personnel can directly sit on the detection chair and move along the detection channel, and all detection items can be completed by encircling the detection chair for a circle; therefore, a detector does not need to transfer back and forth among a plurality of detection devices, the overall detection time can be remarkably shortened, the medical care seat is arranged and connected with the detection seat through the connecting frame, the medical care personnel can follow the corresponding detection seat to conduct detection operation in real time, the detection amount in unit time can be effectively increased, and the detection efficiency is improved. The method is suitable for detecting scenes with concentrated requirements.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of medical testing technology, and in particular to a multifunctional medical testing instrument and its usage method. Background Technology

[0002] A physical examination is a systematic, comprehensive, or targeted assessment of an individual's physical condition through a series of medical examination methods and means. Its core purpose is to understand and grasp an individual's health status, detect potential disease clues, health risk factors, and sub-health states early, thereby achieving "early detection, early diagnosis, and early treatment" of diseases. Routine physical examinations cover a wide range of items, mainly including general examinations such as height, weight, body mass index (BMI), blood pressure, pulse, and other basic physiological indicators; internal medicine examinations using inspection, palpation, percussion, and auscultation to understand the basic condition of organs such as the heart, lungs, liver, and spleen; surgical examinations of the skin, lymph nodes, thyroid gland, spine, limbs, anus, and external genitalia; ophthalmological examinations of visual acuity, color vision, and fundus examination; otolaryngological examinations of hearing and common diseases; and dental examinations of teeth and periodontal health.

[0003] In the current healthcare field, the demand for physical examinations continues to grow, but traditional medical testing models have significant limitations in terms of space and process. Traditional testing requires separate testing rooms or workstations for different items. For example, hospital physical examination centers often divide the space into independent areas such as "blood pressure testing area" and "blood testing area," and passageways need to be reserved between these areas, resulting in a large space occupation. This is especially true in community hospitals and small physical examination institutions with limited space, which not only reduces waiting space but also increases the cost of personnel movement, easily leading to overcrowding and chaotic flow during peak hours. At the same time, testing personnel need to move back and forth between different workstations, which can easily cause fatigue for the elderly and people with mobility impairments; medical staff waiting at fixed workstations cannot keep up with the progress, and data needs to be manually recorded and summarized, which is prone to delays or errors. A single test often takes 1-2 hours, making it difficult to meet the needs of large-scale rapid testing. Secondly, traditional testing models also suffer from poor personnel interaction and insufficient safety protection. Medical staff are stationed at a single workstation, and their interaction with testing personnel is limited to a single testing period. It is difficult to keep track of the testing personnel's condition throughout the process. If testing personnel experience discomfort such as dizziness or palpitations while moving around, it is difficult to get timely assistance. Testing personnel are easily confused in unfamiliar environments and scattered workstations, and need to frequently ask for directions, which increases communication costs. For some complex instruments, medical staff need to repeatedly explain the key points of cooperation, which prolongs the testing time, resulting in a poor experience for both parties. Summary of the Invention

[0004] The purpose of this invention is to solve the problems in the prior art where different testing items require separate testing rooms and workstations, resulting in large space occupation and the need for testing personnel to move back and forth between different workstations, which can easily lead to fatigue for the elderly and people with mobility difficulties. Therefore, this invention proposes a multifunctional medical testing instrument and its usage method.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: A multifunctional medical testing instrument includes a ring-shaped equipment frame. The ring-shaped equipment frame has a testing channel inside, and an entrance and exit communicating with the testing channel are respectively provided on the outer side of the ring-shaped equipment frame. Multiple carrier worktables are fixedly connected inside the testing channel, and multiple testing instrument bodies are placed on each carrier worktable. Multiple movable testing chairs are provided inside the testing channel. An opening is provided on the inner sidewall of the ring-shaped equipment frame, and a connecting frame is fixedly connected to each testing chair. Each connecting frame passes through the opening and extends into the inner ring of the ring-shaped equipment frame, and a medical chair is fixedly connected to each connecting frame.

[0006] Preferably, multiple observation glass plates are embedded in both the inner and outer walls of the annular equipment frame for observing the internal condition of the detection channel.

[0007] Preferably, multiple operating ports are provided on both the inner and outer walls of the annular equipment frame for operating the main body of the detection instrument.

[0008] Preferably, the testing chair includes a support chassis, an adjustable support rod is fixedly connected to the support chassis, a seat plate is provided on the top of the adjustable support rod, an adjusting pedal is installed on the adjustable support rod, and multiple casters are installed on the bottom surface of the support chassis.

[0009] Preferably, a weighing sensor is provided at the bottom of the seat plate for detecting the weight of the person, and auxiliary wheels are installed at the bottom of the medical chair.

[0010] Preferably, a support plate is hinged to one side of the seat plate via a pin, a support pedal is fixedly connected to the bottom of the support plate, a back plate is hinged to the other side of the seat plate via a pin, two control knobs for locking the support plate and the back plate are provided on the seat plate, and a push handle is fixedly connected to the back plate.

[0011] Preferably, a conveyor frame is installed inside the detection channel, a conveyor belt is installed on the conveyor frame, and the detection chairs are all set on the conveyor belt.

[0012] Preferably, a ventilator, a light strip, and an ultraviolet germicidal lamp are fixedly connected inside the detection channel, and protective doors are hinged in both the inlet and outlet of the detection channel.

[0013] Preferably, multiple access doors are hinged to both the inner and outer walls of the annular equipment frame for medical personnel to enter and exit. Multiple worktables are placed inside the inner ring of the annular equipment frame, and each worktable has a partition fixedly connected inside.

[0014] A method for using a multifunctional medical testing instrument includes the following steps: S1, Enter Testing personnel enter the testing channel through the entrance to be tested and sit on the testing chairs, while medical staff sit on the corresponding medical chairs; S2, Motion Detection The testing chair moves within the testing channel, and the testing is completed using the main body of the testing instrument during this process. S3, Leave After the inspection is complete, exit through the exit to leave.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. The circular equipment frame creates a testing channel within it, housing the carrier plate workbench and main testing instrument. A movable testing chair allows testing personnel to sit directly on the chair and move along the testing channel, completing all testing tasks in one loop. This eliminates the need for personnel to move between multiple testing devices, significantly reducing overall testing time. Furthermore, by incorporating medical staff chairs and connecting them to the testing chairs using a connecting frame, medical personnel can follow the corresponding chair in real-time, effectively increasing the testing volume per unit time. This design is suitable for scenarios with concentrated testing needs.

[0016] 2. The testing chair consists of an adjustable support rod, seat, backrest, support plate, and footrest. Testing personnel can flexibly adjust its position to meet the sitting posture needs of people of different heights and body types, avoiding discomfort caused by prolonged testing. Compared with traditional decentralized medical testing equipment, this device does not require separate areas for individual testing items, effectively reducing the cost of occupying medical space. Moreover, the testing process forms a closed loop, avoiding the need for testing personnel to travel between different testing rooms, indirectly reducing cross-contamination within the medical area. This allows for more rational and efficient use of limited medical space. Furthermore, medical staff can always accompany the testing personnel, enabling timely responses to unexpected situations and ensuring safety and controllability during the testing process.

[0017] 3. By installing ultraviolet germicidal lamps in the testing channel, the inside of the channel can be sterilized and disinfected during the testing interval, reducing the residue of bacteria and viruses; the set carrier plate worktable can easily place different testing instruments, and medical staff can flexibly change the type of testing instrument according to testing needs, which has strong functional expandability. Attached Figure Description

[0018] Figure 1 This is a front view structural diagram of a multifunctional medical testing instrument proposed in this invention; Figure 2This is a top view schematic diagram of a multifunctional medical testing instrument proposed in this invention; Figure 3 This is a three-dimensional structural diagram of a multifunctional medical testing instrument proposed in this invention; Figure 4 This is a top sectional view of a multifunctional medical testing instrument proposed in this invention; Figure 5 This is a three-dimensional structural diagram of the base plate in a multifunctional medical testing instrument proposed in this invention; Figure 6 This is a cross-sectional view of a multifunctional medical testing instrument proposed in this invention; Figure 7 This invention proposes a multifunctional medical testing instrument. Figure 6 A magnified schematic diagram of the structure at point A in the middle; Figure 8 This invention proposes a multifunctional medical testing instrument. Figure 6 A magnified schematic diagram of the structure at point B.

[0019] In the diagram: 1. Circular equipment frame; 2. Inlet to be tested; 3. Outlet; 4. Protective door; 5. Support chassis; 6. Casters; 7. Adjustable support rod; 8. Adjustable pedal; 9. Seat plate; 10. Support plate; 11. Back plate; 12. Control knob; 13. Support pedal; 14. Push handle; 15. Through port; 16. Connecting frame; 17. Medical chair; 18. Auxiliary wheels; 19. Conveyor frame; 20. Conveyor belt; 21. Observation glass plate; 22. Operating port; 23. Carrier plate workbench; 24. Main body of the testing instrument; 25. Door and exit; 26. Ventilation fan; 27. LED strip; 28. Ultraviolet germicidal lamp; 29. ​​Workbench; 30. Partition. Detailed Implementation

[0020] 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.

[0021] Example, refer to Figure 1-8A multifunctional medical testing instrument includes a ring-shaped frame 1. This frame has strong load-bearing capacity and good corrosion resistance, making it suitable for long-term use in various scenarios such as hospitals and health check centers. The ring-shaped frame 1 has an internal testing channel with an antibacterial coating on its inner wall to reduce bacterial adhesion and growth. The outer side of the ring-shaped frame 1 has a test inlet 2 and an outlet 3 connected to the testing channel, allowing for easy access for testing personnel. Multiple carrier workbenches 23 are fixedly connected inside the testing channel. Each carrier workbench 23 holds a testing instrument body 24. The surface of each carrier workbench 23 is covered with an anti-slip rubber pad to prevent the testing instrument body 24 from sliding. The testing instrument body 24 can be equipped with various functions, such as a blood routine analyzer, a blood pressure monitor, and a blood oxygen saturation monitor.

[0022] It should be noted that the testing instruments used are all commonly used in current physical examinations.

[0023] The testing channel is equipped with multiple movable testing chairs. These chairs are breathable and easy to clean and disinfect. The inner wall of the ring-shaped equipment frame 1 has an opening 15. Each testing chair is connected to a connecting frame 16, which passes through the opening 15 and extends into the inner circle of the ring-shaped equipment frame 1. Each connecting frame 16 is fixedly connected to a medical staff seat 17. This ensures the synchronous operation of the testing chairs and the medical staff seat 17, and avoids the space occupation and cross-interference caused by medical staff directly entering the testing channel. In this way, multiple tests can be completed sequentially during movement, effectively improving the continuity of the testing process.

[0024] In this embodiment of the invention, multiple observation glass plates 21 are embedded in both the inner and outer walls of the annular equipment frame 1. These observation glass plates 21 are made of high-transparency explosion-proof glass, allowing medical personnel to clearly observe the condition of the testing personnel and the operation of the testing instruments from both inside and outside. They also enable rapid assessment of the situation in case of emergencies, such as dizziness or nausea in the testing personnel, allowing for immediate emergency response. Multiple operating ports 22 are also provided on both the inner and outer walls of the annular equipment frame 1. The size of the operating ports 22 is suitable for an adult's arm to reach into, facilitating the operation of the testing instrument body 24 by medical personnel.

[0025] The testing chair includes a support chassis 5 with four evenly distributed casters 6 at its bottom. These casters are silent omnidirectional wheels to maintain quiet operation within the testing channel. Each caster 6 has an independent brake pedal; pressing the brake pedal locks the wheel, preventing the chair from sliding while stationary. An adjustable support rod 7, a hydraulic rod, is fixedly connected to the support chassis 5. A seat plate 9 is connected to the top of the adjustable support rod 7, which is equipped with an adjustment pedal 8. The adjustment pedal 8 is linked to the hydraulic system of the adjustable support rod 7, allowing the testing personnel to control the raising or lowering of the adjustable support rod 7 by pressing the adjustment pedal 8. A weighing sensor is fixed at the bottom of the seat plate 9. When the person being tested sits down, the weighing sensor is pressed and generates an electrical signal. After the signal is processed, it is automatically converted into weight data and displayed on the terminal screen for weight detection. The bottom of the medical chair 17 is also equipped with auxiliary wheels 18, which can support the medical chair 17. The auxiliary wheels 18 can move in a circular direction, making the medical chair 17 more stable and reliable to use.

[0026] Furthermore, a support plate 10 is hinged to one side of the seat plate 9 via a pin; a support pedal 13 is fixedly connected to the bottom of the support plate 10. The surface of the support pedal 13 has concave and convex textures to enhance the friction between the foot and the pedal, preventing the tester's feet from slipping; the support plate 10 and the support pedal 13 allow the tester to place their feet naturally during the test, avoiding leg numbness caused by dangling, suitable for long-term testing scenarios. A back plate 11 is hinged to the other side of the seat plate 9 via a pin, which can effectively distribute back pressure; two control knobs 12 are provided on the seat plate 9 for locking the support plate 10 and the back plate 11. The control knobs 12 are anti-slip knobs with vertical grooves on the surface, making them less prone to slipping when rotated. Rotating the knob clockwise gradually locks the support plate 10 or the back plate 11, while rotating it counterclockwise unlocks it, thus meeting the sitting posture requirements of different testing items. For example, electrocardiogram testing requires a semi-reclining posture to ensure that the electrode pads are in contact with the skin, while routine blood pressure testing requires a vertical sitting posture with the arms at the same height as the heart. A push handle 14 is fixedly connected to the back panel 11, which allows medical staff to easily move the testing chair manually.

[0027] In this embodiment of the invention, a conveyor frame 19 is fixedly installed inside the detection channel, and a conveyor belt 20 is installed on the conveyor frame 19. After the conveyor belt 20 runs, it can drive the detection chair to move. The conveyor belt 20 is driven by a motor, and the running speed can be flexibly adjusted, so that when the detection personnel pass through each carrier workbench 23, it can ensure that the medical staff have enough time to complete the detection operation, and the detection queue will not be congested due to the slow speed. At the same time, the conveyor belt 20 supports multiple detection chairs to run on it at the same time, realizing batch detection and effectively improving the detection efficiency per unit time.

[0028] The testing channel is equipped with a ventilation fan 26, a light strip 27, and an ultraviolet germicidal lamp 28, all fixedly connected inside. The ventilation fan 26 has a filter screen inside, which can filter dust, bacteria, and other particulate matter in the air, extracting and filtering the polluted air in the channel before expelling it, while simultaneously introducing filtered fresh air from the outside to reduce odor and bacterial concentration in the channel and maintain fresh air. The light strip 27 is evenly distributed along the top of the inner wall of the testing channel, providing sufficient light source. The ultraviolet germicidal lamp 28 is installed in the middle of the top of the testing channel and has a timer control module, which can automatically start sterilization after the test is completed, effectively killing any remaining bacteria and viruses in the channel, and automatically shutting off after sterilization. Both the testing inlet 2 and the outlet 3 are hinged with protective doors 4, which are equipped with observation windows for external personnel, such as accompanying family members and medical staff, to check the situation.

[0029] The inner and outer walls of the ring-shaped equipment frame 1 are hinged with multiple access doors 25. The access doors 25 can open and close flexibly inward or outward to avoid space conflicts with the medical staff seats 17 in the inner ring when opened. Their width can accommodate medical staff to carry test kits, maintenance tool kits and other items in and out without repeated carrying. The inner ring of the ring-shaped equipment frame 1 is equipped with worktables 29. Each worktable 29 is fixedly connected to a partition 30. The partition 30 can divide the internal space of the worktable 29 into upper and lower layers. The upper layer can store frequently used items such as test record forms and data registration books, which can be quickly accessed by medical staff without bending over, reducing the range of hand movements and time consumption. The lower layer can be used to store medical consumables such as disposable disinfectant wipes, medical gloves, and sampling swabs.

[0030] A method for using a multifunctional medical testing instrument includes the following steps: S1, Enter Testing personnel enter the testing channel through the entrance to be tested and sit on the testing chairs, while medical staff sit on the corresponding medical chairs; S2, Motion Detection The testing chair moves within the testing channel, and the testing is completed using the main body of the testing instrument during this process. S3, Leave After the inspection is complete, exit through the exit to leave.

[0031] The testing personnel first enter the testing channel through the testing entrance 2 on the outside of the ring-shaped equipment frame 1. After entering the channel, they select an empty testing chair and sit down. Before sitting down, they can adjust the chair's position by stepping on the adjustable pedal 8 to control the height of the adjustable support rod 7, adjusting the seat 9 to a comfortable height. Medical staff enter the inner ring through the exit door 25 on the ring-shaped equipment frame 1 and sit on the medical staff seat 17 corresponding to the testing chair. Subsequently, the medical staff observe the testing personnel through the observation glass plate 21. If any problems are found, they can promptly prompt the testing personnel to make adjustments and start the conveyor belt 19. The conveyor belt 20 can drive the testing chair to move slowly along the circular testing channel. During the movement, the medical chair 17 can move synchronously with the testing chair through the connecting frame 16. When the testing chair moves to the carrier workbench 23, it can be tested through the testing instrument body 24 placed on it. After completion, it can continue to move to the next carrier workbench 23 and use the different testing instrument bodies 24 placed on it to perform the test. When the testing chair moves to the vicinity of the exit 3, the testing personnel can push open the protective door 4 through the exit 3 to leave the testing channel, and the medical personnel can prepare for the next testing personnel.

[0032] When using this invention, medical personnel can enter the inner ring through the entrance / exit 25, which is hinged between the inner and outer walls of the ring-shaped equipment frame 1. They can then activate the ventilation fan 26, the light strip 27, and the main body 24 of the testing instrument on the carrier plate workbench 23 within the testing channel, and run the conveyor belt 20 on the conveyor frame 19. After that, they can activate the ultraviolet germicidal lamp 28 to sterilize the testing channel. Once sterilization is complete, they can turn off the ultraviolet germicidal lamp 28 and begin the testing process. The testing personnel can enter the testing channel through the entrance 2 to be tested and sit on the testing chair. At this time, they can step on the adjusting pedal 8 of the adjustable support rod 7 on the testing chair support base 5 to control the height of the adjustable support rod 7 and adjust the height of the seat plate 9 to fit the main body 24 of the testing instrument. Alternatively, they can loosen the control knob 12 on the seat plate 9 to adjust the tilt angle of the support plate 10 or the back plate 11. Simultaneously, the weighing sensor at the bottom of the seat plate 9 will generate a signal when pressed to detect weight data.

[0033] Medical staff can sit on a medical chair 17 connected to the testing chair via a connecting frame 16. The connecting frame 16 passes through an opening 15 in the inner wall of the annular equipment frame 1, allowing the medical chair 17 to move synchronously with the testing chair. The auxiliary wheels 18 at the bottom of the medical chair 17 can reduce movement resistance, making it easier for medical staff to observe the situation inside the testing channel through the observation glass 21 on the annular equipment frame 1. Subsequently, the conveyor belt 20 starts, which can drive the testing chair to move in a circle along the annular testing channel. During the movement of the testing chair, it can pass through the areas of each carrier workbench 23 in sequence. Medical staff can manually operate the main body 24 of the testing instrument through the operation port 22 on the annular equipment frame 1 to test the personnel. During this time, the ventilation fan 26 can refresh the air in the channel, and the light strip 27 can provide sufficient lighting to ensure that the testing operation is clearly visible. When the testing chair moves to the exit 3 area, the conveyor belt 20 stops, and the personnel can get up and push open the protective door 4 to leave from the exit 3.

[0034] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A multifunctional medical testing instrument, comprising a ring-shaped device frame (1), characterized in that, The inner side of the ring-shaped equipment frame (1) is provided with a detection channel. The outer side of the ring-shaped equipment frame (1) is provided with a test entrance (2) and an exit (3) that are connected to the detection channel. Multiple carrier worktables (23) are fixedly connected inside the detection channel. Multiple detection instrument bodies (24) are placed on each carrier worktable (23). Multiple movable detection chairs are provided inside the detection channel. A passage (15) is opened on the inner side wall of the ring-shaped equipment frame (1). A connecting frame (16) is fixedly connected to each detection chair. Each connecting frame (16) passes through the passage (15) and extends into the inner circle of the ring-shaped equipment frame (1). A medical chair (17) is fixedly connected to each connecting frame (16).

2. The multifunctional medical testing instrument according to claim 1, characterized in that, Multiple observation glass plates (21) are embedded in both the inner wall and the outer wall of the annular equipment frame (1) for observing the internal condition of the detection channel.

3. The multifunctional medical testing instrument according to claim 1, characterized in that, Multiple operating ports (22) are provided on both the inner wall and the outer wall of the ring-shaped equipment frame (1) for operating the main body of the detection instrument (24).

4. The multifunctional medical testing instrument according to claim 1, characterized in that, The testing chair includes a support chassis (5), an adjustable support rod (7) is fixedly connected to the support chassis (5), a seat plate (9) is provided on the top of the adjustable support rod (7), an adjusting pedal (8) is installed on the adjustable support rod (7), and multiple casters (6) are installed on the bottom surface of the support chassis (5).

5. A multifunctional medical testing instrument according to claim 4, characterized in that, The bottom of the seat plate (9) is equipped with a weighing sensor for detecting the weight of the person, and the bottom of the medical chair (17) is equipped with auxiliary wheels (18).

6. A multifunctional medical testing instrument according to claim 4, characterized in that, A support plate (10) is hinged to one side of the seat plate (9) by a pin. A support pedal (13) is fixedly connected to the bottom of the support plate (10). A back plate (11) is hinged to the other side of the seat plate (9) by a pin. Two control knobs (12) for locking the support plate (10) and the back plate (11) are provided on the seat plate (9). A push handle (14) is fixedly connected to the back plate (11).

7. A multifunctional medical testing instrument according to claim 1, characterized in that, The inside of the testing channel is equipped with a conveyor frame (19), and a conveyor belt (20) is installed on the conveyor frame (19). The testing chairs are all set on the conveyor belt (20).

8. A multifunctional medical testing instrument according to claim 1, characterized in that, The inside of the detection channel is fixedly connected to a ventilator (26), a light strip (27) and an ultraviolet germicidal lamp (28), and a protective door (4) is hinged in both the inlet (2) and outlet (3) to be tested.

9. A multifunctional medical testing instrument according to claim 1, characterized in that, Multiple door openings (25) are hinged to both the inner and outer walls of the ring-shaped equipment frame (1) for medical personnel to enter and exit. Multiple worktables (29) are placed in the inner ring of the ring-shaped equipment frame (1), and each worktable (29) has a partition (30) fixedly connected inside.

10. A method of using the multifunctional medical testing instrument as described in claim 1, characterized in that, Includes the following steps: S1, Enter Testing personnel enter the testing channel through the entrance to be tested and sit on the testing chairs, while medical staff sit on the corresponding medical chairs; S2, Motion Detection The testing chair moves within the testing channel, and the testing is completed using the main body of the testing instrument during this process. S3, Leave After the inspection is complete, exit through the exit to leave.