Multifunctional health detector and detection method
By designing the test strip holder and paper withdrawal holder structure of the multifunctional health detector, combined with the communication unit prompts, the problem of difficulty in controlling the insertion time of the test strip in patients with hyperglycemia is solved, and the stability and accuracy of the test strip detection are improved.
Patent Information
- Application Number
- CN202510454043.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2025-07-08
AI Technical Summary
The existing blood glucose meter needs to be inserted before use. Patients with hyperglycemia are older and it is difficult to control the duration of the test strip insertion, resulting in poor detection results or false alarms.
A multifunctional health detector is designed, including a test paper holder, a paper withdrawal seat, a test paper pick and a detection unit. The test paper is inserted through the chute and slider structure to limit the displacement of the test paper, and the appropriate insertion time is prompted through the communication unit.
Improve the stability and accuracy of test strip detection, avoid errors in the detection results, and ensure the appropriate insertion time of the test strip.
Smart Images

Figure CN120275638A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical devices, and particularly to a multifunctional health detector and a detection method. Background Art
[0002] Before using the existing blood glucose meters, test strips need to be inserted into the blood glucose meters. The user group that needs to use blood glucose meters are patients with high blood sugar. Patients with high blood sugar are usually older. For them, the specific detection duration after inserting the test strips is uncertain. This leads to problems such as poor detection effects caused by the test strips being inserted for too short a time, and the detection results being affected when the insertion time is too long. For such older patients, external prompts are needed to assist them in controlling the insertion duration of the test strips, thereby improving the stability of test strip detection and reducing the possibility of false error reports in the detection results. Therefore, a multifunctional health detector and a detection method are needed. Summary of the Invention
[0003] In view of the above-mentioned disadvantages of the prior art, the purpose of the present invention is to provide a multifunctional health detector and a detection method for solving the problem of the stability of test strip detection in the prior art.
[0004] To achieve the above object and other related objects, the present invention provides the following technical solutions:
[0005] A multifunctional health detector includes a housing, a display screen is arranged on the housing, and control buttons are arranged on the housing below the display screen. It further includes:
[0006] A test strip part, the test strip part is arranged on the housing below the control buttons. A test strip seat is arranged inside the test strip part, and the test strip seat is fixed inside the test strip part. A slidable paper ejection seat is arranged below the test strip seat. The paper ejection seat is a U-shaped paper ejection seat, and the opening of the paper ejection seat faces the test strip seat. Paper ejection chutes are opened on the side surfaces on both sides of the test strip seat. A paper ejection slider is arranged at the top of the open end of the paper ejection seat, and the paper ejection slider extends horizontally into the paper ejection chute. A test strip pusher is arranged inside the test strip seat. When the test strip is inserted into the test strip seat, the test strip pusher abuts against the test strip.
[0007] A component cavity, and a multifunctional detection unit is arranged inside the component cavity.
[0008] To implement the above technical solution, by fixing the test strip holder inside the test strip part, when it is necessary to withdraw the test strip, the slidable paper withdrawal seat under the test strip holder moves downward to push the test strip in the test strip holder out of the test strip holder. The opening of the paper withdrawal seat is set facing the test strip holder, which can facilitate the insertion of the test strip into the test strip holder. The paper withdrawal seat plays an auxiliary supporting role for the test strip, thereby ensuring the stability of the test strip during the detection process. Retraction chutes are provided on the side surfaces of both sides of the test strip holder. The retraction chutes can guide the insertion of the test strip into the test strip holder and limit the displacement of the test strip in the horizontal direction, so that the test strip pusher and the test strip can better abut against each other to obtain more stable test strip information. By extending the paper withdrawal slider horizontally into the retraction chute, it can cooperate with the retraction chute to guide the test strip and also facilitate pushing the test strip out of the test strip holder.
[0009] In an embodiment of the present invention, a pusher base is provided at the top of the test strip cavity. The pusher base extends downward along the vertical direction out of the test strip cavity. And a gap is provided between the paper withdrawal slider and the bottom surface of the pusher base.
[0010] To implement the above technical solution, by extending the pusher base downward along the vertical direction out of the test strip cavity, it can facilitate the assembly of the test strip pusher, provide assembly positioning for the test strip pusher, and improve the contact convenience between the test strip pusher and the test strip for detection. A gap is provided between the paper withdrawal slider and the bottom surface of the pusher base, which can prevent the pusher base from affecting the sliding space of the paper withdrawal slider during the paper withdrawal process.
[0011] In an embodiment of the present invention, multiple groups of pusher slots are provided on the pusher base. The test strip pushers are respectively inserted into the pusher slots. And the test strip pushers extend downward out of the pusher slots. A gap is provided between the lower side of the test strip pusher extending out of the pusher slot and the paper withdrawal seat.
[0012] To implement the above technical solution, by providing multiple groups of pusher slots, it can facilitate the assembly of the test strip pushers on the pusher base. A gap is provided between the lower side of the test strip pusher extending out of the pusher slot and the paper withdrawal seat, which can provide an insertion space for the insertion of the test strip and improve the contact stability between the test strip pusher and the test strip, thereby improving the detection stability.
[0013] In an embodiment of the present invention, limit bases are provided at the bottoms of both sides of the test strip holder. A base chute is provided on the paper withdrawal seat. The limit bases and the base chute are slidably matched. The base chute is a base chute with a Y-shaped cross-section. The limit bases extend into the bottom of the base chute.
[0014] To implement the above technical solution, by slidingly mating the limit base with the base chute, the stability of the paper ejection base sliding on the test strip base can be improved. The base chute is arranged with a Y-shaped cross-section, which can further limit the sliding reliability between the paper ejection base and the test strip base, and at the same time reduce the displacement of the paper ejection base in the horizontal and vertical directions.
[0015] In an embodiment of the present invention, a chute guide platform is arranged inside the open end on the outer side of the paper ejection chute. The chute guide platforms are arranged symmetrically up and down in the paper ejection chute, and moreover, the chute guide platforms are arranged in an open manner in a direction away from the paper ejection chute. A slider guide platform is arranged on the side of the paper ejection slider close to the paper ejection chute. The cross-section of the slider guide platform is trapezoidal, and moreover, the short side part of the slider guide platform is arranged on the side close to the paper ejection chute.
[0016] To implement the above technical solution, by arranging the chute guide platforms symmetrically up and down, the chute guide platforms can be in a horn shape, which is convenient for the paper ejection slider to be inserted into the paper ejection chute. And a slider guide platform is arranged on the side of the paper ejection slider close to the paper ejection chute, which can provide a guiding process when the paper ejection slider is inserted into the paper ejection chute, further improving the convenience during assembly. The cross-section of the slider guide platform is trapezoidal, and the short side part of the slider guide platform is arranged on the side close to the paper ejection chute, which can reduce the friction area between the paper ejection slider and the paper ejection chute, thereby prolonging the service life of the paper ejection slider.
[0017] In an embodiment of the present invention, a paper ejection slide plate is slidably connected inside the test strip part. A slide plate limit plate covering the paper ejection slide plate is also arranged inside the test strip part. A slide plate resetting member is arranged on the top of the slide plate limit plate. The slide plate limit plate is connected to the housing at the test strip part by bolts. There is a gap between the slide plate limit plate and the housing, and moreover, the paper ejection slide plate is located in the gap space. The paper ejection slider is arranged on the paper ejection slide plate, and the paper ejection slider moves along with the paper ejection slide plate.
[0018] To implement the above technical solution, by arranging a slide plate limit plate covering the paper ejection slide plate inside the test strip part, the sliding stability of the paper ejection slide plate inside the housing can be improved. And by arranging a gap between the slide plate limit plate and the housing and the paper ejection slide plate being located in the gap space, enough sliding space can be reserved for the paper ejection slide plate, thereby ensuring the smoothness of the paper ejection action. The slide plate resetting member can reset the paper ejection slide plate after paper ejection, and further ensure the stability of subsequent test strip detection.
[0019] In an embodiment of the present invention, a limit through groove is arranged on the top of the slide plate limit plate. The slide plate resetting member is located in the limit through groove. A paper ejection through groove is arranged on the bottom of the slide plate limit plate. The paper ejection base is located in the paper ejection through groove.
[0020] Implementing the above technical solution, the provision of the limit through slot provides sufficient reset travel space for the skateboard reset member, and the paper feeding through slot provides assembly space for the paper feeding seat.
[0021] In an embodiment of the present invention, a detection method using the multifunctional health detector includes:
[0022] A processor of the multifunctional detection unit, a communication unit responsive to the processor, and a test strip detection unit for detecting the insertion duration of the test strip.
[0023] The test strip detection unit sets a preset detection duration as the first duration. When the insertion duration of the test strip is greater than the first duration, the processor transmits a timeout signal to the communication unit, and the communication unit issues a signal to prompt that the test strip is inserted for too long. Or when the insertion duration of the test strip is less than the first duration, the communication unit issues a signal to prompt that the insertion duration of the test strip is insufficient.
[0024] It further includes a prompting unit for prompting to pull out the test strip after the health detector completes the detection. The prompting unit prompts that the test strip detection is completed and the test strip can be replaced after the processor completes the test strip identification content.
[0025] Implementing the above technical solution, in order to better control the insertion duration of the test strip after the test strip is inserted into the test strip seat and thus obtain the most accurate detection data, the test strip detection unit sets a preset detection duration as the first duration. According to the length of the test strip insertion time, the processor transmits a timeout signal to the communication unit, and the communication unit issues a signal to prompt that the test strip is inserted for too long or the insertion duration is insufficient, thereby being able to avoid errors in the test strip detection results and improve the detection accuracy.
[0026] As described above, a multifunctional health detector and a detection method of the present invention have the following beneficial effects: Setting the opening of the paper feeding seat facing the test strip seat can facilitate the insertion of the test strip into the test strip seat, and the paper feeding seat plays an auxiliary supporting role for the test strip, thereby ensuring the stability of the test strip during the detection process. The test strip detection unit sets a preset detection duration as the first duration. According to the length of the test strip insertion time, the processor transmits a timeout signal to the communication unit, and the communication unit issues a signal to prompt that the test strip is inserted for too long or the insertion duration is insufficient, thereby being able to avoid errors in the test strip detection results and improve the detection accuracy. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 It shows a schematic structural diagram of the multifunctional health detector disclosed in the embodiment of the present invention.
[0028] Figure 2 It shows a schematic structural diagram of the skateboard limit plate of the multifunctional health detector disclosed in the embodiment of the present invention.
[0029] Figure 3 It shows a schematic structural diagram of the slide reset part of the multi-functional health detector disclosed in the embodiment of the present invention.
[0030] Figure 4 It shows a schematic structural diagram of the test strip holder of the multi-functional health detector disclosed in the embodiment of the present invention.
[0031] Figure 5 It shows a schematic structural diagram of the paddle base of the multi-functional health detector disclosed in the embodiment of the present invention.
[0032] Figure 6 It shows a schematic structural diagram of the paddle slot of the multi-functional health detector disclosed in the embodiment of the present invention.
[0033] Description of component numbers
[0034] 1. Test strip part; 2. Housing; 3. Test strip holder; 4. Paper feeding seat; 5. Paper feeding chute; 6. Paper feeding slider; 7. Test strip paddle; 8. Component cavity; 9. Paddle base; 10. Paddle slot; 11. Limit base; 12. Base chute; 13. Chute guide; 14. Slider guide; 15. Paper feeding slide; 16. Slide limit plate; 17. Slide reset part; 18. Limit through slot; 19. Paper feeding through slot. Specific embodiments
[0035] The following specific embodiments illustrate the implementation manners of the present invention. Those skilled in the art can easily understand other advantages and effects of the present invention from the content disclosed in this specification. It should be noted that, without conflict, the following embodiments and the features in the embodiments can be combined with each other.
[0036] Please refer to Figures 1 to 6 , the present invention provides a multi-functional health detector, including a display screen provided on the housing 2, control buttons provided on the housing 2 below the display screen, and further including a test strip part 1 provided on the housing 2 below the control buttons. A test strip holder 3 is provided inside the test strip part 1. The test strip holder 3 is fixed inside the test strip part 1. A slidable paper feeding seat 4 is provided below the test strip holder 3. The paper feeding seat 4 is a U-shaped paper feeding seat 4. The opening of the paper feeding seat 4 faces the test strip holder 3. Paper feeding chutes 5 are opened on the side surfaces on both sides of the test strip holder 3. A paper feeding slider 6 is provided at the top of the open end of the paper feeding seat 4. The paper feeding slider 6 extends horizontally into the paper feeding chute 5. A test strip paddle 7 is provided inside the test strip holder 3. When the test strip is inserted into the test strip holder 3, the test strip paddle 7 abuts against the test strip. A multi-functional detection unit is provided inside the component cavity 8.
[0037] By fixing the test strip holder 3 inside the test strip part 1, when it is necessary to remove the test strip, the slidable paper ejection seat 4 under the test strip holder 3 moves downward to push the test strip in the test strip holder 3 out of the test strip holder 3. Setting the opening of the paper ejection seat 4 facing the test strip holder 3 can facilitate the insertion of the test strip into the test strip holder 3, and the paper ejection seat 4 plays an auxiliary supporting role for the test strip, thereby ensuring the stability of the test strip during the detection process. Retracting chute 5 is provided on the side surfaces on both sides of the test strip holder 3. The retracting chute 5 can play a guiding role in inserting the test strip into the test strip holder 3 and limit the displacement of the test strip in the horizontal direction, so that the test strip slider 7 and the test strip can better abut against each other to obtain more stable test strip information. By extending the paper ejection slider 6 horizontally into the retracting chute 5, it can cooperate with the retracting chute 5 to play a guiding role for the test strip and also facilitate pushing the test strip out of the test strip holder 3.
[0038] A slider base 9 is provided at the top of the test strip chamber. The slider base 9 extends downward along the vertical direction out of the test strip chamber. And there is a gap between the paper ejection slider 6 and the bottom surface of the slider base 9. By extending the slider base 9 downward along the vertical direction out of the test strip chamber, it can facilitate the assembly of the test strip slider 7, provide assembly positioning for the test strip slider 7, and can improve the contact convenience between the test strip slider 7 and the test strip. Setting a gap between the paper ejection slider 6 and the bottom surface of the slider base 9 can prevent the slider base 9 from affecting the sliding space of the paper ejection slider 6 during the paper ejection process.
[0039] Multiple groups of slider slots 10 are provided on the slider base 9. The test strip sliders 7 are respectively inserted into the slider slots 10. And the test strip sliders 7 extend downward out of the slider slots 10. There is a gap between the lower side of the test strip sliders 7 extending out of the slider slots 10 and the paper ejection seat 4. By providing multiple groups of slider slots 10, it can facilitate the assembly of the test strip sliders 7 on the slider base 9. There is a gap between the lower side of the test strip sliders 7 extending out of the slider slots 10 and the paper ejection seat 4, which can provide an insertion space for the insertion of the test strip and can facilitate the contact stability between the test strip sliders 7 and the test strip, thereby improving the detection stability.
[0040] Limit bases 11 are provided at the bottoms on both sides of the test strip holder 3. Base chutes 12 are provided on the paper ejection seat 4. The limit bases 11 and the base chutes 12 are in sliding fit. The base chute 12 is a base chute 12 with a Y-shaped cross-section. The limit bases 11 extend into the bottom of the base chutes 12. By making the limit bases 11 and the base chutes 12 in sliding fit, it can improve the sliding stability of the paper ejection seat 4 on the test strip holder 3. Setting the base chute 12 to have a Y-shaped cross-section can further limit the sliding reliability between the paper ejection seat 4 and the test strip holder 3 and reduce the displacement of the paper ejection seat 4 in the horizontal and vertical directions at the same time.
[0041] A chute guide platform 13 is arranged at the open end on the outer side of the paper discharge chute 5. The chute guide platforms 13 are arranged symmetrically up and down in the paper discharge chute 5, and the chute guide platforms 13 are arranged in an open manner away from the paper discharge chute 5. A slider guide platform 14 is arranged on the side of the paper discharge slider 6 close to the paper discharge chute 5. The cross-section of the slider guide platform 14 is trapezoidal, and the short side of the slider guide platform 14 is arranged on the side close to the paper discharge chute 5. By arranging the chute guide platforms 13 symmetrically up and down, the chute guide platforms 13 can be in a horn shape, so as to facilitate the insertion of the paper discharge slider 6 into the paper discharge chute 5. And a slider guide platform 14 is arranged on the side of the paper discharge slider 6 close to the paper discharge chute 5, which can provide guiding treatment when the paper discharge slider 6 is inserted into the paper discharge chute 5, further improving the convenience during assembly. The cross-section of the slider guide platform 14 is trapezoidal, and the short side of the slider guide platform 14 is arranged on the side close to the paper discharge chute 5, which can reduce the friction area between the paper discharge slider 6 and the paper discharge chute 5, thus prolonging the service life of the paper discharge slider 6.
[0042] A paper discharge slide plate 15 is slidably connected in the test paper part 1. A slide plate limiting plate 16 covering the paper discharge slide plate 15 is also arranged in the test paper part 1. A slide plate resetting part 17 is arranged at the top of the slide plate limiting plate 16. The slide plate limiting plate 16 is connected to the housing 2 at the test paper part 1 by bolts. There is a gap between the slide plate limiting plate 16 and the housing 2, and the paper discharge slide plate 15 is located in the gap space. The paper discharge slider 6 is arranged on the paper discharge slide plate 15, and the paper discharge slider 6 moves with the paper discharge slide plate 15. By arranging a slide plate limiting plate 16 covering the paper discharge slide plate 15 in the test paper part 1, the sliding stability of the paper discharge slide plate 15 in the housing 2 can be improved. And by arranging a gap between the slide plate limiting plate 16 and the housing 2 and the paper discharge slide plate 15 being located in the gap space, enough sliding space can be reserved for the paper discharge slide plate 15, thus ensuring the smoothness of the paper discharge action. The slide plate resetting part 17 can reset the paper discharge slide plate 15 after paper discharge, and further ensure the stability of subsequent test paper detection.
[0043] A limiting through groove 18 is arranged at the top of the slide plate limiting plate 16. The slide plate resetting part 17 is located in the limiting through groove 18. A paper discharge through groove 19 is arranged at the bottom of the slide plate limiting plate 16. The paper discharge seat 4 is located in the paper discharge through groove 19. The arrangement of the limiting through groove 18 provides sufficient reset stroke space for the slide plate resetting part 17, and the paper discharge through groove 19 provides assembly space for the paper discharge seat 4.
[0044] A detection method using the multifunctional health detector described above, including a processor responsive to the multifunctional detection unit, a communication unit responsive to the processor, and a test strip detection unit for detecting the insertion duration of the test strip. The test strip detection unit sets a preset detection duration as the first duration. When the insertion duration of the test strip is greater than the first duration, the processor transmits a timeout signal to the communication unit, and the communication unit issues a signal to prompt that the test strip insertion is timed out. Or when the insertion duration of the test strip is less than the first duration, the communication unit issues a signal to prompt that the insertion duration of the test strip is insufficient.
[0045] It further includes a prompting unit for prompting to pull out the test strip after the health detector completes the detection. The prompting unit prompts that the test strip detection is completed and the test strip can be replaced after the processor completes the test strip identification content.
[0046] In order to better control the insertion duration of the test strip after the test strip is inserted into the test strip holder 3, and thus obtain the most accurate detection data, the test strip detection unit sets a preset detection duration as the first duration. According to the length of the test strip insertion time, the processor transmits a timeout signal to the communication unit, and the communication unit issues a signal to prompt that the test strip insertion is timed out or the insertion duration is insufficient, so as to avoid errors in the test strip detection results and improve the detection accuracy.
[0047] In the present invention, the test strip detection unit sets a preset detection duration as the first duration. According to the length of the test strip insertion time, the processor transmits a timeout signal to the communication unit, and the communication unit issues a signal to prompt that the test strip insertion is timed out or the insertion duration is insufficient, so as to avoid errors in the test strip detection results and improve the detection accuracy.
[0048] The above embodiments are only illustrative of the principles and effects of the present invention, and are not used to limit the present invention. All equivalent modifications or changes made by those with ordinary knowledge in the technical field without departing from the spirit and technical ideas disclosed by the present invention shall still be covered by the claims of the present invention.
Claims
1. A multifunctional health detector, comprising a housing, a display screen is arranged on the housing, and control buttons are arranged on the housing below the display screen, characterized in that, It further includes: A test strip part, which is located on the housing below the control button. A test strip holder is arranged inside the test strip part, and the test strip holder is fixed inside the test strip part. A slidable paper ejection seat is arranged below the test strip holder. The paper ejection seat is a U-shaped paper ejection seat, and the opening of the paper ejection seat faces the test strip holder. Paper ejection chutes are opened on the side surfaces of both sides of the test strip holder. A paper ejection slider is arranged at the top of the open end of the paper ejection seat, and the paper ejection slider extends horizontally into the paper ejection chute. A test strip pusher is arranged inside the test strip holder. When the test strip is inserted into the test strip holder, the test strip pusher abuts against the test strip; A component cavity, in which a multi-functional detection unit is arranged.
2. The multi-functional health detector according to claim 1, characterized in that: A pusher base is arranged at the top of the test strip cavity and extends downward along the vertical direction out of the test strip cavity. Moreover, a space is provided between the paper ejection slider and the bottom surface of the pusher base.
3. The multi-functional health detector according to claim 1, wherein: Multiple groups of pusher slots are arranged on the pusher base, and the test strip pushers are respectively inserted into the pusher slots. Moreover, the test strip pushers extend downward out of the pusher slots, and a space is provided between the lower sides of the test strip pushers extending out of the pusher slots and the paper ejection seat.
4. The multifunctional health detector according to claim 1, wherein: Limit bases are arranged at the bottoms of both sides of the test strip holder. A base chute is arranged on the paper ejection seat, and the limit bases are slidably matched with the base chute. The base chute is a base chute with a Y-shaped cross-section, and the limit bases extend into the bottom of the base chute.
5. The multi-functional health detector according to claim 1, wherein: Chute guide platforms are arranged inside the open ends on the outer sides of the paper ejection chutes. The chute guide platforms are arranged symmetrically up and down in the paper ejection chutes. Moreover, the chute guide platforms are arranged in an open manner in a direction away from the paper ejection chutes. A slider guide platform is arranged on the side of the paper ejection slider close to the paper ejection chute. The cross-section of the slider guide platform is trapezoidal, and the short side part of the slider guide platform is arranged on the side close to the paper ejection chute.
6. The multi-functional health detector according to claim 1, wherein: A paper ejection slide plate is slidably connected inside the test strip part. A slide plate limit plate covering the paper ejection slide plate is also arranged inside the test strip part. A slide plate return member is arranged at the top of the slide plate limit plate. The slide plate limit plate is connected to the housing at the test strip part by bolts. A space is provided between the slide plate limit plate and the housing. Moreover, the paper ejection slide plate is located in the spaced space. The paper ejection slider is arranged on the paper ejection slide plate, and the paper ejection slider moves along with the paper ejection slide plate.
7. The multi-functional health detector according to claim 1, characterized in that: A limit through groove is arranged at the top of the slide plate limit plate, and the slide plate return member is located in the limit through groove. A paper ejection through groove is arranged at the bottom of the slide plate limit plate, and the paper ejection seat is located in the paper ejection through groove.
8. A detection method using the multi-functional health detector according to any one of claims 1-7, characterized in that: including, A processor responsive to the multi-functional detection unit, a communication unit responsive to the processor, and a test strip detection unit for detecting the insertion duration of the test strip, The test strip detection unit sets a preset detection duration as a first duration. When the insertion duration of the test strip is greater than the first duration, the processor transmits a timeout signal to the communication unit, and the communication unit issues a signal to prompt that the insertion of the test strip is timed out. Or when the insertion duration of the test strip is less than the first duration, the communication unit issues a signal to prompt that the insertion duration of the test strip is insufficient; It further includes a prompting unit for prompting to remove the test strip after the health instrument completes the detection. After the processor finishes identifying the content of the test strip, the prompting unit prompts that the test strip detection is completed and the test strip can be replaced.