Multifunctional detection equipment and use method thereof
By integrating the blood collection needle assembly, flip mechanism and blood pressure detection assembly, etc., multiple tests of urine microprotein, glycated hemoglobin, blood sugar and blood uric acid are integrated, which solves the problem of equipment operation in the existing technology and improves the convenience and efficiency of detection.
Patent Information
- Application Number
- CN202510799427.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-16
- Publication Date
- 2025-09-12
AI Technical Summary
In the existing technology, the detection of indicators such as urine microalbumin, glycated hemoglobin, blood glucose and blood uric acid requires multiple devices to be operated in batches, which increases the cost of use and reduces convenience, and cannot achieve integrated detection of multiple indicators.
A multifunctional testing device was designed, which integrates a blood collection needle assembly, a flipping mechanism, a buffer assembly, a blood pressure detection assembly and an integrated module. It can realize multiple tests through a single blood collection, including urine microprotein, glycated hemoglobin, blood glucose and blood uric acid, and supports information processing and transmission.
It integrates multiple tests for urine microprotein, glycated hemoglobin, blood glucose and blood uric acid, simplifies the operation process, improves ease of use and detection efficiency, and supports information storage and mobile terminal data transmission.
Smart Images

Figure CN120616477A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical devices, and in particular to a multifunctional detection device and a method for using the same. Background Art
[0002] As people pay more attention to health management, the demand for home medical devices is growing. A variety of portable home testing devices have appeared on the market, and the testing equipment has gradually evolved from single-function testing to integrated testing of multiple indicators. For example, Chinese patent application number CN201922180455.7 discloses a blood pressure and blood sugar meter, which integrates blood pressure and blood sugar functions into one device; Chinese patent application number CN202221430572.X discloses a three-in-one blood pressure, blood sugar, and uric acid testing machine, which integrates the three functions of blood pressure, blood sugar, and uric acid. However, in addition to blood pressure, blood sugar and uric acid indicators, urine microalbumin and glycated hemoglobin should not be ignored. Especially for patients with diabetes and kidney disease, regular testing of the above indicators is particularly important. However, at present, in order to detect these indicators, it is still necessary to purchase multiple testing devices and operate them separately at multiple times, which not only increases the cost of use, but also reduces the convenience of use. Therefore, there is an urgent need on the market for a multifunctional testing device that can detect urine microalbumin, glycated hemoglobin, blood sugar level, blood uric acid and blood pressure. Summary of the Invention
[0003] Therefore, the technical problem to be solved by the present invention is to overcome the defects in the prior art, thereby providing a multifunctional detection device and a method for using the same.
[0004] A multifunctional detection device comprising: The housing is provided with a first test paper socket for inserting a urine test paper, a second test paper socket for inserting a double test paper, and a third test paper socket for inserting a glycosylated hemoglobin test card, and the housing is also provided with a finger placement cavity; The blood collection needle assembly is slidably arranged in the blood collection needle assembly cavity inside the housing and is locked and fixed by a locking mechanism. The blood collection needle assembly cavity is connected to the finger placement cavity. The second test paper socket is arranged directly below the finger placement cavity, so that after the dual test paper is inserted into the second test paper socket, the blood collection end of the dual test paper is located in the center of the finger placement cavity; The flip mechanism is arranged in a flip mechanism cavity inside the housing, the flip mechanism cavity is connected to the finger placement cavity, a sampler is detachably connected to the flip mechanism, the flip mechanism cavity has an arc-shaped cross-section, the third test paper socket is connected to the flip mechanism cavity, so that the sample addition area on the upper surface of the glycated hemoglobin test card is located in the flip mechanism cavity, and the sampler can be flipped from the blood collection end of the dual test paper to the sample addition area of the glycated hemoglobin test card through the flip structure; A buffer solution component is provided in the buffer solution component, a buffer solution channel is provided on the housing, the buffer solution component is detachably connected to one end of the buffer solution channel, and the other end of the buffer solution channel corresponds to the liquid addition area of the glycated hemoglobin test card; Blood pressure detection component; the blood pressure detection component is installed on one side of the shell; The integrated module is integrated inside the shell and is used for testing blood pressure, blood sugar, glycosylated hemoglobin, urine microalbumin and blood uric acid, and is also used for information processing, information storage and transmission of information to mobile terminals.
[0005] Furthermore, the blood collection needle assembly further comprises: a blood collection needle fixing member, a first spring and a blood collection handle; The lancet fixing piece is slidably arranged in the lancet assembly cavity, and the lancet is detachably connected to the lancet fixing piece. An annular groove is provided at the end of the lancet fixing piece away from the lancet, and a first spring is provided at the annular groove position. The lancet fixing piece extends to the outside of the shell and is fixedly connected to the lancet handle.
[0006] Furthermore, the locking mechanism includes a pressing handle, an L-shaped plate, a locking column and a second spring; The locking mechanism is slidably arranged in the locking mechanism groove inside the shell, the L-shaped plate is fixedly connected to the external handle, the bottom surface of the L-shaped plate is connected to the second spring, and a locking column is provided on the bottom edge of the L-shaped plate, and the locking column is cooperated and connected with the locking hole provided at the bottom of the blood collection needle fixing part.
[0007] Furthermore, the buffer assembly includes a first buffer assembly and a second buffer assembly, and the buffer channel is specifically a Y-shaped channel, the first buffer assembly and the second buffer assembly are detachably connected to the two inlets of the Y-shaped channel, and the outlet of the Y-shaped channel corresponds to the liquid addition area of the glycated hemoglobin test card; Both the first buffer solution component and the second buffer solution component are flexible tube bodies, and buffer solution A and buffer solution B are correspondingly arranged inside the two. Tough films are arranged at the outlets of the first buffer solution component and the second buffer solution component, and puncture components are correspondingly arranged at the two entrances of the Y-shaped channel. The puncture components are provided with puncture protrusions and multiple through holes.
[0008] Furthermore, the multifunctional detection device further comprises an extrusion assembly, which is arranged vertically to the blood collection needle assembly; The extrusion assembly includes a drive motor, a drive rod and an extrusion plate; the drive motor is fixedly connected to the inside of the shell, the output end of the drive motor is connected to one end of the drive rod, and the other end of the drive rod is fixedly connected to the extrusion plate. The extrusion plate is driven by the drive motor to perform reciprocating telescopic motion, and the working end of the extrusion plate cooperates with the side wall of the finger placement cavity to squeeze the finger.
[0009] Furthermore, the multifunctional detection device further includes a multimedia component fixedly connected to the housing; The multimedia component includes a display screen, control buttons, a microphone and a speaker.
[0010] Furthermore, the integrated module includes a central processing module, a blood glucose detection module, a blood uric acid detection module, an information storage module, a glycosylated hemoglobin detection module, a urine microprotein detection module, a blood pressure detection module, an early warning module and a communication module; The central processing module is connected to the blood glucose detection module, the blood uric acid detection module, the information storage module, the glycated hemoglobin detection module, the urine microprotein detection module, the blood pressure detection module, the early warning module, the communication module, the extrusion component and the multimedia component. The early warning module is also connected to the multimedia component and the communication module, and the communication module is also connected to the mobile terminal.
[0011] Furthermore, the flipping mechanism includes a rotating handle and a rotating shaft, one end of the rotating shaft is rotatably connected to the shell, the other end of the rotating shaft passes through the shell and is fixedly connected to the rotating handle, the sampler is detachably connected to the rotating shaft, and an anti-slip ring is provided at one end of the rotating shaft close to the rotating handle.
[0012] Furthermore, a buckle and a second magnetic attraction component are provided on one side of the housing; The buckle is used to fix the hose of the blood pressure detection component; The second magnetic component is used to be magnetically connected to the first magnetic component on the cuff of the blood pressure detection component.
[0013] The present invention also includes a method for using the multifunctional detection device, which is implemented based on the multifunctional detection device described above and includes: Insert the urine test strip, dual test strip, and glycated hemoglobin test card into the first test strip socket, the second test strip socket, and the third test strip socket in sequence, install the first buffer assembly and the second buffer assembly at the two entrances of the Y-shaped channel respectively, and install the blood collection needle and the sampler on the blood collection needle fixture and the rotating shaft respectively; Drop the test subject's urine onto the device, and the urine microprotein detection module will work to identify the test subject's urine microprotein value and transmit the data to the central processing module; The tester inserts his finger into the finger placement cavity, presses the locking mechanism to release the blood collection needle assembly to puncture one side of the finger, then resets the blood collection needle assembly and locks it through the locking mechanism, controls the squeezing assembly to squeeze the finger through the display screen or control buttons, and the blood drips to the sampling end of the sampler and the blood collection end of the dual test paper under the action of gravity, then controls the squeezing assembly to reset, squeezes the first buffer assembly to make the puncture assembly puncture the film, and buffer A drips along the Y-shaped channel to the liquid adding area of the glycated hemoglobin test card. After the sampling end of the sampler is fully sampled, the sampler is flipped by the flipping mechanism until the sampling end of the sampler is tightly fitted with the sample adding area of the glycated hemoglobin test card, and the second buffer assembly is squeezed to make buffer B drip along the Y-shaped channel to the liquid adding area of the glycated hemoglobin test card. The glycated hemoglobin detection module detects the glycated hemoglobin value; the blood glucose detection module and the blood uric acid detection module measure the blood glucose value and the blood uric acid value based on the blood sampled by the dual test paper, and transmit the measured blood glucose value and blood uric acid value to the central processing module; The blood pressure detection module measures the blood pressure value based on the information collected by the blood pressure detection component and transmits it to the central processing module; The central processing module transmits the measured urine microprotein value, glycated hemoglobin value, blood sugar value, blood uric acid value and blood pressure value to the communication module, early warning module and multimedia component, and the communication module sends the above values to the mobile terminal; the early warning module compares the urine microprotein value, glycated hemoglobin value, blood sugar value, blood uric acid value and blood pressure value with the corresponding health indicators to determine whether the value is abnormal, and transmits the abnormality result to the multimedia component, communication module and central processing module, and the central processing module transmits the measured urine microprotein value, glycated hemoglobin value, blood sugar value, blood uric acid value and blood pressure value and the result of whether each value is abnormal to the information storage module for storage.
[0014] The technical solution of the present invention integrates the detection of urine microprotein, glycated hemoglobin, blood sugar, blood uric acid and blood pressure into one device for the first time, and through the structural setting of the blood collection needle assembly and the flipping mechanism and the reasonable arrangement of the positions of the second test paper socket and the third test paper socket, the purpose of multiple tests in one blood collection is achieved. The finger placement cavity is used to ensure that the position of the finger corresponds to the blood collection end of the dual test paper and the sampling end of the sampler. The squeezing assembly is used to further squeeze the finger to ensure sufficient bleeding volume, avoiding the situation where insufficient bleeding makes detection impossible. The internal integrated module can realize the command control and information query functions of the multimedia component and the mobile terminal for this multifunctional detection device. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the specific embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0016] Figure 1 is a cross-sectional view of the present invention; Figure 2 A top view of the present invention; Figure 3 It is a structural diagram of the locking mechanism; Figure 4 It is a structural diagram of the integrated module; Figure 5 This is a structural diagram of the central processing module.
[0017] Description of reference numerals: 1-housing; 2-first test paper socket; 3-second test paper socket; 4-sampler; 5- flip mechanism; 6- third test paper socket; 7- puncture component; 8- integrated module; 9-film; 10-buffer component; 10.1-first buffer component; 10.2-second buffer assembly; 11-first opening mechanism; 12-finger placement cavity; 13-Blood collection needle; 14-Second opening mechanism; 15-Locking mechanism; 15.1-Press handle; 15.2-L-shaped plate; 15.3-locking column; 16-first elastic mechanism; 17-blood collection needle fixing piece; 18-rubber hose; 19-cuff; 20-first magnetic component; 21-clip; 22-second magnetic component; 23-multimedia component; 24-rotating handle; 25-blood collection handle; 26-second elastic mechanism; 27-squeezing assembly; 28-Central processing module; 28.1-Information acquisition module; 28.2-Control module; 29-blood glucose detection module; 30-blood uric acid detection module; 31-double test strips; 32-information storage module; 33-glycosylated hemoglobin detection module; 34-Glycated hemoglobin test card; 35-Urine test strip; 36-Urine trace protein detection module; 37-blood pressure detection module; 38-early warning module; 39-communication module; 40-mobile terminal. DETAILED DESCRIPTION
[0018] The technical solution of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.
[0019] In the description of the present invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limitations on the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0020] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed, detachable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.
[0021] In addition, the technical features involved in the different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.
[0022] See also Figures 1 to 4 , a multifunctional detection device, comprising: The housing 1 is provided with a first test strip socket 2 for inserting a urine test strip 34, a second test strip socket 3 for inserting a dual test strip 30, and a third test strip socket 6 for inserting a glycated hemoglobin test card 33, and the housing 1 is also provided with a finger placement cavity 12; The blood collection needle assembly; the blood collection needle assembly is slidably arranged in the blood collection needle assembly cavity inside the shell 1 and is locked and fixed by the locking mechanism 15. The blood collection needle assembly cavity is connected to the finger placement cavity 12 to fully ensure that the working end of the blood collection needle assembly can extend into the finger placement cavity 12 to perform the finger puncture step. By providing an opening or an openable flip cover structure on the side of the shell 1, the upper surface of the dual test paper 3 is pressed and pushed to insert it into the second test paper socket 3. The second test paper socket 3 is arranged just below the finger placement cavity 12. After the dual test paper 30 is inserted into the second test paper socket 3, the blood collection end of the dual test paper 30 is located at the center of the finger placement cavity 12, ensuring that after blood collection, the blood can accurately drip to the blood collection end position of the dual test paper 30; The flip mechanism 5 is arranged at the flip mechanism cavity inside the shell 1, and the flip mechanism cavity is connected to the finger placement cavity 12. The sampler 4 is detachably connected to the flip mechanism 5. The cross-section of the flip mechanism cavity is arc-shaped, which can fully ensure that there is sufficient flipping space for the sampler 4 inside the shell 1. The third test paper socket 6 is connected to the flip mechanism cavity, so that the sample addition area on the upper surface of the glycated hemoglobin test card 33 is located in the flip mechanism cavity. When the sampler 4 is located at the leftmost or rightmost side, the sampling end of the sampler 4 corresponds to the blood collection end of the dual test paper 30 and the sample addition area of the glycated hemoglobin test card 33; the sampler 4 can be flipped from the blood collection end of the dual test paper 30 to the glycated hemoglobin test card 33 through the flip structure 5. The sampling area of the card 33; after blood is collected by the blood collection needle assembly, the blood is used to drip to the sampling end of the sampler 4 and the blood collection end of the double test paper 30 under the action of gravity. After the sampling end of the sampler 4 collects a sufficient amount of blood, the sampling end of the sampler 4 is tightly fitted with the sampling area of the glycated hemoglobin test card 33 through the flipping mechanism 5, and then the subsequent detection steps are carried out; through the above operation, the values of blood sugar, blood uric acid and urine trace protein can be measured simultaneously in one blood collection, avoiding the process of multiple blood collections; when the sampler 4 needs to be replaced, the first opening mechanism 11 needs to be opened, and then the sampler 4 needs to be removed from the flipping mechanism 5, and the new sampler 4 needs to be installed on the flipping mechanism 5, and the first opening mechanism 11 needs to be closed.
[0023] Buffer assembly 10; a buffer is provided in the buffer assembly 10, a buffer channel is provided on the housing 1, the buffer assembly 10 is detachably connected to one end of the buffer channel, and the other end of the buffer channel corresponds to the liquid addition area position of the glycated hemoglobin test card 33; Blood pressure detection component; the blood pressure detection component is installed on one side of the housing 1; Integrated module 8, integrated inside housing 1, for testing blood pressure, blood sugar, glycosylated hemoglobin, urine microalbumin, and blood uric acid, and for information processing, information storage, and information transmission to mobile terminal 39; Please continue reading Figure 1 and Figure 2 In this embodiment, the blood collection needle assembly further includes: a blood collection needle fixing member 17, a first spring 16 and a blood collection handle 25; The blood collection needle fixing part 17 is slidably arranged in the lancet assembly cavity, and the blood collection needle 13 is detachably connected to the blood collection needle fixing part 17. The detachable connection can be in various forms such as plug-in or clip-on connection. The end of the blood collection needle fixing part 17 away from the blood collection needle 13 is provided with a ring groove, and a first spring 16 is provided at the position of the ring groove. The blood collection needle fixing part 17 extends to the outside of the shell 1 and is fixedly connected to the blood collection handle 25; by pulling the blood collection handle 25, the blood collection handle 25 drives the blood collection needle fixing part 17 to squeeze the first spring Spring 16, and locked by locking mechanism 15. When blood collection is needed, the locking mechanism 15 is unlocked, and the blood collection needle fixing member 17 and the blood collection needle 13 are pushed toward the finger placement cavity 12 under the elastic force of the first spring 16; when the blood collection needle 13 needs to be installed or removed, the second opening mechanism 14 located above the blood collection needle 13 must be opened first, the used blood collection needle 13 must be removed from the blood collection needle fixing member 17, a new blood collection needle 13 must be replaced and the two must be fixed again, and then the second opening mechanism 14 must be closed.
[0024] Please continue reading Figures 1 to 3 In this embodiment, the locking mechanism 15 includes a pressing handle 15.1, an L-shaped plate 15.2, a locking column 15.3 and a second spring 26; The locking mechanism 15 is slidably arranged in the locking mechanism groove inside the housing 1, the L-shaped plate 15.2 is fixedly connected to the external handle 15.1, the bottom surface of the L-shaped plate 15.2 is connected to the second spring 26, and a locking column 15.3 is provided on the bottom edge of the L-shaped plate 15.2. The locking column 15.3 is matched with the locking hole provided at the bottom of the blood collection needle fixing part 17; in the locked state, under the elastic force of the second spring 26, the locking column 15.3 on the bottom edge of the L-shaped plate 15.2 is connected to the bottom of the blood collection needle fixing part 17 The locking hole at the bottom of the lancet holder 17 is connected so that the lancet holder 17 cannot move forward. When blood sampling is required, the locking column 15.3 is disengaged from the locking hole by pressing the pressing handle 15.1, and the lancet holder 17 is unlocked and moves forward. At this time, the second spring 26 is in a compressed state. After blood sampling is completed, the lancet handle 25 is pulled. When the locking hole at the bottom of the lancet holder 17 corresponds to the position of the locking column 15.3, the locking column 15.3 is automatically inserted into the locking hole under the elastic force of the second spring 26 to achieve quick locking.
[0025] Please continue reading Figure 1 and Figure 2In this embodiment, the buffer assembly 10 includes a first buffer assembly 10 and a second buffer assembly 11, and the buffer channel is specifically a Y-shaped channel. The first buffer assembly 10 and the second buffer assembly 11 are detachably connected to the two inlets of the Y-shaped channel. The detachable connection can be a snap connection, a threaded connection, or other forms of detachable connection. The outlet of the Y-shaped channel corresponds to the liquid adding area of the glycated hemoglobin test card 33. The first buffer component 10 and the second buffer component 11 are both flexible tube bodies, and buffer A and buffer B are correspondingly arranged inside the two. A tough film 9 is provided at the outlet of the first buffer component 10 and the second buffer component 11. The film 9 can be a polyethylene film. A puncture component 7 is correspondingly provided at the two entrances of the Y-shaped channel. The puncture component 7 is provided with a puncture protrusion and a plurality of through holes. By squeezing the first buffer component 10 and the second buffer component 11, the film 9 expands downward and bursts under the action of pressure, or expands downward and then contacts the puncture protrusion and is punctured. Buffer A and buffer B flow into the Y-shaped channel through the through holes on the puncture component 7.
[0026] Please continue reading Figure 1 and Figure 2 In this embodiment, the multifunctional detection device further includes an extrusion assembly 27, and the extrusion assembly 27 is arranged vertically to the blood collection needle assembly; The squeezing assembly 27 includes a drive motor, a drive rod and a squeezing plate; the drive motor is fixedly connected to the inside of the shell 1, the output end of the drive motor is connected to one end of the drive rod, and the other end of the drive rod is fixedly connected to the squeezing plate. The squeezing plate is driven by the drive motor to perform reciprocating telescopic motion, and the working end of the squeezing plate cooperates with the side wall of the finger placement cavity 12 to squeeze the finger. The squeezing of the finger by the squeezing assembly 27 can ensure that sufficient blood flows out of the finger, avoiding the situation where measurement cannot be made due to insufficient blood.
[0027] Please continue reading Figure 1 and Figure 2 In this embodiment, the flip mechanism 5 includes a rotating handle 24 and a rotating shaft. One end of the rotating shaft is rotatably connected to the shell 1, and the other end of the rotating shaft passes through the shell 1 and is fixedly connected to the rotating handle 24. The sampler 4 is detachably connected to the rotating shaft, and an anti-slip ring is provided at one end of the rotating shaft close to the rotating handle 24. During actual use, the rotating shaft can perform telescopic reciprocating motion within a small range inside the shell 1, so that the sampler 4 can be repeatedly moved to the position where the blood drips, so that the sampling end of the sampler 4 can be stained with blood to achieve a better sampling effect.
[0028] Please continue reading Figure 1 and Figure 2 , in this embodiment, it also includes a multimedia component 23 fixedly connected to the housing 1; The multimedia component 23 includes a display screen, control buttons, a microphone and a speaker. The display screen is used to display the current device status, various indicator values, operation options and other contents. The multifunctional detection device can also be controlled by a touch screen. The control buttons are used to perform command operations. At the same time, a voice control system can be integrated inside the multifunctional detection device, and the device can be controlled by a microphone. The speaker is used to broadcast commands, test results and other content.
[0029] See also Figures 1 to 5 In this embodiment, the integrated module 8 includes a central processing module 28, a blood glucose detection module 29, a blood uric acid detection module 30, an information storage module 32, a glycated hemoglobin detection module 33, a urine microprotein detection module 36, a blood pressure detection module 37, an early warning module 38 and a communication module 39; The central processing module 28 includes an information acquisition module 28.1 and a control module 28.2. The central processing module 28 is connected to the blood glucose detection module 29, the blood uric acid detection module 30, the information storage module 32, the glycated hemoglobin detection module 33, the urine microprotein detection module 36, the blood pressure detection module 37, the early warning module 38, the communication module 39, the extrusion component 27 and the multimedia component 23. The early warning module 38 is also connected to the multimedia component 23 and the communication module 39. The communication module 39 is also connected to the mobile terminal 40.
[0030] The central processing module 28 reads the urine microprotein value, glycosylated hemoglobin value, blood sugar value, blood uric acid value and blood pressure value and feeds back the value to the early warning module 38, the communication module 39 and the multimedia component 23; the early warning module 38 compares the measured value with the health value to determine whether the value is abnormal, and feeds back the result to the communication module 39, the multimedia component 23 and the central processing module 28, and the central processing module stores the result of whether it is abnormal and the measured values of each indicator in the information storage module 32; the multimedia component 23 broadcasts and displays the values of each indicator detected and whether the value is abnormal; the communication module 39 broadcasts and displays the values of each indicator and the results of whether the value is abnormal. The abnormal result is transmitted to the mobile terminal 40. The tester can view the measurement results on the app or applet of the mobile terminal 40. At the same time, he can obtain information such as suggestions on the current health status based on the test results through the Internet. At the same time, the app or applet of the mobile terminal 40 can directly send control instructions to the communication module 39. The communication module 39 transmits the control instructions to the control module 28.2. The control module 28.2 controls the corresponding components to perform actions such as opening or closing, such as controlling the squeezing component 27 to start or close the finger squeezing work; the multimedia component 23 broadcasts the test results of various indicators and whether the results are abnormal, and displays the specific values and results on the display screen.
[0031] The early warning module 38 sets safety ranges for each indicator based on the indicators. For example, for diabetic patients, fasting blood sugar levels are controlled within 4.4-7.0 mmol / L, and two-hour postprandial blood sugar levels are controlled within 4.4-11.0 mmol / L. If blood sugar levels exceed the safety range for a sustained period (e.g., three consecutive measurements exceeding the standard) or if blood sugar levels fluctuate dramatically (e.g., a sudden rise or fall in blood sugar within a short period of time), the early warning module 38 issues a high-risk warning. The multimedia component 23 of the multifunctional detection device issues an alert, and the early warning module 38 simultaneously pushes information to the app or mini-program on the mobile terminal 40 via the communication module 39. The storage module 32 records the high-risk information. Normal blood pressure ranges are set as systolic pressure 90-139 mmHg and diastolic pressure 60-89 mmHg. For patients with hypertension, personalized blood pressure control targets are set based on the doctor's advice. When the blood pressure value continues to exceed the control target or the blood pressure fluctuates greatly, such as the systolic blood pressure suddenly rises by more than 30 mmHg, or the diastolic blood pressure suddenly rises by more than 20 mmHg, the early warning module 38 issues a high-risk warning, and the multimedia component 23 of the multifunctional detection device issues an early warning. At the same time, the early warning module 38 pushes information to the app or applet of the mobile terminal 40 through the communication module 39, and the storage module 32 records the high-risk information; the rest of the indicators are similar and will not be repeated here.
[0032] Please continue reading Figure 1 and Figure 4 In this embodiment, a buckle 21 and a second magnetic assembly 22 are provided on one side of the housing 1. The buckle 21 is used to secure the blood pressure monitoring assembly's hose 18. The second magnetic assembly 22 is used to magnetically connect with the first magnetic assembly 20 on the blood pressure monitoring assembly's cuff 19. The buckle 21 quickly secures the hose 18, while the first and second magnetic assemblies 20, 22 work together to secure the cuff 19, preventing the hose 18 and cuff 19 from falling apart.
[0033] In the above embodiment, the blood collection needle assembly and the flip structure 5 are set to a manual mode. In order to meet the requirements of intelligence and simple operation, the blood collection needle assembly and the flip structure 5 can be set together with the extrusion assembly 27 to be electrically controlled. Specifically, the telescopic motor can be used as the power source of the blood collection needle assembly to meet the telescopic requirements. At the same time, a connector for detachably connecting to the blood collection needle 13 is provided on the telescopic shaft of the telescopic motor. The telescopic motor is communicated with the central processing module 28, and the telescopic motor is controlled by the multimedia component 23 or the mobile terminal 40 to realize the blood collection function; the power source of the flip structure 5 can be a telescopic rotary motor, which can realize both the rotation function and the axial telescopic function, and the telescopic rotary motor can automatically lock and position after being turned off, thereby enhancing the stability of the flip structure 5. The telescopic rotary motor is communicated with the central processing module 28, and the telescopic rotary motor is controlled by the multimedia component 23 or the mobile terminal 40 to realize the sampler 4 to perform limited reciprocating motion and rotational motion in the axial direction; In actual use, the tester can use this multifunctional testing device to test each indicator separately according to their own needs, such as testing only blood pressure value, testing only urine microprotein, testing only glycated hemoglobin, testing only blood sugar or testing only blood uric acid; blood sugar and blood uric acid are tested by the double test strip 31 and will be tested together during the test, and the remaining indicators can be tested by the corresponding functional components; Please continue reading Figures 1 to 4 The present invention also includes a method for using the multifunctional detection device, which is implemented based on the multifunctional detection device described above and includes: Insert the urine test strip 34, the dual test strip 30, and the glycated hemoglobin test card 33 into the first test strip socket 2, the second test strip socket 3, and the third test strip socket 6 in sequence, install the first buffer assembly 10 and the second buffer assembly 11 at the two entrances of the Y-shaped channel respectively, and install the blood collection needle 13 and the sampler 4 on the blood collection needle fixture 17 and the rotating shaft respectively; The test subject's urine is dropped onto 34, and the urine microprotein detection module 36 works to identify the test subject's urine microprotein value and transmit the data to the central processing module 28; The tester inserts his finger into the finger placement cavity 12, presses the locking mechanism 15 to release the blood collection needle assembly to puncture one side of the finger, then resets the blood collection needle assembly and locks it through the locking mechanism 15, controls the squeezing assembly 27 to squeeze the finger through the display screen or control buttons, and the blood drips to the sampling end of the sampler 4 and the blood collection end of the double test paper 30 under the action of gravity, then controls the squeezing assembly 27 to reset, squeezes the first buffer assembly 10.1 to make the puncture assembly 7 puncture the film 9, and the buffer A drips along the Y-shaped channel to the liquid adding area of the glycated hemoglobin test card 33, and waits for sampling. After the sampling end of the sampler 4 has fully sampled, the sampler 4 is flipped by the flipping mechanism 5 until the sampling end of the sampler 4 is tightly attached to the sample addition area of the glycosylated hemoglobin test card 34. The second buffer component 10.2 is squeezed to cause the buffer B to drip along the Y-shaped channel into the liquid addition area of the glycosylated hemoglobin test card 33. The glycosylated hemoglobin detection module 33 detects the glycosylated hemoglobin value. The blood glucose detection module 29 and the blood uric acid detection module 30 measure the blood glucose value and the blood uric acid value based on the blood sampled by the dual test strips 31, and transmit the measured blood glucose value and blood uric acid value to the central processing module 28. The blood pressure detection module 37 measures the blood pressure value based on the information collected by the blood pressure detection component and transmits it to the central processing module 28; The central processing module 28 transmits the measured urine microprotein value, glycated hemoglobin value, blood sugar value, blood uric acid value and blood pressure value to the communication module 39, the early warning module 38 and the multimedia component 23, and the communication module 39 sends the above values to the mobile terminal 40; the early warning module 38 compares the urine microprotein value, glycated hemoglobin value, blood sugar value, blood uric acid value and blood pressure value with the corresponding health indicators to determine whether the value is abnormal, and transmits the abnormality result to the multimedia component 23, the communication module 39 and the central processing module 28, and the central processing module 28 transmits the measured urine microprotein value, glycated hemoglobin value, blood sugar value, blood uric acid value and blood pressure value and the result of whether each value is abnormal to the information storage module 32 for storage.
[0034] Obviously, the above embodiments are merely examples for clarity of explanation and are not intended to limit the implementation methods. Those skilled in the art will readily appreciate that other variations or modifications based on the above descriptions are possible. It is not necessary and impossible to enumerate all implementation methods here. Obvious variations or modifications arising therefrom remain within the scope of protection of the present invention.
Claims
1. A multifunctional detection device, characterized in that: include: A housing (1); the housing (1) is provided with a first test paper socket (2) for inserting a urine test paper (34), a second test paper socket (3) for inserting a double test paper (30), and a third test paper socket (6) for inserting a glycosylated hemoglobin test card (33), and the housing (1) is also provided with a finger placement cavity (12); A blood collection needle assembly; the blood collection needle assembly is slidably arranged in the blood collection needle assembly cavity inside the housing (1) and is locked and fixed by a locking mechanism (15); the blood collection needle assembly cavity is communicated with the finger placement cavity (12); the second test paper socket (3) is arranged directly below the finger placement cavity (12), so that after the double test paper (30) is inserted into the second test paper socket (3), the blood collection end of the double test paper (30) is located at the center of the finger placement cavity (12); A flip mechanism (5); the flip mechanism (5) is arranged at a flip mechanism cavity inside the housing (1), the flip mechanism cavity is communicated with the finger placement cavity (12), a sampler (4) is detachably connected to the flip mechanism (5), the flip mechanism cavity has an arc-shaped cross section, the third test paper socket (6) is communicated with the flip mechanism cavity, so that the sample addition area on the upper surface of the glycated hemoglobin test card (33) is located in the flip mechanism cavity, and the sampler (4) can be flipped from the blood collection end of the double test paper (30) to the sample addition area of the glycated hemoglobin test card (33) through the flip structure (5); A buffer component (10); a buffer solution is provided in the buffer component (10); a buffer solution channel is provided on the housing (1); the buffer component (10) is detachably connected to one end of the buffer solution channel; and the other end of the buffer solution channel corresponds to the position of the liquid addition area of the glycated hemoglobin test card (33); Blood pressure detection component; the blood pressure detection component is installed on one side of the housing (1); The integrated module (8) is integrated inside the housing (1) and is used for detecting blood pressure, blood sugar, glycosylated hemoglobin, urine microalbumin and blood uric acid, and is also used for information processing, information storage and information transmission to the mobile terminal (39).
2. A multifunctional detection device according to claim 1, characterized in that: The blood collection needle assembly further includes: a blood collection needle fixing member (17), a first spring (16) and a blood collection handle (25); The blood collection needle fixing member (17) is slidably arranged at the blood collection needle assembly cavity, and the blood collection needle (13) is detachably connected to the blood collection needle fixing member (17). An annular groove is provided at one end of the blood collection needle fixing member (17) away from the blood collection needle (13), and a first spring (16) is provided at the position of the annular groove. The blood collection needle fixing member (17) extends to the outside of the housing (1) and is fixedly connected to the blood collection handle (25).
3. A multifunctional detection device according to claim 2, characterized in that: The locking mechanism (15) comprises a pressing handle (15.1), an L-shaped plate (15.2), a locking column (15.3) and a second spring (26); The locking mechanism (15) is slidably arranged in a locking mechanism groove inside the housing (1); the L-shaped plate (15.2) is fixedly connected to the external handle (15.1); the bottom surface of the L-shaped plate (15.2) is connected to a second spring (26); a locking column (15.3) is arranged on the bottom edge of the L-shaped plate (15.2); the locking column (15.3) is cooperatively connected with a locking hole arranged at the bottom of the blood collection needle fixing member (17).
4. A multifunctional detection device according to claim 3, characterized in that: The buffer assembly (10) includes a first buffer assembly (10) and a second buffer assembly (11), and the buffer channel is specifically a Y-shaped channel. The first buffer assembly (10) and the second buffer assembly (11) are detachably connected to the two inlets of the Y-shaped channel, and the outlet of the Y-shaped channel corresponds to the liquid adding area of the glycated hemoglobin test card (33); The first buffer component (10) and the second buffer component (11) are both flexible tubes, and buffer A and buffer B are correspondingly arranged inside the two. A film (9) with toughness is arranged at the outlet of the first buffer component (10) and the second buffer component (11), and a puncture component (7) is correspondingly arranged at the two inlets of the Y-shaped channel. The puncture component (7) is provided with a puncture protrusion and a plurality of through holes.
5. A multifunctional detection device according to claim 4, characterized in that: It also includes an extrusion assembly (27), which is arranged vertically to the blood collection needle assembly; The extrusion assembly (27) includes a drive motor, a drive rod, and an extrusion plate; the drive motor is fixedly connected to the interior of the housing (1), the output end of the drive motor is connected to one end of the drive rod, and the other end of the drive rod is fixedly connected to the extrusion plate. The extrusion plate is driven by the drive motor to perform reciprocating telescopic motion, and the working end of the extrusion plate cooperates with the side wall of the finger placement cavity (12) to squeeze the finger.
6. A multifunctional detection device according to claim 5, characterized in that: Also included is a multimedia component (23) fixedly connected to the housing (1); The multimedia component (23) includes a display screen, control buttons, a microphone and a speaker.
7. A multifunctional detection device according to claim 6, characterized in that: The integrated module (8) includes a central processing module (28), a blood glucose detection module (29), a blood uric acid detection module (30), an information storage module (32), a glycosylated hemoglobin detection module (33), a urine microprotein detection module (36), a blood pressure detection module (37), an early warning module (38) and a communication module (39); The central processing module (28) is connected to the blood glucose detection module (29), the blood uric acid detection module (30), the information storage module (32), the glycated hemoglobin detection module (33), the urine microprotein detection module (36), the blood pressure detection module (37), the early warning module (38), the communication module (39), the extrusion component (27) and the multimedia component (23). The early warning module (38) is also connected to the multimedia component (23) and the communication module (39). The communication module (39) is also connected to the mobile terminal (40).
8. The multifunctional detection device according to claim 7, characterized in that: The flip mechanism (5) includes a rotating handle (24) and a rotating shaft, one end of the rotating shaft is rotatably connected to the housing (1), the other end of the rotating shaft passes through the housing (1) and is fixedly connected to the rotating handle (24), the sampler (4) is detachably connected to the rotating shaft, and an anti-slip ring is provided at one end of the rotating shaft close to the rotating handle (24).
9. The multifunctional detection device according to claim 8, characterized in that: A buckle (21) and a second magnetic attraction component (22) are provided on one side of the housing (1); The buckle (21) is used to fix the hose (18) of the blood pressure detection component; The second magnetic attraction component (22) is used for magnetic connection with the first magnetic attraction component (20) on the cuff (19) of the blood pressure detection component.
10. A method for using a multifunctional detection device, the method being implemented based on the multifunctional detection device according to claim 8, characterized in that: include: Insert the plug-in urine test paper (34), the double test paper (30) and the glycated hemoglobin test card (33) into the first test paper socket (2), the plug-in second test paper socket (3) and the plug-in third test paper socket (6) in sequence, install the first buffer component (10) and the second buffer component (11) at the two entrances of the Y-shaped channel respectively, and install the blood collection needle (13) and the sampler (4) on the blood collection needle fixing member (17) and the rotating shaft respectively; The test subject's urine is dropped onto (34), and the urine microprotein detection module (36) works to identify the test subject's urine microprotein value and transmit the data to the central processing module (28); The tester inserts his finger into the finger placement cavity (12), presses the locking mechanism (15) to release the blood collection needle assembly to puncture one side of the finger, then resets the blood collection needle assembly and locks it through the locking mechanism (15), controls the squeezing assembly (27) to squeeze the finger through the display screen or control buttons, and the blood drips to the sampling end of the sampler (4) and the blood collection end position of the double test paper (30) under the action of gravity, then controls the squeezing assembly (27) to reset, squeezes the first buffer assembly (10.1) to make the puncture assembly (7) puncture the film (9), and the buffer A drips along the Y-shaped channel to the liquid adding area of the glycated hemoglobin test card (33), and waits for sampling After the sampling end of the sampler (4) has fully sampled, the sampler (4) is flipped by the flipping mechanism (5) until the sampling end of the sampler (4) is tightly fitted with the sample addition area of the glycated hemoglobin test card (34), and the second buffer component (10.2) is squeezed to make the buffer solution B drip along the Y-shaped channel into the liquid addition area of the glycated hemoglobin test card (33), and the glycated hemoglobin detection module (33) detects the glycated hemoglobin value; the blood glucose detection module (29) and the blood uric acid detection module (30) measure the blood glucose value and the blood uric acid value based on the blood sampled by the double test paper (31), and transmit the measured blood glucose value and blood uric acid value to the central processing module (28); The blood pressure detection module (37) measures the blood pressure value based on the information collected by the blood pressure detection component and transmits it to the central processing module (28); The central processing module (28) transmits the measured urine microprotein value, glycated hemoglobin value, blood sugar value, blood uric acid value and blood pressure value to the communication module (39), the early warning module (38) and the multimedia component (23), and the communication module (39) sends the above values to the mobile terminal (40); the early warning module (38) compares the urine microprotein value, glycated hemoglobin value, blood sugar value, blood uric acid value and blood pressure value with the corresponding health indicators to determine whether the values are abnormal, and transmits the abnormality result to the multimedia component (23), the communication module (39) and the central processing module (28), and the central processing module (28) transmits the measured urine microprotein value, glycated hemoglobin value, blood sugar value, blood uric acid value and blood pressure value and the result of whether each value is abnormal to the information storage module (32) for storage.
Citation Information
Patent Citations
Blood pressure and blood sugar measuring instrument
CN211484552U
Three-in-one detection all-in-one machine for blood pressure, blood sugar and uric acid
CN219641724U