Integrated blood glucose measuring device
The integrated blood glucose measurement device addresses manual handling risks and compartmentalization issues by automating lancet and strip operations and segregating infection zones, improving safety and convenience.
Patent Information
- Application Number
- CN202510468585.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2025-07-15
AI Technical Summary
When using the existing blood glucose meter, both the blood-taking needle and the test strip need to be manually disassembled and assembled, which poses a risk of infection, unreasonable functional partitioning, the infected area and the medication area are in the same space and are inconvenient for disinfection and treatment. Blood collection needles, blood sugar test strips, etc. are easy to shake and complex to operate.
An integrated blood sugar measurement device is designed, integrating test strip storage, automatic blood collection, test strip transmission, disinfection spray, test strip and blood collection needle recovery functions. Through reasonable functional partitioning, the infected area and the drug use area are isolated, and the automatic treatment of blood extraction needles and test strips is realized to ensure that each component is fixed and avoid shaking and contamination.
It improves the safety and convenience of blood sugar measurement, reduces the risk of infection, simplifies operational steps, and ensures the accuracy and user experience of measurement.
Smart Images

Figure CN120314293A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of blood glucose measurement, and provides an integrated blood glucose measurement device. Background Art
[0002] A blood glucose meter is an important tool for diabetic patients to manage their blood glucose. It can help diabetic patients monitor their blood glucose levels in real time, control their blood glucose, provide data recording, and remind patients to pay attention to diet and exercise, etc.
[0003] The existing operation process is as follows: before using the blood glucose meter, first clean both hands with running water, then check whether the battery of the blood glucose meter is sufficient, and whether the calibration code of the blood glucose meter is consistent with the calibration code marked on the test strip. Then perform the following operations: disinfect the blood collection site with alcohol / disinfectant, wait for it to dry naturally, take out the test strip from the test strip bottle and insert it into the electronic blood glucose meter until the instrument shows waiting for measurement, puncture the skin with a blood collection needle, and throw the used blood collection needle into the sharp instrument partition of the used box. Gently press to let the blood flow out naturally. After gently wiping off the first drop of blood with a cotton ball, drop the second drop of blood into the designated area on the test strip area. Wait for dozens of seconds and then the blood glucose meter shows the value. Take out the used test strip from the blood glucose meter and throw it into the infection area, and turn off the power of the blood glucose meter.
[0004] However, when the existing blood glucose meters are in use, both the blood collection needle and the test strip need to be manually disassembled and assembled, which has a certain risk of infection. In addition, the functional partition of the existing used box of the blood glucose meter is unreasonable. The infection area and the medication area are in the same space and are not convenient for dumping and disinfection. The rest of the blood collection needles, blood glucose test strips, cotton swabs, etc. are all multi-piece integrated, which is not convenient for taking, and each partition cannot fix each bottle well, is easy to shake, the operation is complex, and there is a risk of contamination of the test strip, instrument, etc. Summary of the Invention
[0005] In view of this, the purpose of the present invention is to provide an integrated blood glucose measurement device, aiming to solve the problems that when the existing blood glucose meters are in use, both the blood collection needle and the test strip need to be manually disassembled and assembled, which has a certain risk of infection, and the functional partition of the existing used box of the blood glucose meter is unreasonable. The infection area and the medication area are in the same space and are not convenient for dumping and disinfection. The rest of the blood collection needles, blood glucose test strips, cotton swabs, etc. are all multi-piece integrated, which is not convenient for taking, and each partition cannot fix each bottle well, is easy to shake, the operation is complex, and there is a risk of contamination of the test strip, instrument, etc.
[0006] To achieve the above object, the present invention provides the following technical solutions:
[0007] The present invention provides an integrated blood glucose measuring device, including a detection box. On the upper end face of the detection box, there are a blood glucose meter, a test strip storage box, a detection area, and a finger placement box. The blood glucose meter has a display screen. One end of the blood glucose meter is provided with a test strip socket. The test strip storage box has a through hole. The detection area has a detection hole. Above the finger placement box, there is a disinfection spray mechanism. At the inner bottom of the finger placement box, there is a needle outlet hole. Outside the finger placement box, there is a warm air fan. Inside the detection box, there are a blood collection needle area and a test strip area. In the blood collection needle area, there is a blood collection needle mechanism, and the blood collection needle mechanism is located below the needle outlet hole. In the test strip area, a first rotating shaft, a second rotating shaft, a third rotating shaft, a fourth rotating shaft, a fifth rotating shaft, a sixth rotating shaft, a seventh rotating shaft, an eighth rotating shaft, and a ninth rotating shaft are rotatably arranged. On the first rotating shaft, there are two first guide wheels and two auxiliary gears. On the second rotating shaft, there are two second guide wheels and two driven gears, and the two driven gears are respectively engaged with the corresponding auxiliary gears. On the third rotating shaft, there are two connecting gears, and the two connecting gears are respectively engaged with the corresponding driven gears. On the fourth rotating shaft, there is a paper output wheel and two driving gears, and the fourth rotating shaft is driven by a motor. The two driving gears are respectively engaged with the corresponding connecting gears. On the fifth rotating shaft, the sixth rotating shaft, the seventh rotating shaft, the eighth rotating shaft, and the ninth rotating shaft, there are all lifting wheels.
[0008] Further, the first rotating shaft is directly above the second rotating shaft. The second rotating shaft is above one side of the third rotating shaft. The fourth rotating shaft is above the other side of the third rotating shaft. Among them, the fifth rotating shaft and the sixth rotating shaft are both below the detection area. The seventh rotating shaft, the eighth rotating shaft, and the ninth rotating shaft are below the through hole, and the fourth rotating shaft, the seventh rotating shaft, the eighth rotating shaft, and the ninth rotating shaft are arranged in sequence below the through hole.
[0009] Further, the gap between the first guide wheel and the second guide wheel is aligned with the test strip socket. The second guide wheel and the multiple lifting wheels are on the same horizontal line, and the gap between the test strip storage box and the paper output wheel allows one test strip to pass through.
[0010] Further, the integrated blood glucose measuring device further includes a test strip recovery tray and a blood collection needle recovery tray. The test strip recovery tray is slidably connected to the detection box, is located in the test strip area, and is also directly below the test strip socket and the second guide wheel. The blood collection needle recovery tray is slidably connected to the detection box, is located in the blood collection needle area, and is also directly below the blood collection needle mechanism.
[0011] Further, the integrated blood glucose measuring device further includes a pressing mechanism, the pressing mechanism includes two pressing springs and a pressing block, both ends of the pressing block are provided with pressing rods, the two pressing springs are respectively sleeved on the corresponding pressing rods, and are also abutted between the pressing block and the detection box, the pressing block is slidably connected to the detection box, and is located between the blood glucose meter and the first guide wheel, and the pressing block extends into the test strip area.
[0012] Further, the disinfection spray mechanism includes a plurality of spray heads, a liquid collecting pipe and a liquid storage bottle. A connecting pipe is arranged above the liquid collecting pipe, a micro pump is arranged on the connecting pipe, the plurality of spray heads are respectively communicated with the liquid collecting pipe and are located below the liquid collecting pipe, the liquid collecting pipe is fixedly connected to the finger placing box and is located at the inner top of the finger placing box, and the micro pump extends into the liquid storage bottle. The liquid storage bottle is fixedly connected to the finger placing box and is located above the finger placing box.
[0013] Further, the blood collection needle mechanism includes a needle outlet seat and a needle storage plate. The needle outlet seat has a needle outlet through hole, one end face of the needle outlet seat has a pushing groove, the other end face of the needle outlet seat is provided with a first pushing telescopic rod, and the output end of the first pushing telescopic rod extends to the inner side of the needle outlet through hole. The needle storage plate has a needle storage through hole, and a fixing block is threadedly arranged at one end of the needle storage through hole. A pushing spring is arranged on the fixing block. The other end of the needle storage plate is provided with two needle head cap removing plates and a second pushing telescopic rod, and the output end of the second pushing telescopic rod extends above the needle head cap removing plates. The gap between the two needle head cap removing plates allows the needle head of the blood collection needle to pass through, and the needle head cap removing plates are arranged in an arc shape. A cylinder is arranged below the needle storage plate, and the output end of the cylinder extends into the needle storage through hole. The needle outlet seat is fixedly connected to the needle storage plate and is located at the other end of the needle storage plate, and the needle outlet through hole, the needle storage through hole and the output end of the cylinder are in a coincident state. The needle storage plate is fixedly connected to the detection box and is located in the blood collection needle area, and the blood collection needle recovery tray is located below the needle outlet seat and the needle storage plate.
[0014] The beneficial effects of the present invention are:
[0015] 1. An integrated blood glucose measurement device of the present invention includes a detection box. On the upper end face of the detection box, there are a blood glucose meter, a test strip storage box, a detection area, and a finger placement box. The blood glucose meter has a display screen. One end of the blood glucose meter is provided with a test strip socket. The test strip storage box has through holes. The detection area has detection holes. Above the finger placement box, there is a disinfection spray mechanism. The inner bottom of the finger placement box has a needle outlet hole. On the outside of the finger placement box, there is a warm air fan. Inside the detection box, there are a blood collection needle area and a test strip area. In the blood collection needle area, there is a blood collection needle mechanism. In the test strip area, the first rotating shaft, the second rotating shaft, the third rotating shaft, the fourth rotating shaft, the fifth rotating shaft, the sixth rotating shaft, the seventh rotating shaft, the eighth rotating shaft, and the ninth rotating shaft are rotatably arranged. On the first rotating shaft, there are two first guide wheels and two auxiliary gears. On the second rotating shaft, there are two second guide wheels and two driven gears. On the third rotating shaft, there are two connecting gears. On the fourth rotating shaft, there are a paper outlet wheel and two driving gears. On the fifth rotating shaft, the sixth rotating shaft, the seventh rotating shaft, the eighth rotating shaft, and the ninth rotating shaft, there are all lifting wheels. This design integrates multiple functions such as test strip storage, automatic blood collection, test strip transmission, disinfection spray, and test strip and blood collection needle recycling. It realizes the automatic processing of blood collection needles and test strips, avoiding the infection risk that may be brought by manual disassembly and assembly. At the same time, through reasonable function zoning, the device effectively isolates the infection area and the medication area, which is not only convenient for dumping and disinfection, but also greatly improves the safety and convenience of use. In addition, items such as test strips and blood collection needles are well fixed in the device, avoiding problems such as shaking and complex operation. Components such as test strips and instruments are not easily contaminated, thus effectively improving the accuracy of blood glucose measurement and the user experience.
[0016] Other advantages, objectives, and features of the present invention will be described to some extent in the subsequent specification, and to some extent, will be obvious to those skilled in the art based on the study of the following text, or can be taught from the practice of the present invention. The objectives and other advantages of the present invention can be achieved and obtained through the following specification. Brief Description of the Drawings
[0017] In order to make the objectives, technical solutions, and advantages of the present invention clearer, the present invention will be described in detail preferably with reference to the accompanying drawings, where:
[0018] Figure 1 is the three-dimensional perspective view of the present invention.
[0019] Figure 2 is the front view of the present invention.
[0020] Figure 3 is of the present invention Figure 2Cross-sectional view along line A-A.
[0021] Figure 4 of the present invention Figure 3 Cross-sectional view along line B-B.
[0022] Figure 5 of the present invention Figure 3 Cross-sectional view along line C-C.
[0023] Figure 6 of the present invention Figure 5 Cross-sectional view along line D-D.
[0024] Figure 7 of the present invention Figure 6 Partial enlarged view at E of the present invention.
[0025] Figure 8 of the present invention Figure 5 Cross-sectional view along line F-F.
[0026] Figure 9 of the present invention Figure 8 Partial enlarged view at G of the present invention.
[0027] Reference numerals: 1 is a test cartridge, 2 is a blood glucose meter, 3 is a test strip storage box, 4 is a detection area, 5 is a finger placement box, 6 is a display screen, 7 is a test strip socket, 8 is a through hole, 9 is a detection hole, 10 is a disinfection spray mechanism, 11 is a needle outlet hole, 12 is a warm air fan, 13 is a blood collection needle area, 14 is a test strip area, 15 is a first rotating shaft, 16 is a second rotating shaft, 17 is a third rotating shaft, 18 is a fourth rotating shaft, 19 is a fifth rotating shaft, 20 is a sixth rotating shaft, 21 is a seventh rotating shaft, 22 is an eighth rotating shaft, 23 is a ninth rotating shaft, 24 is a first guide wheel, 25 is an auxiliary gear, 26 is a second guide wheel, 27 is a driven gear, 28 is a connecting gear, 29 is a paper output wheel, 30 is a driving gear, 31 is a motor, 32 is a lifting wheel, 33 is a test strip recovery tray, 34 is a blood collection needle recovery tray, 35 is a pressing mechanism, 36 is a pressing spring, 37 is a pressing block, 38 is a pressing rod, 39 is a spray head, 40 is a liquid collecting pipe, 41 is a liquid storage bottle, 42 is a connecting pipe, 43 is a micro pump, 44 is a needle outlet seat, 45 is a needle storage plate, 46 is a needle outlet through hole, 47 is a pushing groove, 48 is a first pushing telescopic rod, 49 is a needle storage through hole, 50 is a fixing block, 51 is a pushing spring, 52 is a needle cap removal plate, 53 is a second pushing telescopic rod, 54 is a cylinder, 55 is a test strip, 56 is a blood collection needle, 57 is a needle cap. Detailed implementation manners
[0028] The present invention will be further described below in conjunction with specific embodiments. Among them, the drawings are only for illustrative purposes, showing only schematic diagrams, not physical diagrams, and should not be construed as a limitation to this patent; in order to better illustrate the embodiments of the present invention, some components in the drawings will be omitted, enlarged or reduced, which do not represent the dimensions of the actual product; for those skilled in the art, it is understandable that some well-known structures and their descriptions in the drawings may be omitted.
[0029] Please refer to Figures 1 to 9 As shown, an integrated blood glucose measuring device of the present invention includes a detection box 1. On the upper end face of the detection box 1, there are a blood glucose meter 2, a test strip storage box 3, a detection area 4, and a finger placement box 5. The blood glucose meter 2 has a display screen 6. One end of the blood glucose meter 2 is provided with a test strip socket 7. The test strip storage box 3 has a through hole 8. The detection area 4 has a detection hole 9. Above the finger placement box 5, there is a disinfection spray mechanism 10. The inner bottom of the finger placement box 5 has a needle outlet hole 11. On the outside of the finger placement box 5, there is a warm air fan 12. Inside the detection box 1, there are a blood collection needle area 13 and a test strip area 14. A blood collection needle mechanism is arranged in the blood collection needle area 13, and the blood collection needle mechanism is located below the needle outlet hole 11. In the test strip area 14, a first rotating shaft 15, a second rotating shaft 16, a third rotating shaft 17, a fourth rotating shaft 18, a fifth rotating shaft 19, a sixth rotating shaft 20, a seventh rotating shaft 21, an eighth rotating shaft 22, and a ninth rotating shaft 23 are rotatably arranged. Two first guide wheels 24 and two auxiliary gears 25 are arranged on the first rotating shaft 15. Two second guide wheels 26 and two driven gears 27 are arranged on the second rotating shaft 16, and the two driven gears 27 are respectively engaged with the corresponding auxiliary gears 25. Two connecting gears 28 are arranged on the third rotating shaft 17, and the two connecting gears 28 are respectively engaged with the corresponding driven gears 27. A paper outlet wheel 29 and two driving gears 30 are arranged on the fourth rotating shaft 18, and the fourth rotating shaft 18 is driven by a motor 31. The two driving gears 30 are respectively engaged with the corresponding connecting gears 28. Lifting wheels 32 are arranged on the fifth rotating shaft 19, the sixth rotating shaft 20, the seventh rotating shaft 21, the eighth rotating shaft 22, and the ninth rotating shaft 23.
[0030] In this embodiment, by integrating functional modules such as the blood glucose meter 2, the test strip storage box 3, the detection area 4, and the finger placement box 5 into one detection box 1, the whole process of blood glucose measurement is automated and integrated. This design not only simplifies the operation steps and improves the measurement efficiency, but also reduces the pollution risk during blood glucose measurement through centralized management. The display screen 6 and the test strip socket 7 of the blood glucose meter 2 provide an intuitive operation interface for users. The through holes 8 in the test strip storage box 3 ensure the dry storage and convenient access of the test strips. The detection holes 9 in the detection area 4 are used to place the test strips and perform blood glucose detection. The finger placement box 5 integrates the functions of blood collection and disinfection, improving the convenience and safety of use.
[0031] Further, the first rotating shaft 15 is located directly above the second rotating shaft 16, the second rotating shaft 16 is located above one side of the third rotating shaft 17, and the fourth rotating shaft 18 is located above the other side of the third rotating shaft 17. Among them, the fifth rotating shaft 19 and the sixth rotating shaft 20 are both located below the detection area 4, and the seventh rotating shaft 21, the eighth rotating shaft 22, and the ninth rotating shaft 23 are located below the through hole 8. Moreover, the fourth rotating shaft 18, the seventh rotating shaft 21, the eighth rotating shaft 22, and the ninth rotating shaft 23 are arranged in sequence below the through hole 8.
[0032] In this embodiment, by clarifying the relative position relationship between the rotating shafts, the stability and accuracy of the test strip during transmission are ensured. The staggered arrangement among the first rotating shaft 15, the second rotating shaft 16, and the third rotating shaft 17, as well as the sequential arrangement of the fourth rotating shaft 18 and other rotating shafts below the through hole 8, together constitute an efficient test strip transmission system. This design not only improves the transmission efficiency of the test strip, but also reduces the risk of paper jams and test strip damage, thus ensuring the accuracy and reliability of blood glucose measurement.
[0033] Further, the gap between the first guide wheel 24 and the second guide wheel 26 is aligned with the test strip socket 7. The second guide wheel 26 and multiple lifting wheels 32 are on the same horizontal line, and the gap between the test strip storage box 3 and the paper outlet wheel 29 allows one test strip to pass through.
[0034] In this embodiment, by precisely setting the alignment relationship between the gap between the first guide wheel 24 and the second guide wheel 26 and the test strip socket 7, and the arrangement of the second guide wheel 26 and the lifting wheels 32 on the same horizontal line, the smooth transition and accurate positioning of the test strip during transmission are ensured. This design not only improves the accuracy and stability of test strip transmission, but also avoids possible deviations and jams of the test strip during transmission, thus further ensuring the accuracy of blood glucose measurement.
[0035] Further, the integrated blood glucose measuring device further includes a test strip recycling tray 33 and a blood collection needle recycling tray 34. The test strip recycling tray 33 is slidably connected to the test cartridge 1, is located within the test strip area 14, and is also directly below the test strip socket 7 and the second guide wheel 26. The blood collection needle recycling tray 34 is slidably connected to the test cartridge 1, is located within the blood collection needle area 13, and is also directly below the blood collection needle mechanism.
[0036] In this embodiment, by introducing the test strip recycling tray 33 and the blood collection needle recycling tray 34, effective collection and treatment of used test strips and blood collection needles are achieved. This design not only reduces the complexity of waste disposal but also reduces the risk of cross-infection, improving the safety and environmental friendliness of use.
[0037] Further, the integrated blood glucose measuring device further includes a pressing mechanism 35. The pressing mechanism 35 includes two pressing springs 36 and a pressing block 37. Both ends of the pressing block 37 are provided with pressing rods 38. The two pressing springs 36 are respectively sleeved on the corresponding pressing rods 38 and are also abutted between the pressing block 37 and the test cartridge 1. The pressing block 37 is slidably connected to the test cartridge 1, is located between the blood glucose meter 2 and the first guide wheel 24, and the pressing block 37 extends into the test strip area 14.
[0038] In this embodiment, by introducing the pressing mechanism 35, the used test strip is pressed, facilitating the ejection of the test strip and causing it to fall into the test strip recycling tray 33.
[0039] Further, the disinfection spray mechanism 10 includes a plurality of spray heads 39, a liquid collecting pipe 40, and a liquid storage bottle 41. A connecting pipe 42 is provided above the liquid collecting pipe 40. A micro pump 43 is provided on the connecting pipe 42. The plurality of spray heads 39 are respectively communicated with the liquid collecting pipe 40 and are located below the liquid collecting pipe 40. The liquid collecting pipe 40 is fixedly connected to the finger placement box 5 and is located at the inner top of the finger placement box 5. The micro pump 43 extends into the liquid storage bottle 41. The liquid storage bottle 41 is fixedly connected to the finger placement box 5 and is located above the finger placement box 5.
[0040] In this embodiment, the automatic disinfection function of the finger in the finger placement box 5 is achieved through the disinfection spray mechanism 10. The disinfection spray mechanism 10 transports the disinfectant in the liquid storage bottle 41 to the plurality of spray heads 39 through the micro pump 43, performing a comprehensive and uniform disinfection treatment on the finger or the inside of the finger placement box 5. This design not only improves the efficiency and effect of disinfection but also reduces the complexity of manual disinfection and the risk of cross-infection.
[0041] Further, the blood collection needle mechanism includes a needle outlet seat 44 and a needle storage plate 45. The needle outlet seat 44 has a needle outlet through hole 46. One end face of the needle outlet seat 44 has a pushing groove 47. The other end face of the needle outlet seat 44 is provided with a first pushing telescopic rod 48, and the output end of the first pushing telescopic rod 48 extends to the inside of the needle outlet through hole 46. The needle storage plate 45 has a needle storage through hole 49, and a fixing block 50 is threadedly arranged at one end of the needle storage through hole 49. A pushing spring 51 is arranged on the fixing block 50. The other end of the needle storage plate 45 is provided with two needle cap removal plates 52 and a second pushing telescopic rod 53, and the output end of the second pushing telescopic rod 53 extends above the needle cap removal plates 52. The gap between the two needle cap removal plates 52 allows the needle of the blood collection needle to pass through, and the needle cap removal plates 52 are arranged in an arc shape. A cylinder 54 is arranged below the needle storage plate 45, and the output end of the cylinder 54 extends into the needle storage through hole 49. The needle outlet seat 44 is fixedly connected to the needle storage plate 45 and is located at the other end of the needle storage plate 45, and the needle outlet through hole 46, the needle storage through hole 49, and the output end of the cylinder 54 are in a coincident state. The needle storage plate 45 is fixedly connected to the detection box 1 and is located in the blood collection needle area 13, and the blood collection needle recovery tray 34 is located below the needle outlet seat 44 and the needle storage plate 45.
[0042] In this embodiment, the automatic replacement and processing functions of the blood collection needle are realized through the blood collection needle mechanism. The blood collection needle mechanism realizes functions such as automatic ejection, recovery and processing after use of the blood collection needle through the coordinated action of components such as the cylinder 54, the needle storage plate 45, and the needle outlet seat 44. The needle cap removal plates 52 are arranged in an arc shape, which facilitates the separation of the needle cap 57 of the blood collection needle along its arc-shaped part. This design not only improves the efficiency and accuracy of blood collection, but also reduces the risk and cumbersome degree of manual replacement of the blood collection needle, improving the safety and convenience of use. At the same time, the setting of the blood collection needle recovery tray 34 also facilitates the centralized collection and processing of blood collection needles, reducing the difficulty and cost of garbage disposal.
[0043] In the present invention, when the user puts a finger into the finger placement box 5, the disinfection spray mechanism 10 automatically disinfects the finger. Subsequently, the blood collection needle 56 is separated from the needle cap 57 under the action of the two needle cap disassembly plates 52. The separated needle cap 57 drops into the blood collection needle recovery tray 34 under the action of the second push telescopic rod 53, while the blood collection needle 56 enters the needle outlet through-hole 46 and is located directly above the output end of the cylinder 54. Subsequently, under the push of the cylinder 54, the blood collection needle 56 is ejected through the needle outlet through-hole 46 to pierce the finger skin for blood collection. After use, the used blood collection needle 56 is pushed out of the needle outlet through-hole 46 under the action of the first push telescopic rod 48 and drops into the blood collection needle recovery tray 34. At the same time, under the action of the push spring 51, multiple blood collection needles 56 separate the needle cap 57 from the frontmost blood collection needle 56 and send it into the needle outlet through-hole 46 for the next blood collection. After blood collection, the person being blood-collected raises the finger upward, and the warm air fan 12 is started to quickly dry the finger. At the same time, the test strip 55 drops from the test strip storage box 3 through the through-hole 8 onto the test strip transmission path. By driving the fourth rotating shaft 18 counterclockwise by the motor 31, under the action of the driving gear 30, the connecting gear 28, the driven gear 27, and the auxiliary gear 25, multiple rotating shafts rotate, and the test strip 55 is smoothly transmitted to below the detection area 4 under the guidance of the first rotating shaft 15, the second rotating shaft 16, the third rotating shaft 17, the fourth rotating shaft 18, and subsequent rotating shafts. And under the action of the first guide wheel 24 and the second guide wheel 26, the insertion end of the test strip 55 is inserted into the test strip socket 7, while the detection end of the test strip 55 is located at the detection hole 9. At this time, the person being blood-collected places the bleeding finger on the detection end of the test strip 55 in the detection hole 9. Glucose in the blood reacts with the chemical reagent on the test strip 55, and the blood glucose meter 2 calculates the blood glucose value by reading the color change of the test strip 55 and displays it on the display screen 6. Subsequently, control the motor 31 to rotate clockwise, so that the first guide wheel 24 and the second guide wheel 26 pull out the insertion end of the test strip 55 from the test strip socket 7. At this time, the medical staff presses the pressing block 37, so that the pressing block 37 presses the insertion end of the test strip 55 downward, and then control the motor 31 to rotate counterclockwise, so that the first guide wheel 24 and the second guide wheel 26 push out the used test strip 55, and the used test strip 55 drops into the test strip recovery tray 33. Repeating the above operations can perform multiple blood collections. The entire process of this design is automated and integrated, which is both convenient and safe. It should be noted that after use, the blood collection needle 56 and the test strip 55 of this design need to be refilled, and this process needs to be completed manually. When loading the blood collection needle 56 and the test strip 55, disinfection work needs to be done well.
[0044] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention rather than to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the purpose and scope of the present technical solution, and they should all be covered within the scope of the claims of the present invention.
Claims
1. An integrated blood glucose measuring device, characterized in that, It includes a detection box. On the upper end face of the detection box, there are a blood glucose meter, a test strip storage box, a detection area, and a finger placement box. The blood glucose meter has a display screen. One end of the blood glucose meter is provided with a test strip socket. The test strip storage box has a through hole. The detection area has a detection hole. Above the finger placement box, there is a disinfection spray mechanism. At the inner bottom of the finger placement box, there is a needle outlet hole. Outside the finger placement box, there is a warm air fan. Inside the detection box, there are a blood collection needle area and a test strip area. In the blood collection needle area, there is a blood collection needle mechanism, and the blood collection needle mechanism is located below the needle outlet hole. In the test strip area, the first rotating shaft, the second rotating shaft, the third rotating shaft, the fourth rotating shaft, the fifth rotating shaft, the sixth rotating shaft, the seventh rotating shaft, the eighth rotating shaft, and the ninth rotating shaft are rotatably arranged. On the first rotating shaft, there are two first guiding wheels and two auxiliary gears. On the second rotating shaft, there are two second guiding wheels and two driven gears, and the two driven gears are respectively meshed with the corresponding auxiliary gears. On the third rotating shaft, there are two connecting gears, and the two connecting gears are respectively meshed with the corresponding driven gears. On the fourth rotating shaft, there is a paper output wheel and two driving gears, and the fourth rotating shaft is driven by a motor. The two driving gears are respectively meshed with the corresponding connecting gears. On the fifth rotating shaft, the sixth rotating shaft, the seventh rotating shaft, the eighth rotating shaft, and the ninth rotating shaft, there are all lifting wheels.
2. The integrated blood glucose measuring device according to claim 1, characterized in that The first rotating shaft is directly above the second rotating shaft. The second rotating shaft is above one side of the third rotating shaft. The fourth rotating shaft is above the other side of the third rotating shaft. Among them, the fifth rotating shaft and the sixth rotating shaft are both below the detection area. The seventh rotating shaft, the eighth rotating shaft, and the ninth rotating shaft are below the through hole, and the fourth rotating shaft, the seventh rotating shaft, the eighth rotating shaft, and the ninth rotating shaft are arranged in sequence below the through hole.
3. The integrated blood glucose measuring device according to claim 2, wherein The gap between the first guiding wheel and the second guiding wheel is aligned with the test strip socket. The second guiding wheel and the multiple lifting wheels are on the same horizontal line, and the gap between the test strip storage box and the paper output wheel allows one test strip to pass through.
4. The integrated blood glucose measuring device according to claim 3, wherein The integrated blood glucose measuring device further includes a test strip recycling tray and a blood collection needle recycling tray. The test strip recycling tray is slidably connected to the detection box, is located in the test strip area, and is also directly below the test strip socket and the second guiding wheel. The blood collection needle recycling tray is slidably connected to the detection box, is located in the blood collection needle area, and is also directly below the blood collection needle mechanism.
5. The integrated blood glucose measuring device according to claim 4, characterized in that, The integrated blood glucose measuring device further includes a pressing mechanism. The pressing mechanism includes two pressing springs and a pressing block. At both ends of the pressing block, there are pressing rods. The two pressing springs are respectively sleeved on the corresponding pressing rods and are also abutted between the pressing block and the detection box. The pressing block is slidably connected to the detection box, is located between the blood glucose meter and the first guiding wheel, and the pressing block extends into the test strip area.
6. The integrated blood glucose measuring device according to claim 5, characterized in that The disinfection spray mechanism includes a plurality of spray heads, a liquid collecting pipe, and a liquid storage bottle. A connecting pipe is arranged above the liquid collecting pipe, and a micro pump is arranged on the connecting pipe. The plurality of spray heads are respectively communicated with the liquid collecting pipe and are located below the liquid collecting pipe. The liquid collecting pipe is fixedly connected to the finger placement box and is located at the inner top of the finger placement box. The micro pump extends into the liquid storage bottle. The liquid storage bottle is fixedly connected to the finger placement box and is located above the finger placement box.
7. The integrated blood glucose measuring device according to claim 6, characterized in that, The blood collection needle mechanism includes a needle outlet seat and a needle storage plate. The needle outlet seat has a needle outlet through hole. One end face of the needle outlet seat has a pushing groove. The other end face of the needle outlet seat is provided with a first pushing telescopic rod, and the output end of the first pushing telescopic rod extends to the inside of the needle outlet through hole. The needle storage plate has a needle storage through hole, and a fixing block is threadedly arranged at one end of the needle storage through hole. A pushing spring is arranged on the fixing block. The other end of the needle storage plate is provided with two needle cap removal plates and a second pushing telescopic rod, and the output end of the second pushing telescopic rod extends above the needle cap removal plates. The gap between the two needle cap removal plates allows the needle of the blood collection needle to pass through, and the needle cap removal plates are arranged in an arc shape. A cylinder is arranged below the needle storage plate, and the output end of the cylinder extends into the needle storage through hole. The needle outlet seat is fixedly connected to the needle storage plate and is located at the other end of the needle storage plate. The needle outlet through hole, the needle storage through hole, and the output end of the cylinder are in a coincident state. The needle storage plate is fixedly connected to the detection box and is located in the blood collection needle area, and the blood collection needle recovery tray is located below the needle outlet seat and the needle storage plate.
Citation Information
Patent Citations
Blood glucose measuring system, strip receiving apparatus, strip storage apparatus and automatic blood collecting apparatus
CN102762148A
5G blood glucose intelligent detector and use method
CN119112180A
Painless minimally invasive blood glucose testing device and method thereof
CN119235304A
Automatic blood sampling and blood glucose testing integrated equipment
CN214632162U
Sharp tool box capable of quickly disassembling needle head
CN222055598U