Rapid detection equipment for treating diabetic patient

By designing an automatically extending and retracting blood glucose testing tray structure and a dual-axis servo motor drive, the problems of easy damage and cross-infection of the equipment are solved, and the durability and hygienic safety of the equipment are achieved.

CN120732406AInactive Publication Date: 2025-10-03THE FIRST AFFILIATED HOSPITAL OF ZHENGZHOU UNIV
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Patent Information

Application Number
CN202510731567.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-03
Publication Date
2025-10-03
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing non-invasive blood glucose testing equipment is easily damaged by accidental collisions or external forces, and there is a risk of dust and dirt accumulation and cross-infection, and the cleanliness of the equipment is difficult to ensure.

Method used

A blood glucose testing tray structure that can automatically extend and retract is designed, combined with a dual-axis servo motor drive to achieve automatic protection and disinfection of the tray, and a disinfectant atomizing nozzle is used for all-round disinfection.

Benefits of technology

It improves the durability and sanitary safety of the equipment, prevents damage to the tray and cross infection, and ensures the cleanliness and detection accuracy of the equipment under high-frequency use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of medical equipment, and discloses a rapid detection device for treatment of diabetic patients, the rapid detection device comprises a rack, one side of the top of the rack is slidably connected with two moving plates, the outer side of one moving plate is fixedly connected with a connecting plate, the end of the connecting plate is fixedly connected with a rigid traction rope, and the rigid traction rope is fixedly connected with the other side of the rack. A mounting frame is fixedly connected to the inner side of the rack, two fixing rods are fixedly connected to the interior of the mounting frame, a movable plate is slidably connected to the exteriors of the fixing rods, and two hinge rods are hinged to the top of the movable plate. By innovatively designing a blood glucose detection tray structure capable of being automatically stored, the equipment is effectively protected in a non-use state, and the durability and reliability of the equipment are remarkably improved. After detection is completed, the equipment can automatically store the blood glucose detection tray into the rack, and the risk that the arm tray is damaged due to accidental collision or external force when the arm tray is idle is avoided through the design.
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Description

Technical Field

[0001] The present invention relates to the technical field of medical equipment, in particular to a rapid detection device for treating diabetic patients. Background Art

[0002] In the field of diabetes treatment, non-invasive blood glucose monitoring technology has made significant progress in recent years, providing patients with a more convenient and comfortable testing experience. However, existing technologies still have some urgent issues to be addressed and need further improvement to meet clinical needs.

[0003] Current non-invasive blood glucose testing devices typically require patients to place their arm on a testing platform for measurement. While this process avoids the pain and infection risks associated with traditional invasive testing, it also presents some shortcomings in actual use. For one thing, the testing platform is often exposed when not in use, making it susceptible to damage from accidental collisions or external forces, reducing the durability of the device. Furthermore, the exposed platform is prone to accumulating dust and dirt. If these foreign objects are not cleaned promptly, they may affect the contact between the test probe and the skin, thereby reducing the accuracy of the test results. Furthermore, since testing equipment may be shared by multiple patients, the sanitation of the testing platform becomes a significant concern. Most existing equipment relies on manual disinfection, which is not only cumbersome and prone to incomplete disinfection due to negligence, but also makes it difficult to ensure the cleanliness of the platform before each test in high-frequency use scenarios, posing a potential risk of cross-infection.

[0004] Therefore, those skilled in the art have proposed a rapid detection device for treating diabetic patients to solve the above problems. Summary of the Invention

[0005] In view of the deficiencies of the prior art, the present invention provides a rapid detection device for treating diabetic patients, which solves the problems raised in the above background technology.

[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: A rapid detection device for treating diabetic patients, comprising a frame, two movable plates slidably connected to one side of the top of the frame, one of the movable plates is fixedly connected to a connecting plate on the outside, and a rigid traction rope is fixedly connected to the end of the connecting plate, the inner side of the frame is fixedly connected to a mounting frame, the interior of the mounting frame is fixedly connected to two fixed rods, the outside of the fixed rods is slidably connected to a movable plate, the top of the movable plate is hinged to two hinged rods, the outside of the fixed rods is provided with a spring, the top of the hinged rod is hinged to a support plate, the top of the support plate is detachably connected to a blood glucose detection tray, and a display screen is installed on one side of the top of the frame.

[0007] The above technical solution, through the coordinated design of the frame, movable plate, connecting plate, rigid traction rope, mounting frame, fixed rod, movable plate, spring, hinged rod, support plate, and blood glucose testing tray, achieves the automatic extension and retraction function of the blood glucose testing tray. During testing, the relevant components work together to smoothly extend the tray. After the test, the tray automatically retracts into the frame, effectively protecting the tray from damage and contamination, improving the durability and reliability of the device. At the same time, the display can display test information, overall enhancing the convenience of blood glucose testing for diabetic patients and the practicality of the device.

[0008] Preferably, a dual-axis servo motor is fixedly installed on the top rear side of the frame, one of the output ends of the dual-axis servo motor is fixedly connected to a driving gear, and a fixed frame is fixedly connected to the top rear side of the frame. The upper and lower sides of the interior of the fixed frame are slidably connected to rack plates, and the outer side of the rack plate is fixedly connected to a connecting plate.

[0009] This technical solution provides the core power and precise transmission for the automated extension and retraction of the blood glucose testing tray. The rotational output of the dual-axis servo motor, through the meshing of the drive gear and rack plate, is converted into linear motion within the fixed frame. This motion is then applied to the moving plate via the connecting plate, driving the entire tray extension and retraction mechanism.

[0010] Preferably, the other output end of the dual-axis servo motor is fixedly connected to a driving turntable, a fixed block is fixedly connected to the external eccentricity of the driving turntable, the outer surface of the driving turntable is slidably connected to a movable frame, the outer side of the movable frame is fixedly connected to a movable rod, the outer side of the fixed frame is fixedly connected to a mounting cylinder, the interior of the mounting cylinder is slidably connected to a rubber piston, the outer side of the rubber piston is slidably connected to the movable rod, one side of the outer surface of the mounting cylinder is connected to connecting pipe 2 and connecting pipe 1, and the rear side of the frame is fixedly connected to a storage box.

[0011] Through this technical solution, a dual-axis servo motor drives the turntable and the eccentric fixed block, driving the movable frame in reciprocating motion. A movable rod connected to the movable frame transmits this motion to a rubber piston, causing it to slide back and forth within the mounting tube. The movement of the rubber piston creates negative and positive pressure within the mounting tube, sequentially drawing disinfectant from the storage tank through connecting tube one and dispensing it through connecting tube two, achieving automated disinfection of the blood glucose testing tray and ensuring the hygienic safety of the equipment.

[0012] Preferably, a movable groove is opened inside the movable frame, the fixed block is movably connected inside the movable groove, and the end of the movable rod away from the rubber piston passes through the outside of the mounting cylinder and is fixedly connected to the outside of the movable rod.

[0013] Through this technical solution, the movable groove inside the movable frame allows the fixed block to slide within it, converting the rotational motion of the drive turntable into linear reciprocating motion of the movable frame. The movable rod transmits this motion to the rubber piston, causing it to slide back and forth within the mounting cylinder, thereby driving the intake and discharge of disinfectant, ensuring the automation and efficiency of the disinfection process.

[0014] Preferably, one-way valves are installed inside the connecting pipe 1 and the connecting pipe 2, and the conducting directions of the two one-way valves are opposite.

[0015] Through the above technical solution, it is ensured that the disinfectant can only flow from the storage tank to the installation cylinder through the connecting pipe 1, and flow to the nozzle through the connecting pipe 2, effectively preventing the liquid from flowing back and ensuring the normal operation and disinfection effect of the disinfection system.

[0016] Preferably, a plurality of atomizing nozzles are provided on the outer surface of the connecting pipe 2, and one end of the connecting pipe 1 is connected to the outer side of the storage box.

[0017] Through the above technical solution, multiple atomizing nozzles are set on the outer surface of connecting tube 2, which can evenly spray the disinfectant onto the surface of the blood glucose testing tray to achieve all-round disinfection; one end of connecting tube 1 is connected to the outside of the storage box, ensuring that the disinfectant can flow smoothly from the storage box into connecting tube 1, providing a continuous supply of disinfectant for the disinfection operation.

[0018] Preferably, the outer sides of the two rack plates are meshedly connected with the outer side of the driving gear, and the bottom ends of the two connecting plates are respectively fixedly connected with the outer sides of the movable plates at corresponding positions.

[0019] Through the above technical solution, the rotational motion of the driving gear is transmitted to the movable plate through the rack plate and the connecting plate, realizing the linear motion of the movable plate, thereby driving the extension and retraction of the blood glucose testing tray, ensuring the smoothness and accuracy of the tray movement.

[0020] Preferably, one end of the spring is fixedly connected to the inner side of the mounting bracket, and the other end of the spring is fixedly connected to the outer side of the movable plate.

[0021] Through the above technical solution, the elastic force of the spring is used to enable the movable plate to automatically reset after being subjected to force, ensuring that the blood glucose testing tray is retracted into the rack, thereby realizing the automatic storage function of the tray.

[0022] Preferably, a fixed pulley is installed on one side of the frame, and one end of the rigid traction rope is fixedly connected to the outer side of the movable plate along the outer surface of the fixed pulley.

[0023] Through the above technical solution, the rigid traction rope is guided by the fixed pulley and connected to the movable plate to achieve force transmission and direction change, ensuring stable movement of the movable plate, thereby driving the blood glucose testing tray to extend or retract smoothly.

[0024] Preferably, the four through holes inside the support plate are all slidably connected with guide rods, and the upper and lower ends of the guide rods are fixedly connected to the inner side of the frame.

[0025] Through the above technical solution, the sliding connection between the guide rod and the internal through hole of the support plate provides a stable guide for the movement of the support plate and the blood glucose testing tray, ensuring that the tray remains stable and precise during the extension or retraction process, while enhancing the stability and reliability of the entire device.

[0026] The present invention provides a rapid detection device for treating diabetic patients. It has the following beneficial effects:

[0027] 1. This invention utilizes an innovative, automatically retractable blood glucose test tray structure to effectively protect the device when not in use, significantly improving its durability and reliability. After testing, the device automatically retracts the blood glucose test tray into the frame. This design not only eliminates the risk of damage to the arm tray from accidental collisions or external forces while idle, but also effectively prevents contamination of the tray surface by foreign matter such as dust and dirt, ensuring the device remains clean and stable upon next use.

[0028] 2. After each test, the device automatically initiates a disinfection process to eliminate any pathogens that may remain on the surface of the arm tray, effectively preventing the risk of cross-infection between patients due to sharing the device. This reduces the number of manual disinfection steps and ensures the hygienic reliability of the device in high-frequency use scenarios. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 A perspective view of the present invention;

[0030] Figure 2 This is a schematic structural diagram of the connecting plate of the present invention;

[0031] Figure 3 It is a schematic diagram of the structure of the movable plate of the present invention;

[0032] Figure 4 This is a schematic diagram of the support plate structure of the present invention;

[0033] Figure 5 for Figure 1 Enlarged view of point A in the middle;

[0034] Figure 6 for Figure 4 Enlarged view of point B in the middle;

[0035] Figure 7 This is a cross-sectional view of the installation tube of the present invention.

[0036] Among them, 1. frame; 2. display screen; 3. blood glucose testing tray; 401. dual-axis servo motor; 402. driving gear; 403. fixed frame; 404. rack plate; 405. connecting plate; 501. driving turntable; 502. movable frame; 503. fixed block; 504. movable rod; 505. mounting cylinder; 506. storage box; 507. connecting tube 1; 508. rubber piston; 509. connecting tube 2; 6. guide rod; 701. mounting frame; 702. articulated rod; 703. movable plate; 704. fixed rod; 705. spring; 706. rigid traction rope; 707. connecting plate; 708. movable plate; 709. support plate; 8. fixed pulley. DETAILED DESCRIPTION

[0037] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the present specification. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0038] Please see the attached Figure 1 -Attached Figure 7 An embodiment of the present invention provides a rapid testing device for treating diabetes patients, comprising a frame 1. Two movable plates 708 are slidably connected to one side of the top of the frame 1. A connecting plate 707 is fixedly connected to the outside of one of the movable plates 708. A rigid traction rope 706 is fixedly connected to the end of the connecting plate 707. A mounting frame 701 is fixedly connected to the inside of the frame 1. Two fixed rods 704 are fixedly connected to the inside of the mounting frame 701. A movable plate 703 is slidably connected to the outside of the fixed rods 704. The top of the movable plate 703 is hinged to two hinged rods 702. The fixed rods 704 are externally sleeved with springs 705. A support plate 709 is hinged to the top of the hinged rods 702. A blood glucose testing tray 3 is detachably connected to the top of the support plate 709. A display screen 2 is mounted on one side of the top of the frame 1. One end of the spring 705 is fixedly connected to the inside of the mounting frame 701, and the other end of the spring 705 is fixedly connected to the outside of the movable plate 703. A dual-axis servo motor 401 is fixedly mounted on the top rear side of the frame 1. One of the output terminals of the dual-axis servo motor 401 is fixedly connected to a drive gear 402. A fixed bracket 403 is fixedly connected to the top rear side of the frame 1. Rack plates 404 are slidably connected to the top and bottom sides of the fixed bracket 403. The outer sides of the rack plates 404 are fixedly connected to the outer sides of the drive gear 402. The bottom ends of the two connecting plates 405 are fixedly connected to the outer sides of the corresponding movable plates 708.

[0039] Specifically, the frame 1 serves as the main framework of the entire device, supporting and mounting the other components. This provides a stable infrastructure and ensures the relative positioning and movement accuracy of each component during operation. The connecting plate 707 and rigid traction rope 706 transmit motion and force. By stretching and loosening the traction rope, the movement of the movable plate 708 is transmitted to other components, thereby controlling the blood glucose testing tray 3. The bottom of the hinged rod 702 is hinged to the top of the movable plate 703, and the top is hinged to the support plate 709. The top of the support plate 709 is detachably connected to the blood glucose testing tray 3. This hinged and detachable connection allows the hinged rod 702 to drive the support plate 709 and the blood glucose testing tray 3 to move accordingly as the movable plate 703 moves up and down and swings back and forth, extending and retracting the tray. The detachable connection also facilitates replacement, cleaning, or maintenance of the blood glucose testing tray 3. The display screen 2 is used to display blood glucose test results and related device information, allowing medical staff or patients to intuitively view test data and device status.

[0040] When a blood glucose test is required, the dual-axis servo motor 401 receives a start signal and drives the drive gear 402 to rotate. The drive gear 402 engages with the rack plate 404, pushing the rack plate 404 to slide in the fixed frame 403, and then drives the two movable plates 708 away from each other through the connecting plate 405. The movement of one of the movable plates 708 pulls the movable plate 703 to slide downward along the fixed rod 704 through the connecting plate 707 and the rigid traction rope 706, causing the spring 705 to be stretched. The movement of the movable plate 703 drives the support plate 709 to move downward along the guide rod 6 through the hinged rod 702, and finally completely moves the blood glucose test tray 3 out of the frame 1, into a horizontal and stable state, ready for the patient to place his arm for blood glucose testing. This process realizes the automatic extension of the tray, which is simple and quick to operate. There is no need to manually adjust the position of the tray, which improves the efficiency and convenience of the test.

[0041] After the test is completed, the dual-axis servo motor 401 reverses, and the drive gear 402 drives the rack plate 404 to move in the opposite direction, so that the two movable plates 708 approach each other, and the tension of the rigid traction rope 706 is reduced. Under the elastic force of the spring 705, the movable plate 703 slides upward along the fixed rod 704 to reset, and drives the support plate 709 and the blood glucose testing tray 3 to be synchronously retracted into the interior of the frame 1 through the hinge rod 702. This automatic storage design can effectively protect the blood glucose testing tray 3 from damage by external factors when not in use, such as avoiding deformation and cracks of the tray caused by accidental collisions, and preventing foreign matter such as dust and dirt from adhering to the surface of the tray, thereby ensuring that the equipment can maintain good working condition and detection performance when it is used next time. It also facilitates unified management and maintenance of the equipment, reducing equipment maintenance costs and workload.

[0042] The other output end of the dual-axis servo motor 401 is fixedly connected to a drive turntable 501. A fixed block 503 is fixedly connected to the outer eccentric portion of the drive turntable 501. A movable frame 502 is slidably connected to the outer surface of the drive turntable 501. A movable rod 504 is fixedly connected to the outer side of the movable frame 502. A mounting cylinder 505 is fixedly connected to the outer side of the fixed frame 403. A rubber piston 508 is slidably connected to the interior of the mounting cylinder 505. The outer side of the rubber piston 508 is slidably connected to the movable rod 504. One side of the outer surface of the mounting cylinder 505 is connected to a second connecting pipe 509 and a first connecting pipe 507. A storage box 506 is fixedly connected to the rear side of the frame 1. A movable slot is defined within the movable frame 502. The fixed block 503 is movably connected within the movable slot. The end of the movable rod 504, away from the rubber piston 508, passes through the outer side of the mounting cylinder 505 and is fixedly connected to the outer side of the movable rod 504.

[0043] Specifically, the movable frame 502 has a movable groove inside to accommodate and allow the fixed block 503 to slide within it, thereby converting the rotational motion of the drive turntable 501 into its own back-and-forth linear motion. The mounting cylinder 505 provides a sealed space for the reciprocating motion of the rubber piston 508, thereby creating pressure changes that allow the disinfectant to be drawn in and out. Furthermore, the outer surface of the mounting cylinder 505 connects to the connecting pipe 2 509 and the connecting pipe 1 507, serving as a channel for the disinfectant to enter and exit. The storage tank 506 is used to store the disinfectant, providing sufficient disinfectant for the disinfection process.

[0044] The other output end of the dual-axis servo motor 401 drives the turntable 501 to rotate. The fixed block 503 rotates with the drive turntable 501 and slides within the movable groove of the movable frame 502, pushing the movable frame 502 back and forth. The movable rod 504 connected to the movable frame 502 then reciprocates, driving the rubber piston 508 to slide back and forth within the mounting tube 505. When the rubber piston 508 moves toward the interior of the mounting tube 505, a negative pressure is generated inside the mounting tube 505. The one-way valve opens under the pressure differential, and the disinfectant in the storage tank 506 is drawn into the mounting tube 505 through the connecting tube 1 507. When the rubber piston 508 moves in the opposite direction, the pressure inside the mounting tube 505 increases. The disinfectant is evenly sprayed onto the surface of the blood glucose testing tray 3 through the connecting tube 2 509 and multiple external atomizing nozzles, achieving automated, comprehensive disinfection, effectively killing residual pathogens, preventing cross-infection, and ensuring the hygienic safety of the device for the next use. The entire process requires no human intervention and is efficient and convenient.

[0045] One-way valves are installed inside both the first and second connecting pipes 507 and 509, with the two one-way valves opening in opposite directions. A plurality of atomizing nozzles are provided on the outer surface of the second connecting pipe 509, and one end of the first connecting pipe 507 is connected to the outer side of the storage box 506.

[0046] Specifically, the atomizing nozzle can evenly spray the disinfectant on the surface of the blood glucose testing tray 3 to achieve all-round disinfection, effectively kill residual pathogens, and prevent cross infection.

[0047] A fixed pulley 8 is installed on one side of the frame 1 , and one end of the rigid traction rope 706 is fixedly connected to the outer side of the movable plate 703 along the outer surface of the fixed pulley 8 .

[0048] The four through holes inside the support plate 709 are all slidably connected to the guide rods 6 , and the upper and lower ends of the guide rods 6 are fixedly connected to the inner side of the frame 1 .

[0049] Specifically, the support plate 709 moves up and down along the outer surface of the guide rod 6 , thereby ensuring the stability of the support plate 709 during the movement.

[0050] The testing system uses spectral analysis technology to precisely align the test probe, located on the blood glucose testing tray 3, with the patient's skin. Blood glucose information collected by the probe is processed and transmitted to the display screen 2, where it is presented as a numerical value or graph for medical staff or patients to view.

[0051] Working principle: When the patient needs to perform blood glucose testing, the dual-axis servo motor 401 receives a start signal and drives the drive gear 402 to rotate. The drive gear 402 engages with the two rack plates 404, driving the rack plates 404 to slide inside the fixed frame 403, thereby driving the connecting plate 405 to move. Since the connecting plate 405 is connected to the movable plate 708, the two movable plates 708 move away from each other under the push of the rack plate 404. One of the movable plates 708 is connected to the connecting plate 707 and the rigid traction rope 706. The movement of the movable plate 708 drives the rigid traction rope 706, further pulling the movable plate 703 to slide downward along the fixed rod 704, causing the spring 705 to be stretched. The movement of the movable plate 703 drives the support plate 709 to move downward along the guide rod 6 through the hinged rod 702, and finally completely moves the blood glucose testing tray 3 out of the frame 1, presenting a horizontal and stable state, which is convenient for the patient to place his arm for blood glucose testing.

[0052] The patient places their arm on the blood glucose testing tray 3, which is extended from the frame 1. The testing system activates. Using non-invasive spectral analysis technology, the system quickly and accurately measures the patient's blood glucose level. During the measurement process, relevant data is transmitted in real time to the device's internal processing system. After analyzing the data, the processing system clearly displays the patient's blood glucose level and related test information on the display screen 2, allowing medical staff and the patient to promptly review their blood glucose status.

[0053] After the test is completed, the dual-axis servo motor 401 reverses, driving the gear 402 to move the rack plate 404 in the opposite direction, bringing the two movable plates 708 closer together. At this time, the tension of the rigid traction rope 706 decreases, and under the elastic force of the spring 705, the movable plate 703 slides upward along the fixed rod 704 to reset. The hinged rod 702 then drives the support plate 709 and the blood glucose testing tray 3 to retract into the interior of the frame 1, achieving automatic storage of the trays and effectively protecting them from external collisions and contamination.

[0054] At the same time, the device automatically initiates the disinfection process. The other output of the dual-axis servo motor 401 drives the turntable 501 to rotate. The fixed block 503 rotates with the drive turntable 501 and slides within the movable groove of the movable frame 502, pushing the movable frame 502 back and forth. The movable rod 504 connected to the movable frame 502 then reciprocates, driving the rubber piston 508 to slide back and forth within the mounting tube 505. When the rubber piston 508 moves toward the interior of the mounting tube 505, a negative pressure is generated within the mounting tube 505. The one-way valve opens under the pressure differential, and the disinfectant in the storage tank 506 is drawn into the mounting tube 505 through the connecting tube 1 507. When the rubber piston 508 moves in the opposite direction, the pressure within the mounting tube 505 increases. The disinfectant is then evenly sprayed onto the surface of the blood glucose testing tray 3 through the connecting tube 2 509 and multiple external atomizing nozzles. This achieves an automated, comprehensive disinfection process, effectively killing residual pathogens, preventing cross-infection, and ensuring the hygienic safety of the device for the next use. The entire process requires no human intervention and is efficient and convenient.

[0055] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A rapid detection device for treating diabetic patients, comprising a frame (1), characterized in that: Two movable plates (708) are slidably connected to one side of the top of the frame (1), wherein the outer side of one of the movable plates (708) is fixedly connected to a connecting plate (707), and the end of the connecting plate (707) is fixedly connected to a rigid traction rope (706). The inner side of the frame (1) is fixedly connected to a mounting frame (701), and the interior of the mounting frame (701) is fixedly connected to two fixed rods (704), and the exterior of the fixed rods (704) is slidably connected to a movable plate (703). The top of the movable plate (703) is hinged to two hinged rods (702), and the exterior of the fixed rods (704) is provided with a spring (705). The top of the hinged rod (702) is hinged to a support plate (709), and the top of the support plate (709) is detachably connected to a blood glucose detection tray (3). A display screen (2) is installed on one side of the top of the frame (1).

2. A rapid detection device for treating diabetes according to claim 1, characterized in that: A dual-axis servo motor (401) is fixedly mounted on the top rear side of the frame (1), one output end of the dual-axis servo motor (401) is fixedly connected to a driving gear (402), a fixed frame (403) is fixedly connected to the top rear side of the frame (1), a rack plate (404) is slidably connected to both the upper and lower sides of the interior of the fixed frame (403), and a connecting plate (405) is fixedly connected to the outer side of the rack plate (404).

3. A rapid detection device for treating diabetes according to claim 2, characterized in that: The other output end of the dual-axis servo motor (401) is fixedly connected to a driving turntable (501), an external eccentric portion of the driving turntable (501) is fixedly connected to a fixed block (503), an outer surface of the driving turntable (501) is slidably connected to a movable frame (502), an outer side of the movable frame (502) is fixedly connected to a movable rod (504), an outer side of the fixed frame (403) is fixedly connected to a mounting cylinder (505), an interior of the mounting cylinder (505) is slidably connected to a rubber piston (508), an outer side of the rubber piston (508) is slidably connected to the movable rod (504), an outer side of the outer surface of the mounting cylinder (505) is connected to a second connecting pipe (509) and a first connecting pipe (507), and a storage box (506) is fixedly connected to the rear side of the frame (1).

4. A rapid detection device for treating diabetes according to claim 3, characterized in that: A movable groove is provided inside the movable frame (502), and the fixed block (503) is movably connected inside the movable groove. The end of the movable rod (504) away from the rubber piston (508) passes through the outside of the mounting tube (505) and is fixedly connected to the outside of the movable rod (504).

5. A rapid detection device for treating diabetes according to claim 3, characterized in that: One-way valves are installed inside the connecting pipe 1 (507) and the connecting pipe 2 (509), and the conduction directions of the two one-way valves are opposite.

6. A rapid detection device for treating diabetes according to claim 3, characterized in that: The outer surface of the second connecting pipe (509) is provided with a plurality of atomizing nozzles, and one end of the first connecting pipe (507) is connected to the outer side of the storage box (506).

7. A rapid detection device for treating diabetes according to claim 2, characterized in that: The outer sides of the two rack plates (404) are meshedly connected with the outer side of the driving gear (402), and the bottom ends of the two connecting plates (405) are fixedly connected with the outer sides of the movable plates (708) at corresponding positions.

8. A rapid testing device for treating diabetes according to claim 1, characterized in that: One end of the spring (705) is fixedly connected to the inner side of the mounting frame (701), and the other end of the spring (705) is fixedly connected to the outer side of the movable plate (703).

9. A rapid testing device for treating diabetes according to claim 1, characterized in that: A fixed pulley (8) is installed on one side of the frame (1), and one end of the rigid traction rope (706) is fixedly connected to the outer side of the movable plate (703) along the outer surface of the fixed pulley (8).

10. A rapid testing device for treating diabetes according to claim 1, characterized in that: The four through holes inside the support plate (709) are all slidably connected to guide rods (6), and the upper and lower ends of the guide rods (6) are fixedly connected to the inner side of the frame (1).