Urine detection cup for calculus self-inspection
By setting up multiple detection components and stirring components in the urine detection cup, the convenience of patient self-test and the accuracy of detection results are achieved, and the problem of existing urine detection cups cannot be self-tested and sampled contamination is solved, which improves the convenience and accuracy of detection.
Patent Information
- Application Number
- CN202422327034.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-09-24
AI Technical Summary
The existing urine test cups cannot achieve self-examination of patients, the sampling process is prone to contamination, and the test results are not accurate enough and inconvenient.
A urine detection cup including a cup holder, a cup body and a stirring assembly is designed. Multiple detection components are embedded in the middle of the cup body. The stirring assembly is arranged to stir the urine evenly, and samples are taken in the middle of the cup body. A detachable stirring head and transparent cup body are used for easy observation and self-testing.
It realizes the convenience of self-monitoring of patients, improves the accuracy and reliability of test results, reduces sample contamination and transfer errors, simplifies operational steps, and improves detection efficiency.
Smart Images

Figure CN223180212U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of stone detection, in particular to a urine test cup for self-detection of stones. Background Art
[0002] Kidney stones are a common kidney disease, which cause great harm to the health of patients. Kidney stones can cause a series of symptoms such as pain, urinary tract obstruction, and infection, and may even endanger the life of patients in severe cases. In order to better manage kidney stones, it is necessary to regularly check the stones. During the inspection process of stones, urine test cups are usually used.
[0003] However, the existing urine test cups have certain defects in the use process. The existing urine test cups only serve as urine collection containers. For the inspection of stones, it is still necessary to use test strips or other analytical instruments to process the urine in the urine test cup. The processing of urine samples also needs to be carried out in the hospital. Patients need to send the test cup filled with urine to the hospital for testing. Patients cannot perform self-detection of stones and cannot quickly understand the situation of stones in their bodies. The monitoring of their own stone conditions is not convenient enough. When sampling with the existing urine test cups, it is necessary to transfer urine samples, and the urine samples are easily contaminated during the transfer process, resulting in unreliable test results for the stone conditions. When the urine collected in the existing urine test cups is tested, the composition distribution in the urine is not uniform enough, resulting in inaccurate sampling test results. Summary of the Utility Model
[0004] In view of the problems in the prior art, the utility model provides a urine test cup for self-detection of stones.
[0005] The technical solution adopted by the utility model to solve its technical problems is: a urine test cup for self-detection of stones, including a cup holder, a cup body, and a stirring component. A plurality of detection components are equidistantly embedded in the middle of the cup wall of the cup body. By setting a plurality of detection components, multiple groups of detections can be carried out simultaneously. When the results obtained by different detection components tend to be consistent, the reliability of the detection results can be more firmly believed. In this urine test cup, the detection components are arranged in the middle of the cup wall of the cup body. When testing the urine in the cup body, sampling is taken from the middle of the cup body, which can avoid the concentration difference or impurity interference at the edge of the cup body. The cup body is of a transparent structure, and the transparent cup body is convenient for observing the detection process and results. The cup body is detachably fixed on the cup holder. A support cylinder is vertically fixed above the cup body at the top of the cup holder. The stirring component is arranged in the support cylinder. By setting the stirring component in this urine test cup, the urine to be sampled and tested can be stirred to make the various components in the urine more evenly distributed;
[0006] Among them, the stirring assembly includes a rotating cylinder and a stirring head. The rotating cylinder is rotationally fitted inside the support cylinder. The stirring head is detachably inserted at the bottom of the rotating cylinder, and the stirring head is located inside the cup body. The design of the detachable insertion of the stirring head can ensure the hygiene during the stirring process. After use, some urine components will remain on the stirring head. If not replaced in time, it may contaminate the subsequent urine samples. The design of the detachable insertion of the stirring head enables the used stirring head to be replaced in time, effectively avoiding the occurrence of contamination problems. The design of the detachable insertion of the stirring head not only facilitates the replacement of the stirring head.
[0007] Preferably, two "L"-shaped hanging plates are symmetrically arranged on the cup holder. Two lifting ears are symmetrically arranged near the top of the cup body. The cup body is hung on the two hanging plates of the cup holder through the two lifting ears. By setting the cup holder, on the one hand, placing the cup body on the cup holder can prevent the cup body from soiling the tabletop, making the urine test cup more hygienic to use. On the other hand, placing the cup body on the cup holder enables the user to more conveniently observe the urine situation in the cup body from various angles. On the other hand, the cup holder provides a unified platform for the detection operation, enabling the stirring and self-check operations to be carried out at a fixed position.
[0008] Preferably, bearings are fixed at both the upper and lower ends inside the support cylinder. The rotating cylinder is rotationally fitted inside the support cylinder through the two bearings.
[0009] Preferably, a rotating ring is fixed at the upper end inside the rotating cylinder. The rotating ring is in threaded cooperation with a screw rod. A handle is fixed at the top of the screw rod. The bottom end of the screw rod is connected with a return spring, and the return spring is located inside the rotating cylinder. By pressing down the screw rod with the handle, during the downward movement of the screw rod, the rotating ring will rotate, the rotating ring drives the rotating cylinder to rotate, and the rotating cylinder drives the stirring head to rotate to stir the urine in the cup body. A return spring is arranged at the bottom end of the screw rod. After the screw rod is pressed down to the lower side and the handle is released, under the action of the return spring, the screw rod moves upward, driving the rotating ring to rotate in the reverse direction, causing the stirring head to rotate in the reverse direction for stirring. The design of the return spring enables the stirring assembly to achieve continuous stirring of the stirring head only by pressing down. The structure of this stirring assembly is simple and easy to use and labor-saving.
[0010] Preferably, the detection component includes a sampling frame and a test strip. The sampling frame is a closed airbag structure with a hollow interior. The thickness of the sampling frame is the same as that of the cup body. The urine absorption area of the test strip is located inside the sampling frame. The part of the test strip other than the urine absorption area is embedded in the cup wall of the cup body, and the detection area and quality control area of the test strip are visible through the transparent cup body. A number of sampling cylinders that can extend into the cup body are arranged inside the sampling frame. The sampling frame adopts a closed airbag structure with a hollow interior, having certain elasticity and flexibility. When sampling is required, the airbag structure can be deformed by appropriate pressure, enabling the sampling cylinders to better contact the urine, improving the accuracy and sufficiency of sampling. The urine absorption area of the test strip is located inside the sampling frame, ensuring that the urine can be directly absorbed by the urine absorption area, reducing the loss and error during urine transmission, and improving the sensitivity and accuracy of detection. The part of the test strip other than the urine absorption area is embedded in the cup wall of the cup body, saving space and effectively protecting the test strip from external factors interfering with the test results. The detection area and quality control area of the test strip are visible through the transparent cup body. At the same time, the user can intuitively compare the color changes of the detection area and the quality control area. The number of sampling cylinders arranged inside the sampling frame can extend into the cup body, increasing the sampling area and depth, enabling a more comprehensive collection of urine samples, further improving the reliability of the test results. The design of multiple sampling cylinders can also avoid errors that may be caused by single-point sampling, making the test results more representative.
[0011] Preferably, an extrusion elastic piece is embedded on the outer side wall of the sampling frame. One end of a number of sampling cylinders is fixed at the top of the inner side of the extrusion elastic piece close to the inside of the sampling frame. The sampling cylinder has a hollow interior, and sampling holes and dropping holes are respectively opened at both ends of the sampling cylinder. Under the extrusion of the extrusion elastic piece, the end of the sampling cylinder with the sampling hole passes through the sampling frame and extends into the cup body. The sampling cylinder has a hollow interior and sampling holes and dropping holes are respectively opened at both ends, enabling the urine to enter the sampling cylinder through the sampling hole and drop out to the urine absorption area of the test strip. This design can reduce the loss and error during urine sampling, improving the accuracy of sampling. By setting the extrusion elastic piece, the sampling cylinders inside the sampling frame are extruded, enabling the sampling cylinders to send a small amount of urine in the cup body into the sampling frame. The design of the extrusion elastic piece can accurately control the urine sampling volume. In addition, through the design of the sampling frame and the extrusion elastic piece, it is not easy for the patient to get their fingers soiled by urine during self-examination.
[0012] The beneficial effects of the present utility model:
[0013] (1) A urine test cup for self-checking stones according to the present utility model. The urine test cup is provided with a cup body. After a patient collects urine into the cup body and places it on a cup rack, the urine in the cup body is stirred by a stirring component. After pressing an extrusion elastic sheet, a sampling cylinder is inserted into the interior of the cup body, so that the urine sample in the middle layer of the cup body enters into a sampling frame through the sampling cylinder and contacts a test strip in the sampling frame, causing the test strip to show a test result. The patient can directly obtain the urine test result for stones by observing the change of the test strip outside the cup body. Through this urine test cup, the patient can perform self-checking for stones, thereby enabling the patient to quickly understand the stone condition in the body, and thus improving the convenience of self-monitoring of the patient.
[0014] (2) A urine test cup for self-checking stones according to the present utility model. In this urine test cup, the detection component is arranged in the middle of the cup wall of the cup body. When detecting the urine in the cup body, sampling from the middle of the cup body can avoid the concentration difference or impurity interference at the edge of the cup body, and obtain a sample that can better reflect the overall situation of the urine, thereby further improving the accuracy of the test result.
[0015] (3) A urine test cup for self-checking stones according to the present utility model. Embedding the detection component in the middle of the cup body is conducive to realizing an integrated design, reducing the influence of external factors on the detection process. This compact structural design makes the entire detection process more convenient and efficient. At the same time, it also reduces the possible errors and contamination risks during the transfer of the sample. In addition, the design of sampling from the middle of the cup body helps to improve the stability and repeatability of the detection. In multiple detections, sampling from the middle can provide relatively stable sample conditions, making the test results have better consistency and reliability, providing a more valuable reference basis for doctors' diagnosis and patients' self-monitoring.
[0016] (4) A urine test cup for self-checking stones according to the present utility model. The urine test cup is provided with a stirring component, which can stir the urine to be sampled and detected, making various components in the urine more evenly distributed, thereby further improving the accuracy and reliability of the detection.
[0017] (5) A urine test cup for stone self - detection according to the present utility model, wherein the sampling area of the test strip is located inside the sampling frame, ensuring that urine can be directly absorbed by the sampling area, reducing the loss and error of urine during transmission, improving the sensitivity and accuracy of detection. The part of the test strip other than the sampling area is embedded in the cup wall of the cup body, which not only saves space but also effectively protects the test strip, avoiding interference from external factors on the test results. The test area and quality control area of the test strip are visible through the transparent cup body, facilitating the user to directly observe the test results without taking out the test strip, simplifying the operation steps, improving the detection efficiency. At the same time, the user can intuitively compare the color changes of the test area and the quality control area, so as to quickly judge whether there are stone - related components in the urine. Description of the Drawings
[0018] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0019] Figure 1 It is a schematic diagram of the overall structure of a preferred embodiment of a urine test cup for stone self - detection provided by the present utility model.
[0020] Figure 2 It is a cross - sectional view of the cup body of the present utility model.
[0021] Figure 3 For the present utility model Figure 2 The enlarged detail view of area A.
[0022] Figure 4 It is a schematic diagram of the structure of the detection component of the present utility model.
[0023] Figure 5 It is a schematic diagram of the connection structure between the sampling cylinder and the extrusion elastic sheet of the present utility model.
[0024] Figure 6 It is a schematic diagram of the structure of the stirring component of the present utility model.
[0025] Figure 7 It is a schematic diagram of the structure of the screw rod of the present utility model.
[0026] In the figure: 1, cup holder; 101, hanging plate; 2, cup body; 201, lifting ear; 3, detection component; 301, sampling frame; 302, extrusion elastic sheet; 303, sampling cylinder; 304, sampling hole; 305, dropping sample hole; 306, test strip; 4, support cylinder; 5, stirring component; 501, rotating cylinder; 502, bearing; 503, stirring head; 504, rotating ring; 505, screw rod; 506, handle; 507, return spring. Detailed Embodiments
[0027] In order to make the technical means, creative features, achieved purposes and effects realized by the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0028] As Figures 1 - 7 shown, a urine test cup for self-checking stones according to the present utility model includes a cup holder 1, a cup body 2 and a stirring assembly 5. A plurality of detection assemblies 3 are equidistantly embedded in the middle of the cup wall of the cup body 2. By providing a plurality of detection assemblies 3, multiple groups of detections can be carried out simultaneously. When the results obtained by different detection assemblies 3 tend to be consistent, the reliability of the detection results can be more firmly believed. On the contrary, if there are differences in the results of each detection assembly 3, the reasons can be further analyzed to troubleshoot possible problems. By providing a plurality of detection assemblies 3, the errors that may be generated by a single detection can be effectively reduced. In practical applications, when using this urine test cup for self-checking stones, the credibility and accuracy of the detection results can be significantly improved, and patients can more confidently take corresponding treatment measures or conduct further examinations based on the detection results, providing strong support for the early detection and treatment of stones. In this urine test cup, the detection assembly 3 is arranged in the middle of the cup wall of the cup body 2. When detecting the urine in the cup body 2, sampling from the middle of the cup body 2 can avoid the concentration difference or impurity interference at the edge of the cup body 2, and obtain a sample that can better reflect the overall situation of the urine, thereby further improving the accuracy of the detection results. Embedding the detection assembly 3 in the middle of the cup body 2 is beneficial to realizing an integrated design, reducing the influence of external factors on the detection process. This compact structural design makes the entire detection process more convenient and efficient, and at the same time reduces the error and contamination risks that may occur during the transfer of the sample. In addition, the design of sampling from the middle of the cup body 2 helps to improve the stability and repeatability of the detection. In multiple detections, sampling from the middle can provide relatively stable sample conditions, making the detection results have better consistency and reliability, providing a more valuable reference basis for doctors' diagnosis and patients' self-monitoring. The cup body 2 is of a transparent structure. The transparent cup body 2 is convenient for observing the detection process and results. The cup body 2 is detachably fixed on the cup holder 1. A support cylinder 4 is vertically fixed above the cup body 2 at the top of the cup holder 1. The stirring assembly 5 is arranged in the support cylinder 4. This urine test cup is provided with a stirring assembly 5, which can stir the urine to be sampled and detected, making the various components in the urine more evenly distributed, thereby further improving the accuracy and reliability of the detection;
[0029] Among them, the stirring assembly 5 includes a rotating cylinder 501 and a stirring head 503. The rotating cylinder 501 is rotatably fitted in the support cylinder 4. The stirring head 503 is detachably inserted at the bottom of the rotating cylinder 501, and the stirring head 503 is located inside the cup body 2. The design of detachable insertion of the stirring head 503 can ensure the hygiene during the stirring process. After use, some urine components will remain on the stirring head 503. If it is not replaced in time, it may contaminate the subsequent urine sample, thus affecting the accuracy of the test results. The design of the detachable insertion of the stirring head 503 enables the used stirring head 503 to be replaced in time, effectively avoiding the occurrence of contamination problems and ensuring that each test can be carried out under hygienic conditions. In the stirring assembly 5 of this urine test cup, the design of detachable insertion of the stirring head 503 not only facilitates the replacement of the stirring head 503, improves the convenience of use, but also ensures the hygiene of the stirring operation, avoiding the contamination of the urine sample by the used stirring head 503, and providing a strong guarantee for the accuracy and reliability of the self-check for kidney stones.
[0030] A further improvement of this embodiment is that two "L"-shaped hanging plates 101 are symmetrically arranged on the cup holder 1. Two lifting ears 201 are symmetrically arranged near the top of the cup body 2. The cup body 2 is hung on the two hanging plates 101 of the cup holder 1 through the two lifting ears 201. By providing the cup holder 1, on the one hand, placing the cup body 2 on the cup holder 1 can prevent the cup body 2 from soiling the tabletop, making the use of this urine test cup more hygienic. On the other hand, when the cup body 2 is placed on the cup holder 1, the user can more conveniently observe the urine situation in the cup body 2 and the changes during the detection process from various angles, which is conducive to timely discovering problems and dealing with them, thereby improving the convenience of using this urine test cup. On the other hand, the cup holder 1 provides a unified platform for the detection operation, enabling the stirring and self-check operations to be carried out at a fixed position, which helps to improve the standardization and consistency of the operation.
[0031] A further improvement of this embodiment is that bearings 502 are fixed at both the upper and lower ends inside the support cylinder 4, and the rotating cylinder 501 is rotatably fitted in the support cylinder 4 through the two bearings 502.
[0032] A further improvement of this embodiment is that a rotating ring 504 is fixed at the upper end inside the rotating cylinder 501. The rotating ring 504 is in threaded cooperation with a screw rod 505, and a handle 506 is fixed at the top of the screw rod 505. The bottom end of the screw rod 505 is connected to a return spring 507. The return spring 507 is located inside the rotating cylinder 501. By pressing down the screw rod 505 through the handle 506, during the downward movement of the screw rod 505, the rotating ring 504 will rotate. The rotating ring 504 drives the rotating cylinder 501 to rotate, and the rotating cylinder 501 drives the stirring head 503 to rotate to stir the urine in the cup body 2. A return spring 507 is arranged at the bottom end of the screw rod 505. After the screw rod 505 is pressed down, the handle 506 is released. Under the action of the return spring 507, the screw rod 505 moves upward, driving the rotating ring 504 to rotate in the reverse direction, so that the stirring head 503 rotates in the reverse direction for stirring. The design of the return spring 507 enables the stirring assembly 5 to continuously stir the stirring head 503 only by pressing down. The structure of the stirring assembly 5 is simple and the use is simple and labor-saving.
[0033] A further improvement of this embodiment lies in that the detection component 3 includes a sampling frame 301 and a test strip 306. The sampling frame 301 is a closed airbag structure with a hollow interior. The thickness of the sampling frame 301 is the same as that of the cup body 2. The sampling area of the test strip 306 is located inside the sampling frame 301. The part of the test strip 306 other than the sampling area is embedded in the cup wall of the cup body 2, and the detection area and the quality control area of the test strip 306 are visible through the transparent cup body 2. A number of sampling cylinders 303 that can extend into the cup body 2 are arranged inside the sampling frame 301. The sampling frame 301 adopts a closed airbag structure with a hollow interior, having certain elasticity and flexibility. When sampling is required, the airbag structure can be deformed by appropriate pressure, enabling the sampling cylinders 303 to better contact the urine, improving the accuracy and sufficiency of sampling. At the same time, this structure has the same thickness as the cup body 2, enabling it to better integrate with the cup body 2 without affecting the overall aesthetics and usability. The sampling area of the test strip 306 is located inside the sampling frame 301, ensuring that the urine can be directly absorbed by the sampling area, reducing the loss and error during urine transmission, and improving the sensitivity and accuracy of the detection. The part of the test strip 306 other than the sampling area is embedded in the cup wall of the cup body 2, which not only saves space but also effectively protects the test strip 306, avoiding interference from external factors on the test results. The detection area and the quality control area of the test strip 306 are visible through the transparent cup body 2, facilitating the user to directly observe the test results without taking out the test strip 306, simplifying the operation steps and improving the detection efficiency. At the same time, the user can intuitively compare the color changes in the detection area and the quality control area, thereby quickly judging whether there are stone-related components in the urine. The number of sampling cylinders 303 arranged inside the sampling frame 301 can extend into the cup body 2, increasing the sampling area and depth, enabling a more comprehensive collection of urine samples, further improving the reliability of the test results. The design of multiple sampling cylinders 303 can also avoid errors that may be caused by single-point sampling, making the test results more representative.
[0034] A further improvement of this embodiment lies in that an extrusion elastic piece 302 is embedded on the outer side wall of the sampling frame 301. One end of a plurality of sampling cylinders 303 is fixed to the top of the extrusion elastic piece 302 on the side close to the inside of the sampling frame 301. The inside of the sampling cylinder 303 is hollow, and sampling holes 304 and sample-dropping holes 305 are respectively formed at both ends of the sampling cylinder 303. Under the extrusion of the extrusion elastic piece 302, the end of the sampling cylinder 303 with the sampling hole 304 penetrates through the sampling frame 301 and extends into the cup body 2. The inside of the sampling cylinder 303 is hollow and the sampling hole 304 and the sample-dropping hole 305 are respectively formed at both ends, so that urine can enter the sampling cylinder 303 through the sampling hole 304 and drip out from the sample-dropping hole 305 to the sample-absorbing area of the test strip 306. This design can reduce the loss and error of urine during the sampling process and improve the accuracy of sampling. By setting the extrusion elastic piece 302, the sampling cylinder 303 in the sampling frame 301 is extruded, so that a small amount of urine in the cup body 2 is sent into the sampling frame 301 by the sampling cylinder 303. The design of the extrusion elastic piece 302 can accurately control the sampling amount of urine and improve the sufficiency and accuracy of sampling. In addition, through the design of the sampling frame 301 and the extrusion elastic piece 302, it is not easy for patients to get their fingers soiled by urine during self-examination, and the operation process is cleaner and more hygienic. When this test cup is used, the extrusion elastic piece 302 is pressed to send the sampling cylinder 303 into the cup body 2. The urine in the cup body 2 enters the sampling frame 301 through the sampling cylinder 303 and contacts the test strip 306 in the sampling frame 301, and self-examination is realized by using the test strip 306. After the extrusion elastic piece 302 is released, under the restoration of the elastic force of the extrusion elastic piece 302, one end of the sampling cylinder 303 retracts from the cup body 2, and the urine in the cup body 2 and the sampling frame 301 return to the separated state again. When sampling through the sampling cylinder 303, the sampling cylinder 303 is in a brand-new unused state and will not contaminate the urine in the cup body 2. Furthermore, after the self-examination by this self-examination cup is completed, the urine in the cup body 2 can still be retained and sent to the hospital for instrument detection. In this way, once the self-examination result reflects problems related to stones, the remaining urine in the cup body 2 can be quickly sent to the hospital, and the hospital samples from the cup body 2 for more professional detection. In this way, patients can quickly verify the self-examination results after self-examination, which helps to improve the timeliness of patients' medical treatment.
[0035] The above shows and describes the basic principles, main features and advantages of the present utility model. Those skilled in the art of this industry should understand that the present utility model is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of protection required by the present utility model. The scope of protection required by the present utility model is defined by the appended claims and their equivalents.
Claims
1. A urine test cup for self-checking stones, comprising a cup holder (1), a cup body (2) and a stirring assembly (5), characterized in that: A number of detection components (3) are equidistantly embedded in the middle of the cup wall of the cup body (2). The cup body (2) is of a transparent structure. The cup body (2) is detachably fixed on the cup holder (1). A support cylinder (4) is vertically fixed above the cup body (2) at the top of the cup holder (1). The stirring component (5) is arranged in the support cylinder (4). Among them, the stirring component (5) includes a rotating cylinder (501) and a stirring head (503). The rotating cylinder (501) is rotationally fitted in the support cylinder (4). The stirring head (503) is detachably inserted at the bottom of the rotating cylinder (501), and the stirring head (503) is located inside the cup body (2).
2. The urine test cup for self-checking stones according to claim 1, wherein: Two L-shaped hanging plates (101) are symmetrically arranged on the cup holder (1). Two lifting ears (201) are symmetrically arranged near the top of the cup body (2). The cup body (2) is hung on the two hanging plates (101) of the cup holder (1) through the two lifting ears (201).
3. A urine test cup for self-checking stones according to claim 1, characterized in that: Bearings (502) are fixed at both the upper and lower ends inside the support cylinder (4). The rotating cylinder (501) is rotationally fitted in the support cylinder (4) through the two bearings (502).
4. A urine test cup for self-checking stones according to claim 1, characterized in that: A rotating ring (504) is fixed at the upper end inside the rotating cylinder (501). The rotating ring (504) is in threaded cooperation with a screw rod (505). A handle (506) is fixed at the top of the screw rod (505). The bottom end of the screw rod (505) is connected to a return spring (507), and the return spring (507) is located inside the rotating cylinder (501).
5. The urine test cup for self-checking stones according to claim 1, characterized in that: The detection component (3) includes a sampling frame (301) and a test strip (306). The sampling frame (301) is a closed airbag structure with a hollow interior. The thickness of the sampling frame (301) is the same as that of the cup body (2). The sample absorption area of the test strip (306) is located inside the sampling frame (301). The part of the test strip (306) other than the sample absorption area is embedded in the cup wall of the cup body (2). The detection area and the quality control area of the test strip (306) are visible through the transparent cup body (2). A number of sampling cylinders (303) that can extend into the cup body (2) are arranged inside the sampling frame (301).
6. The urine test cup for self-checking of calculi according to claim 5, characterized in that: An extrusion elastic sheet (302) is embedded on the outer side wall of the sampling frame (301). One ends of a number of sampling cylinders (303) are fixed at the top of the extrusion elastic sheet (302) close to the inner side of the sampling frame (301). The sampling cylinders (303) have a hollow interior, and sampling holes (304) and dropping holes (305) are respectively formed at both ends of the sampling cylinders (303). Under the extrusion of the extrusion elastic sheet (302), the end of the sampling cylinder (303) with the sampling hole (304) passes through the sampling frame (301) and extends into the cup body (2).