Auxiliary device for automatic detection of diabetes
By designing an automated auxiliary device for diabetes detection, the problem of low detection efficiency and accuracy in the prior art is solved, efficient and accurate blood sugar detection is achieved, and the work intensity and number of medical staff are reduced.
Patent Information
- Application Number
- CN202510593355.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-09
- Publication Date
- 2025-06-06
AI Technical Summary
The existing diabetes detection technology requires manual operation, resulting in low detection efficiency and accuracy, and requires assistance from multiple medical staff, increasing work intensity and personnel needs.
Design an auxiliary device for automated diabetes detection, including a detection box, an auxiliary mechanism, a propulsion mechanism and a pick-up mechanism. The auxiliary mechanism realizes finger pretreatment and blood reception through the drive assembly, transmission assembly, pretreatment assembly and feed assembly. The propulsion mechanism realizes test strip insertion and detection through the push and pull assembly and the rotating assembly, and the pick-up and placement mechanism facilitates the loading and unloading of the instrument.
It improves the efficiency and accuracy of blood sugar testing in diabetic patients, reduces the work intensity and number of medical staff, and is suitable for batches of patients in sequence.
Smart Images

Figure CN120093452A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of auxiliary detection of diabetes, and in particular to an auxiliary device for automated detection of diabetes. Background Art
[0002] Diabetes is a chronic disease characterized by high blood sugar, which is caused by absolute or relative insufficient secretion of insulin and impaired utilization. The cause is mainly attributed to the combined effects of genetic and environmental factors, including decreased insulin secretion caused by islet cell dysfunction, or the body's insensitivity to insulin, or both, which prevents glucose in the blood from being effectively utilized and stored. Blood sugar is usually measured with a blood glucose meter. However, the test in the prior art requires manual cleaning of the puncture site, and then puncture and drip blood onto the test paper. This process requires advance preparation, and the entire operation process needs to be completed by oneself or with the assistance of medical staff. Self-operation may lead to inaccurate subsequent tests due to improper operation. At the same time, it is not conducive to the medical staff to control the patient's hands during the auxiliary operation. At the same time, when there are many patients, multiple medical staff are required to cooperate in the auxiliary detection operation, which affects the efficiency and accuracy of the detection. Summary of the invention
[0003] The purpose of the present invention is to provide an auxiliary device for automated detection of diabetes, which has the advantages of high detection efficiency and the ability to improve detection accuracy. During the process, only the finger needs to be inserted and the process is performed step by step in a progressive manner, and the medical staff only needs to take and put the material. It is easy to use and reduces the workload of the medical staff and the number of medical staff, so as to solve the problems raised in the above-mentioned background technology.
[0004] To achieve the above-mentioned object, the present invention provides the following technical solutions: an auxiliary device for automated detection of diabetes, comprising a detection box; The interior of the detection box is provided with an auxiliary mechanism for assisting finger pretreatment, the top of the detection box is provided with a finger locking mechanism for locking the finger, the top of the detection box is provided with a limit mechanism for blocking the insertion of the finger, one end of the detection box is provided with a blood sugar detection mechanism for blood sugar determination, the surface of the detection box is provided with a propulsion mechanism for detection and pushing, and the outside of the detection box is provided with a pick-up and placement mechanism for assisting loading and unloading; The auxiliary mechanism includes a driving assembly, a transmission assembly, a pre-processing assembly and a feeding assembly, wherein the driving assembly is arranged at one end of the detection box, the transmission assembly is arranged inside the detection box, the transmission assembly is arranged inside the detection box, the pre-processing assembly is arranged outside the transmission assembly, and the feeding assembly is arranged outside the transmission assembly; The propulsion mechanism includes a push-pull assembly and a rotating assembly, wherein the push-pull assembly is arranged on the surface of the detection box, and the rotating assembly is arranged inside the detection box; The finger is pre-treated and receives blood through the auxiliary mechanism, and a thrust is applied to the auxiliary mechanism to approach the blood glucose detection mechanism through the propulsion mechanism, and a rapid blood glucose detection operation is completed based on the inserted test strip.
[0005] Exemplarily, the driving assembly includes a micro motor, the micro motor is located at one end of the detection box, and the output shaft of the micro motor is keyed to the first bevel gear.
[0006] Exemplarily, the transmission assembly includes a second bevel gear, which is meshingly connected to the top of the first bevel gear, and a shaft is fixedly mounted on one end of the second bevel gear, and the shaft is rotatably connected to the detection box.
[0007] Exemplarily, the pretreatment component includes a first mounting frame and a second mounting frame, the first mounting frame is fixedly mounted on one end of the shaft surface, the second mounting frame is fixedly mounted on the middle of the shaft surface, a first mounting seat is fixedly mounted on the outer side of the first mounting frame, a loading seat is inserted into the interior of the first mounting seat, a second mounting seat is fixedly mounted on the outer side of the second mounting frame, and a needle is inserted into the interior of the second mounting seat.
[0008] Exemplarily, the feeding assembly includes a third mounting frame, the third mounting frame is slidably connected to the other end of the shaft surface, a third mounting seat is fixedly mounted on the outer side of the third mounting frame, and a test paper body is inserted into one side of the third mounting seat; A first limit seat is also fixedly installed on the other end of the shaft rod surface, a second limit seat is fixedly installed on one side of the first limit seat, a sliding bar is fixedly installed on one end of the shaft rod surface, the second limit seat is located on the outside of the shaft rod and the sliding bar and slides, a second spring is arranged between the first limit seat and the second limit seat, a side plate is fixedly installed on one end of the sliding bar, and a shielding cover is fixedly installed on one end of the detection box.
[0009] Exemplarily, the push-pull assembly includes a mounting box, which is fixedly mounted on the surface of the detection box, an electric push rod is fixedly mounted on the bottom of the inner cavity of the mounting box, a rack is fixedly mounted on the output end of the electric push rod, a connecting strip is fixedly mounted on the outer side of the rack, a connecting seat is slidably connected to the outer side of the connecting strip, and the connecting seat is fixed to the bottom of the inner cavity of the detection box.
[0010] Exemplarily, the rotating assembly includes a transmission gear meshingly connected to the top of the rack, a rotating rod is fixedly mounted on one end of the transmission gear, a pushing block is fixedly mounted on the outer side of the rotating rod, and the rotating rod is rotationally connected to the detection box.
[0011] Exemplarily, the finger locking mechanism includes a micro air pump body, which is fixedly mounted on the top of a detection box, the exhaust end of the micro air pump body is connected to a connecting pipe, the exhaust end of the connecting pipe is connected to an air bag ring, the other end of the detection box is bolted to a sealing plate, a hole is provided on the top of the surface of the sealing plate, the air bag ring is located on the inner wall of the hole, a top cover is fixedly mounted on the top of the detection box, and a protective cover is fixedly mounted on the top of the top cover.
[0012] Exemplarily, the limiting mechanism includes a connecting frame, which is fixedly mounted on the top of the detection box, a first spring is fixedly mounted on the top of the detection box, a circular plate is fixedly mounted on the top of the first spring, a connecting rod is fixedly mounted on the inner wall of the circular plate, a pressure plate is fixedly mounted on the top of the connecting rod, a limiting plate is fixedly mounted on the bottom end of the connecting rod, and the connecting rod is located inside the first spring.
[0013] Exemplarily, the blood sugar testing mechanism includes a mounting block, the mounting block is bolted to one end of the testing box, and a blood sugar tester body is fixedly mounted on one end of the mounting block; The fetching and placing mechanism comprises a material fetching port, which is opened on the back of the detection box, a material discharge port is opened on the surface of the detection box, and a base is fixedly installed on the bottom of the detection box.
[0014] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention can effectively improve the efficiency and accuracy of auxiliary blood glucose testing for diabetic patients and improve the efficiency of the testing process through the coordinated arrangement of the auxiliary mechanism and the propulsion mechanism. It can also be applicable to the sequential operation of batches of patients. The pretreatment component in the auxiliary mechanism can be used to clean and pierce the fingertips, and the blood can be received by the feeding component. The pushing of the feeding component by the propulsion mechanism can realize the insertion of the test paper into the interior of the blood glucose tester body to complete the testing work. After the testing is completed, the rotation and replacement operation can be completed according to the driving component and the transmission component, so as to facilitate the auxiliary testing of the next patient.
[0015] 2. The present invention can be used to limit and lock the patient's fingers during blood sugar testing through the coordinated arrangement of the finger locking mechanism and the limiting mechanism to avoid position deviation and ensure the accuracy of subsequent testing. The finger locking mechanism can be used to lock the fingers in a circumferential manner, and the limiting mechanism can be used to block the fingertips to avoid excessive extension depth, so that the fingertips can be located at a preset position.
[0016] 3. The present invention utilizes the coordinated arrangement of a blood glucose detection mechanism and a pick-and-place mechanism to realize blood glucose detection operations for diabetic patients. At the same time, it is also convenient to take and place medical instruments required for pretreatment. It is not only simple and convenient to operate, but also easy to replace to avoid cross infection, ensuring that the instruments used by each patient are brand new. The pick-and-place mechanism can be used to directly place unused instruments and take out used instruments, and the blood glucose detection mechanism can directly perform detection work after the test strip is inserted.
[0017] Other features and advantages of the present invention will be described in the following description, and partly become obvious from the description, or be understood by implementing the present invention. The purpose and other advantages of the present invention can be realized and obtained by the structures pointed out in the description and the drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the structure of the present invention; Figure 2 This is a schematic diagram of the structure of the micro air pump body of the present invention; Figure 3 It is a schematic diagram of the internal structure of the detection box of the present invention; Figure 4 It is a schematic diagram of the internal structure of the shielding cover of the present invention; Figure 5 is a schematic diagram of the second spring structure of the present invention; Figure 6 This is a schematic diagram of the electric push rod structure of the present invention; Figure 7 This is a schematic diagram of the structure of the push block of the present invention; Figure 8 This is a schematic diagram of the material taking port structure of the present invention; Fig. 9 It is a schematic diagram of the discharge port structure of the present invention.
[0019] In the figure: 1, detection box; 2, finger locking mechanism; 21, micro air pump body; 22, top cover; 23, protective cover; 24, connecting pipe; 25, air bag ring; 26, sealing plate; 27, jack; 3, limiting mechanism; 31, connecting frame; 32, first spring; 33, circular plate; 34, connecting rod; 35, pressing plate; 36, limiting plate; 4, blood glucose detection mechanism; 41, mounting block; 42, blood glucose detector body; 5, auxiliary mechanism; 51, micro motor; 52, first bevel gear; 53, second bevel gear; 54, shaft; 55, first mounting frame; 56, first mounting seat; 57, Loading seat; 58, second mounting frame; 59, second mounting seat; 510, needle; 511, third mounting frame; 512, third mounting seat; 513, test paper body; 514, first limit seat; 515, second limit seat; 516, second spring; 517, slide bar; 518, side plate; 519, shielding cover; 6, propulsion mechanism; 61, mounting box; 62, electric push rod; 63, rack; 64, connecting seat; 65, connecting bar; 66, transmission gear; 67, rotating rod; 68, pushing block; 7, picking and placing mechanism; 71, material taking port; 72, material discharge port; 73, base. DETAILED DESCRIPTION
[0020] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. 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 creative work are within the scope of protection of the present invention.
[0021] The present invention provides an auxiliary device for automated detection of diabetes, comprising a detection box 1; An auxiliary mechanism 5 for assisting finger pretreatment is arranged inside the detection box 1, a finger locking mechanism 2 for locking the finger is arranged on the top of the detection box 1, a limiting mechanism 3 for blocking the insertion of the finger is arranged on the top of the detection box 1, a blood sugar detection mechanism 4 for blood sugar determination is arranged at one end of the detection box 1, a propulsion mechanism 6 for detection and pushing is arranged on the surface of the detection box 1, and a pick-up and placement mechanism 7 for assisting loading and unloading is arranged on the outside of the detection box 1; The auxiliary mechanism 5 includes a driving assembly, a transmission assembly, a pre-treatment assembly and a feeding assembly. The driving assembly is arranged at one end of the detection box 1, the transmission assembly is arranged inside the detection box 1, the pre-treatment assembly is arranged outside the transmission assembly, and the feeding assembly is arranged outside the transmission assembly. Through the cooperation among the driving assembly, transmission assembly, pretreatment assembly and feeding assembly, the fingertips of patients can be cleaned, acupunctured and blood work can be performed. At the same time, the used instruments can be replaced to the back for removal by rotation, and the unused instruments placed on the surface can be rotated to the position where they need to be processed, so as to improve the efficiency of detection.
[0022] The propulsion mechanism 6 includes a push-pull assembly and a rotating assembly, wherein the push-pull assembly is arranged on the surface of the detection box 1, and the rotating assembly is arranged inside the detection box 1; The pushing operation during the detection process is realized by the push-pull component and the rotating component, so as to complete the detection operation.
[0023] The finger is pre-treated and receives blood through the auxiliary mechanism 5, and a thrust is applied to the auxiliary mechanism 5 through the propulsion mechanism 6 to move it close to the blood sugar detection mechanism 4, and a rapid blood sugar detection operation is completed according to the inserted test paper.
[0024] Preferred; like Figure 4 As shown, the driving assembly includes a micro motor 51, which is located at one end of the detection box 1. The output shaft of the micro motor 51 is keyed to a first bevel gear 52, which mainly serves to output power when rotating and replacing the tool.
[0025] In addition, the model of the micro motor 51 is AC 244PT 37 W, and NEMA6, NEMA8 and NEMA17 may also be used, including the above models but not limited to the above models.
[0026] like Figure 4 As shown, the transmission assembly includes a second bevel gear 53, which is meshed and connected to the top of the first bevel gear 52. A shaft 54 is fixedly installed at one end of the second bevel gear 53. The shaft 54 is rotatably connected to the detection box 1 to realize the transmission of the rotational force. Moreover, based on the mutual meshing of the second bevel gear 53 and the first bevel gear 52, the axial direction of the rotational force can be changed while ensuring the rotational force, thereby changing the vertical rotational force into a lateral rotational force.
[0027] like Figure 5 As shown, the pretreatment component includes a first mounting frame 55 and a second mounting frame 58. The first mounting frame 55 is fixedly mounted on one end of the surface of the shaft rod 54, and the second mounting frame 58 is fixedly mounted on the middle part of the surface of the shaft rod 54. A first mounting seat 56 is fixedly mounted on the outer side of the first mounting frame 55, and a loading seat 57 is inserted into the interior of the first mounting seat 56. A second mounting seat 59 is fixedly mounted on the outer side of the second mounting frame 58, and a needle 510 is inserted into the interior of the second mounting seat 59, which can perform pretreatment on the fingertips of diabetic patients.
[0028] Based on the above, the first mounting frame 55 and the first mounting seat 56 can support the loading seat 57, and disinfectant alcohol cotton and other clean medical tools can be placed inside the loading seat 57; The second mounting frame 58 and the second mounting seat 59 are conducive to supporting and placing the needle 510, and the needle 510 is conducive to pricking the fingertip after cleaning to cause bleeding for subsequent detection operations.
[0029] like Figure 5 As shown, the feeding assembly includes a third mounting frame 511, which is slidably connected to the other end of the surface of the shaft 54, and a third mounting seat 512 is fixedly installed on the outer side of the third mounting frame 511. A test strip body 513 is inserted into one side of the third mounting seat 512, which facilitates the removal and placement of the test strip body 513. The test strip body 513 is driven to be inserted into the socket of the blood glucose detector body 42 after receiving blood to complete the blood glucose test operation; A first limit seat 514 is also fixedly installed on the other end of the surface of the shaft rod 54, and a second limit seat 515 is fixedly installed on one side of the first limit seat 514. A slide bar 517 is fixedly installed on one end of the surface of the shaft rod 54. The second limit seat 515 is located on the outside of the shaft rod 54 and the slide bar 517 and slides. A second spring 516 is arranged between the first limit seat 514 and the second limit seat 515. A side plate 518 is fixedly installed on one end of the slide bar 517. A shielding cover 519 is fixedly installed on one end of the detection box 1, which can realize sliding elastic pushing operation, can perform insertion detection when being pushed for detection, and can realize elastic reset after detection.
[0030] It is worth explaining; like Figure 6 As shown, the push-pull assembly includes a mounting box 61, which is fixedly mounted on the surface of the detection box 1, an electric push rod 62 is fixedly mounted on the bottom of the inner cavity of the mounting box 61, a rack 63 is fixedly mounted on the output end of the electric push rod 62, a connecting strip 65 is fixedly mounted on the outer side of the rack 63, a connecting seat 64 is slidably connected to the outer side of the connecting strip 65, and the connecting seat 64 is fixed to the bottom of the inner cavity of the detection box 1, realizing the output work during rotational pushing, so that the rotating assembly can complete the rotational pushing operation by meshing.
[0031] The model used by the electric push rod 62 is IMD3-24-30-50-IP65-p. The specific required stroke can be customized according to the actual situation. In addition, it is a high-tech product that integrates a small motor, planetary reducer, screw mechanism, sensor, and drive and control system. It not only has high-precision servo control performance, but also can maintain position information after power failure, simplify the operation process, and improve the convenience of use; By converting the rotary motion of the motor into the linear reciprocating motion of the push rod, remote control, centralized control or automatic control can be achieved. Its working principle involves the motor's rotary motion amplifying the torque and reducing the speed through the reduction gearbox, and then converting the rotary motion into linear motion through the lead screw and nut. like Figure 7 As shown, the rotating assembly includes a transmission gear 66, which is meshed and connected to the top of the rack 63. A rotating rod 67 is fixedly installed at one end of the transmission gear 66, and a pushing block 68 is fixedly installed on the outer side of the rotating rod 67. The rotating rod 67 is rotatably connected to the detection box 1, and can directly contact and push the third mounting frame 511 according to the rotation method until it slides and shifts.
[0032] further; like Figure 2 As shown, the finger locking mechanism 2 includes a micro air pump body 21, which is fixedly mounted on the top of the detection box 1. The exhaust end of the micro air pump body 21 is connected to a connecting pipe 24, and the exhaust end of the connecting pipe 24 is connected to an airbag ring 25. The other end of the detection box 1 is bolted with a sealing plate 26, and a socket 27 is provided on the top of the surface of the sealing plate 26. The airbag ring 25 is located on the inner wall of the socket 27. A top cover 22 is fixedly mounted on the top of the detection box 1, and a protective cover 23 is fixedly mounted on the top of the top cover 22.
[0033] It is convenient to insert the patient's finger into the detection box 1, and to pre-process the position of the patient's finger pulp and lock and limit the finger during the detection operation, so as to ensure that the finger is in the required position.
[0034] Among them, the micro air pump body 21 is a gas delivery device with a small size and a gaseous working medium, which is mainly used for gas sampling, gas circulation, vacuum adsorption, vacuum pressure maintenance, air extraction, inflation, pressurization and other purposes. It adopts the VBY2106 model, including but not limited to the micro air pump body 21 of this model.
[0035] Going a step further; like Figure 3 As shown, the limiting mechanism 3 includes a connecting frame 31, which is fixedly installed on the top of the detection box 1. A first spring 32 is fixedly installed on the top of the detection box 1, a circular plate 33 is fixedly installed on the top of the first spring 32, a connecting rod 34 is fixedly installed on the inner wall of the circular plate 33, a pressing plate 35 is fixedly installed on the top of the connecting rod 34, and a limiting plate 36 is fixedly installed on the bottom of the connecting rod 34. The connecting rod 34 is located inside the first spring 32, which can assist the above-mentioned finger locking mechanism 2 to limit the fingertips of the patient, so as to avoid excessive extension of the fingers when the fingers are extended and unable to perform step-by-step cleaning, acupuncture and blood drop detection operations, and can improve the accuracy of the fingers being in the required position during actual operation to meet people's actual needs.
[0036] in; like Figure 3 As shown, the blood glucose detection mechanism 4 includes a mounting block 41, the mounting block 41 is bolted to one end of the detection box 1, and a blood glucose detector body 42 is fixedly mounted on one end of the mounting block 41, and the blood glucose detector body 42 can be directly mounted, and the blood glucose detector body 42 is divided into a detection end and a display end, the detection end is through-type arranged at one end of the detection box 1, and the display end is located at the end of the mounting block 41 away from the detection box 1, which can be known from the accompanying drawings; at last; like Figure 8 As shown, the taking and placing mechanism 7 includes a material taking port 71, which is opened on the back of the test box 1, and a discharge port 72 is opened on the surface of the test box 1. A base 73 is fixedly installed on the bottom of the test box 1 to facilitate the taking and placing operations when testing and replacing the instruments required for use. The material taking port 71 can take out the used medical instruments for the same treatment, while the discharge port 72 can directly place unused medical instruments, so as to continuously assist medical staff and the above-mentioned blood sugar testing mechanism 4 to perform testing operations on patients.
[0037] When working; First, the prepared disinfection alcohol cotton is placed in the loading seat 57 through the discharge port 72, and the loading seat 57 is directly inserted into the first mounting seat 56, and then the needle 510 is correspondingly inserted into the second mounting seat 59, and the test paper body 513 is inserted into the third mounting seat 512, and then the micro motor 51 is started, and the micro motor 51 is used to drive the first bevel gear 52 to rotate. At this time, the first bevel gear 52 can directly drive the second bevel gear 53 based on the meshing relationship. When the second bevel gear 53 rotates, the rotation force at this time is changed from vertical rotation force to horizontal rotation force. When the second bevel gear 53 rotates, it synchronously drives the shaft rod 54 to rotate, and the shaft rod 54 will directly drive the first mounting frame 55, the second mounting frame 58 and the third mounting frame 511 on the outer surface to rotate together, so as to adjust the position of the medical device after the above placement is completed. At this time, it is at the top position in the figure. At this time, auxiliary detection operations can be carried out, and new medical devices need to be placed again according to the above. When auxiliary detection is required, the finger is inserted into the interior of the detection box 1 through the jack 27 and located at the first joint. The specific insertion depth is determined according to the actual length of the patient's finger until the finger pulp contacts the disinfection alcohol cotton. At this time, the micro air pump body 21 works, and the external gas is extracted and transported to the air bag ring 25 through the connecting pipe 24. At this time, the air bag ring 25 expands to pressurize and lock the finger so that it will not move during the disinfection process. This operation process can be selected according to actual conditions. In order to improve work efficiency, this method can be used to fix the finger during the disinfection process, or it can be used without this method. When this method is not used to fix the finger, reducing this step can further improve work efficiency. At the same time, in order to ensure that the finger is at the fingertip position during disinfection, it is necessary to press the first group of pressure plates 35, and use the pressure plates 35 to push the connecting rod 34 downward until the circular plate 33 is driven to compress the first spring 32, thereby pushing the limiting plate 36 downward. At this time, when the fingertip contacts the limiting plate 36, the disinfection sponge can be rubbed in a circle with the fingertip to complete the disinfection operation. When the disinfection is completed, the downward thrust on the connecting rod 34 can be released, and the finger can be further extended until it is at the top of the needle 510. The second group of connecting rods 34 needs to be pressed simultaneously. When pressing, the operation can be performed in the above manner, and the finger can be limited. In order to prevent the finger from retracting, the air bag ring 25 mentioned above needs to be used to squeeze and lock the finger to prevent retraction when the finger is punctured. After locking the finger, the needle 510 can be directly pressed downward to perform the puncture operation on the disinfected fingertip position. When the puncture is completed, the locking operation of the airbag ring 25 on the finger is released, and the pipeline above the airbag ring 25 is provided with an exhaust valve, and the connecting pipe 24 is provided with a control valve. When the exhaust valve is opened, the locking operation of the airbag ring 25 on the finger can be released. The control valve is conducive to avoiding the gas from being discharged to the micro air pump body 21 during exhaust, and the gas can be directly discharged to the outside through the exhaust valve. Then the punctured finger continues to extend forward and presses the limiting plate 36 of the third group until the fingertip position contacts the limiting plate 36. At this time, the blood at the punctured finger position will contact the test paper body 513, and the test paper body 513 absorbs the blood and transports it. It only takes 1-3 seconds for the contact to flow and transport the blood through the channel inside the test paper body 513 in the prior art. Based on the above, it is necessary to start the electric push rod 62 synchronously, and use the electric push rod 62 to pull the rack 63 to move. When the rack 63 moves, it will drive the connecting bar 65 to slide inside the connecting seat 64 to ensure the stability of the movement. Then, the transmission gear 66 is driven to rotate through the meshing connection relationship, and the transmission gear 66 will drive the rotating rod 67 to rotate, and the rotating rod 67 will synchronously drive the pushing block 68 to rotate. When the pushing block 68 rotates, it will directly rotate and push the third mounting frame 511, causing the third mounting frame 511 to slide on the outside of the shaft 54 and the sliding bar 517, and at the same time drive the second limit seat 515 to squeeze the second spring 516 until the detection test is driven. The paper body 513 can be inserted into the slot at the detection end of the blood glucose detector body 42 for 3-6 seconds to realize the detection operation. To ensure the accuracy of the detection, the insertion time should be not less than 3 seconds. Then, according to the above reverse operation, the pushing block 68 is returned to the initial position by the pulling force of the electric push rod 62, that is, the state shown in the figure. At this time, the third mounting frame 511 is also pushed back to the original position according to the elastic setting of the second spring 516, and the side plate 518 can be set to limit it to avoid excessive back movement. The actual data of the blood glucose test of the diabetic patient can be obtained through the data detected and displayed by the blood glucose detector body 42, and then it can be recorded. The above components are directly plugged into an external AC power source for electrical connection using plugs and wires. They are simple to operate and easy to use. They can test a large number of patients one by one, and at the same time help improve the efficiency, effect and accuracy of the test during the test process, thereby reducing the number of medical staff.
[0038] Although 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 the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An auxiliary device for automated detection of diabetes, characterized in that: Including a detection box (1); An auxiliary mechanism (5) for assisting finger pretreatment is arranged inside the detection box (1), a finger locking mechanism (2) for locking a finger is arranged on the top of the detection box (1), a limiting mechanism (3) for blocking finger insertion is arranged on the top of the detection box (1), a blood sugar detection mechanism (4) for blood sugar measurement is arranged at one end of the detection box (1), a propulsion mechanism (6) for detection and pushing is arranged on the surface of the detection box (1), and a pick-up and placement mechanism (7) for assisting loading and unloading is arranged on the outside of the detection box (1); The auxiliary mechanism (5) comprises a driving assembly, a transmission assembly, a pre-treatment assembly and a feeding assembly, the driving assembly being arranged at one end of the detection box (1), the transmission assembly being arranged inside the detection box (1), the pre-treatment assembly being arranged outside the transmission assembly, and the feeding assembly being arranged outside the transmission assembly; The propulsion mechanism (6) comprises a push-pull component and a rotating component, the push-pull component is arranged on the surface of the detection box (1), and the rotating component is arranged inside the detection box (1); The finger is pre-treated and blood is received by the auxiliary mechanism (5), and a thrust is applied to the auxiliary mechanism (5) to approach the blood glucose detection mechanism (4) by the propulsion mechanism (6), so that a rapid blood glucose detection operation is completed according to the inserted test strip; The pretreatment assembly comprises a mounting frame, a mounting seat, a shaft (54) and a needle (510); the mounting frame is connected to the shaft (54) and the mounting seat; a rotatable loading seat (57) and the needle (510) are connected inside the mounting seat; The feeding assembly comprises a test paper body (513) connected to one side of the mounting seat; The shaft rod (54) is connected to a limit seat and a slide bar (517), and a side plate (518) is fixedly mounted on one end of the slide bar (517).
2. The auxiliary device for automated detection of diabetes according to claim 1, characterized in that: The driving assembly comprises a micro motor (51), the micro motor (51) being located at one end of the detection box (1), and the output shaft of the micro motor (51) being key-connected to a first bevel gear (52).
3. The auxiliary device for automated detection of diabetes according to claim 2, characterized in that: The transmission assembly comprises a second bevel gear (53), the second bevel gear (53) being meshingly connected to the top of the first bevel gear (52), a shaft (54) being fixedly mounted on one end of the second bevel gear (53), the shaft (54) being rotationally connected to the detection box (1).
4. The auxiliary device for automated detection of diabetes according to claim 3, characterized in that: The mounting frame comprises a first mounting frame (55), a second mounting frame (58) and a third mounting frame (511); the mounting seat comprises a first mounting seat (56), a second mounting seat (59) and a third mounting seat (512); The first mounting frame (55) is fixedly mounted on one end of the surface of the shaft (54), the second mounting frame (58) is fixedly mounted on the middle part of the surface of the shaft (54), a first mounting seat (56) is fixedly mounted on the outer side of the first mounting frame (55), a loading seat (57) is inserted into the interior of the first mounting seat (56), a second mounting seat (59) is fixedly mounted on the outer side of the second mounting frame (58), and a needle (510) is inserted into the interior of the second mounting seat (59); The third mounting frame (511) is slidably connected to the other end of the surface of the shaft rod (54); a third mounting seat (512) is fixedly mounted on the outer side of the third mounting frame (511); and a test paper body (513) is inserted into one side of the third mounting seat (512).
5. The auxiliary device for automated detection of diabetes according to claim 4, characterized in that: The limiting seat comprises a first limiting seat (514) and a second limiting seat (515); A first limit seat (514) is fixedly mounted on the other end of the surface of the shaft rod (54); a second limit seat (515) is fixedly mounted on one side of the first limit seat (514); a slide bar (517) is fixedly mounted on one end of the surface of the shaft rod (54); the second limit seat (515) is located on the outer side of the shaft rod (54) and the slide bar (517) for sliding; a second spring (516) is arranged between the first limit seat (514) and the second limit seat (515); and a shielding cover (519) is fixedly mounted on one end of the detection box (1).
6. The auxiliary device for automated detection of diabetes according to claim 1, characterized in that: The push-pull assembly comprises a mounting box (61), the mounting box (61) being fixedly mounted on the surface of the detection box (1), an electric push rod (62) being fixedly mounted on the bottom of the inner cavity of the mounting box (61), a rack (63) being fixedly mounted on the output end of the electric push rod (62), a connecting strip (65) being fixedly mounted on the outer side of the rack (63), a connecting seat (64) being slidably connected to the outer side of the connecting strip (65), and the connecting seat (64) being fixed on the bottom of the inner cavity of the detection box (1).
7. The auxiliary device for automated detection of diabetes according to claim 6, characterized in that: The rotating assembly comprises a transmission gear (66), the transmission gear (66) being meshedly connected to the top of the rack (63), a rotating rod (67) being fixedly mounted on one end of the transmission gear (66), a pushing block (68) being fixedly mounted on the outer side of the rotating rod (67), and the rotating rod (67) being rotationally connected to the detection box (1).
8. The auxiliary device for automated detection of diabetes according to claim 1, characterized in that: The finger locking mechanism (2) comprises a micro air pump body (21), the micro air pump body (21) is fixedly mounted on the top of the detection box (1), the exhaust end of the micro air pump body (21) is connected to a connecting pipe (24), the exhaust end of the connecting pipe (24) is connected to an air bag ring (25), the other end of the detection box (1) is bolted to a sealing plate (26), the top of the surface of the sealing plate (26) is provided with an insertion hole (27), the air bag ring (25) is located on the inner side wall of the insertion hole (27), the top of the detection box (1) is fixedly mounted with a top cover (22), and the top of the top cover (22) is fixedly mounted with a protective cover (23).
9. The auxiliary device for automated detection of diabetes according to claim 1, characterized in that: The limiting mechanism (3) comprises a connecting frame (31), the connecting frame (31) being fixedly mounted on the top of the detection box (1), a first spring (32) being fixedly mounted on the top of the detection box (1), a circular plate (33) being fixedly mounted on the top of the first spring (32), a connecting rod (34) being fixedly mounted on the inner side wall of the circular plate (33), a pressing plate (35) being fixedly mounted on the top of the connecting rod (34), a limiting plate (36) being fixedly mounted on the bottom of the connecting rod (34), and the connecting rod (34) being located inside the first spring (32).
10. The auxiliary device for automated detection of diabetes according to claim 1, characterized in that: The blood sugar detection mechanism (4) comprises a mounting block (41), the mounting block (41) being bolted to one end of the detection box (1), and a blood sugar detection meter body (42) being fixedly mounted on one end of the mounting block (41); The pick-up and placement mechanism (7) comprises a material taking port (71), the material taking port (71) is provided on the back of the detection box (1), a material discharge port (72) is provided on the surface of the detection box (1), and a base (73) is fixedly mounted on the bottom of the detection box (1).
Citation Information
Patent Citations
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