CN220490837U - Urine glucose detection device for endocrine - Google Patents

Urine glucose detection device for endocrine Download PDF

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Publication number
CN220490837U
CN220490837U CN202321289171.1U CN202321289171U CN220490837U CN 220490837 U CN220490837 U CN 220490837U CN 202321289171 U CN202321289171 U CN 202321289171U CN 220490837 U CN220490837 U CN 220490837U
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block
detection box
urine
sealing
groove
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CN202321289171.1U
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方丽萍
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Abstract

The utility model discloses a urine glucose detection device for endocrine, which relates to the technical field of urine glucose detection and comprises: the detection box is fixedly provided with an extension block at one side, the extension block is hinged with a sealing cover, the sealing cover is in sealing clamping connection with the detection box, and a linkage assembly is arranged between the sealing cover and the extension block; the inside of the detection box is fixedly provided with an inner shell, the middle part of the inner shell is provided with through grooves, the through grooves are provided with a plurality of through grooves, and one end of the detection box, which is far away from the sealing cover, is provided with a quantitative groove; this application can reduce the weeping condition to be convenient for get the urine and put, can connect the middle section urine simultaneously and get, increase urine sugar detection's accuracy.

Description

Urine glucose detection device for endocrine
Technical Field
The utility model relates to the technical field of urine glucose detection, in particular to a urine glucose detection device for endocrine.
Background
The urine glucose detection device for endocrine is a medical device for detecting the glucose content in urine, and is mainly used for diagnosing and monitoring endocrine diseases such as diabetes mellitus. Urine glucose refers to sugar in urine, mainly glucose, and is very little in normal human urine sugar, which cannot be detected by a common method, so that the normal human urine sugar should be negative or the urine should be free of sugar. In normal people, only when the blood sugar exceeds 160-180 mg, the sugar can be discharged from urine to form urine sugar.
Along with the development of medical technology, endocrine urine glucose detection devices are also continuously improved and innovated. Currently, the endocrine urine glucose detection devices commonly used in the market are of the following types: urine glucose test paper method, urine conductivity method and urine photometry method. Among them, the urine glucose test paper method is the simplest and most commonly used method, and the content of glucose in urine is judged by dropping urine on test paper containing glucose oxidase and other reagents and observing the color change of the test paper. The method is convenient, quick and low in cost to operate, but during operation, middle-section urine is generally required to be detected so as to ensure the accuracy of detection, but common staff cannot easily collect middle-section urine when collecting urine.
The acquisition of mid-stream urine requires a certain skill and operational experience. The average person may not have access to such an operation and is therefore prone to error. This may result in an inaccurate or contaminated urine sample being collected, thereby affecting the accuracy of the test results.
For many people, collection from mid-range urine may be uncomfortable or embarrassing. This may affect them to collect urine samples correctly, resulting in a reduced quality sample.
During the collection of mid-stream urine, there is a risk of introducing external bacteria or contaminants into the urine sample. This may lead to inaccurate or unreliable detection results.
Disclosure of Invention
Aiming at the problems in the prior art, the utility model aims to provide an endocrine urine sugar detection device which can solve the problem that a general person is not easy to collect middle-section urine when collecting the urine.
In order to solve the problems, the utility model adopts the following technical scheme:
an endocrine urine glucose detection device comprising:
the detection box is characterized in that an extension block is fixedly arranged on one side of the detection box, a sealing cover is hinged to the extension block, the sealing cover is in sealing clamping connection with the detection box, and a linkage assembly is arranged between the sealing cover and the extension block;
the inside of detection box is fixed to be provided with built-in shell, logical groove has been seted up at the middle part of built-in shell, just logical groove has seted up a plurality of, the ration groove has been seted up to the one end that the sealed lid was kept away from to the detection box.
As a preferable scheme of the utility model, the linkage assembly comprises a linkage block fixedly arranged on one side of the sealing cover, a first spring is arranged between the linkage block and the extension block, and two ends of the first spring are fixedly connected with the linkage block and the extension block respectively.
As a preferable scheme of the utility model, the side edge of the built-in shell and the middle part of the detection box are arranged in a sealing way, and a flow guide block is arranged on one side of the built-in shell, which is positioned in the through groove.
As a preferable scheme of the utility model, the middle part of the quantitative groove is arranged in a penetrating way, limiting blocks are symmetrically and fixedly arranged at two opening ends of the detection box, which are positioned in the quantitative groove, and sealing components are arranged on the limiting blocks.
As a preferable scheme of the utility model, the sealing component comprises a sealing plate which is arranged in the middle of the limiting block in a sliding way, a movable block is hinged outside the detection box, and two ends of the movable block are respectively hinged with the two sealing plates;
and a limiting component is arranged between the movable block and the detection box.
As a preferable scheme of the utility model, a chute is arranged on one side of the movable block, the limiting component comprises a sliding block which is arranged in the chute in a sliding way, a connecting block is fixedly arranged on one side of the detection box, which is close to the middle part of the chute, a second spring is arranged between the connecting block and the sliding block, and two ends of the second spring are fixedly connected with the connecting block and the sliding block respectively.
Compared with the prior art, the utility model has the advantages that:
(1) In this application, through first spring to linkage piece elastic support, make the linkage piece drive sealed lid and seal the work to detecting the box under the condition that there is not external force, reduce the weeping condition, wherein can open and shut the control to sealed lid on detecting the box through the linkage piece, reduce by external environment pollution's probability.
(2) In this application, can flow to built-in shell through the open end of detection box when getting through the urine to through built-in shell to the anterior segment urine gets, in the middle section urine can be through leading to the groove by the drainage of water conservancy diversion piece to the ration groove, increase the accuracy that detects.
(3) In this application, seal the slip through movable block control closing plate to open and shut the control through the closing plate to the open end of ration groove, wherein when one open end of ration groove was opened, another open end can be closed, vice versa, be convenient for make the urine in the ration groove flow to the test paper on, wherein the elasticity of second spring can drive the slider and slide to the opposite side of spout, and carry out elastic support to the movable block, make the movable block can not take place to rock under no external force condition, increase the leakproofness of detecting the box.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic diagram showing the internal structure of the cartridge of the present utility model;
fig. 3 is a schematic structural diagram of a limiting assembly according to the present utility model.
The reference numerals in the figures illustrate:
1. a detection box; 2. an extension block; 3. sealing cover; 4. a linkage assembly; 41. a linkage block; 42. a first spring; 5. a built-in shell; 6. a through groove; 7. a quantitative tank; 8. a flow guiding block; 9. a limiting block; 10. a seal assembly; 101. a sealing plate; 102. a movable block; 11. a limit component; 111. a chute; 112. a slide block; 113. a connecting block; 114. and a second spring.
Detailed Description
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the drawings in the embodiments of the present utility model. It is apparent that the described embodiments are only some embodiments of the present utility model, not all embodiments, and that all other embodiments obtained by persons of ordinary skill in the art without making creative efforts based on the embodiments in the present utility model are within the protection scope of the present utility model.
Examples
Endocrine disorders are a common health problem in the field of health care, particularly diabetes. Such endocrine urine glucose detection devices may be used by medical institutions in order to monitor the endocrine status of patients.
As shown in fig. 1 to 3, an endocrine urine glucose detection device includes:
the detection box 1, one side of the detection box 1 is fixedly provided with an extension block 2, the extension block 2 is hinged with a sealing cover 3, the sealing cover 3 is in sealing clamping connection with the detection box 1, and a linkage assembly 4 is arranged between the sealing cover 3 and the extension block 2;
the inside of detection box 1 is fixed and is provided with built-in shell 5, and logical groove 6 has been seted up at the middle part of built-in shell 5, and has seted up a plurality ofly in logical groove 6, and the ration groove 7 has been seted up to the one end that sealed lid 3 was kept away from to detection box 1.
In a further embodiment, the whole detection box 1 is used for supporting the whole detection box 1, the extension block 2 is fixedly supported by the detection box 1, the detection box 1 is conveniently held by the extension block 2, the top of the detection box 1 is sealed by the sealing cover 3, the probability of dripping of liquid in the detection box 1 is reduced, and the sealing cover 3 is controlled to open and close on the detection box 1 by the linkage assembly 4; the detection box 1 is fixedly supported on the built-in shell 5, and the urine which is taken through the built-in shell 5 is sectioned, wherein the urine which is just taken can be stored in the built-in shell 5, the urine in the middle section can flow out from the through groove 6 and flows into the quantitative groove 7, and the capacity of the urine is marked through the quantitative groove 7.
Specifically, the linkage assembly 4 includes a linkage block 41 fixedly arranged at one side of the sealing cover 3, a first spring 42 is arranged between the linkage block 41 and the extension block 2, and two ends of the first spring 42 are fixedly connected with the linkage block 41 and the extension block 2 respectively.
In a further embodiment, the linkage block 41 is fixedly supported by the arranged sealing cover 3, and the sealing cover 3 is driven to rotate by the arranged linkage block 41, wherein the linkage block 41 is elastically supported by the arranged first spring 42, so that the linkage block 41 drives the sealing cover 3 to seal the detection box 1 under the condition of no external force.
Specifically, the side of the built-in shell 5 and the middle part of the detection box 1 are in a sealed arrangement, and a flow guide block 8 is arranged on one side of the built-in shell 5, which is positioned on the through groove 6.
In a further embodiment, urine will flow into the built-in shell 5 through the open end of the detection box 1 when being taken in, and the front-section urine will be taken in through the built-in shell 5, and the middle-section urine will be drained into the quantitative tank 7 through the through tank 6 by the flow guiding block 8, thereby increasing the accuracy of detection.
Specifically, the middle part in ration groove 7 is the run through setting, and detection box 1 is located the fixed stopper 9 that is provided with of two open ends symmetry in ration groove 7, is provided with seal assembly 10 on the stopper 9.
In a further embodiment, the volume of the test paper is controlled by the arranged quantifying groove 7, the limiting block 9 is fixedly supported by the arranged detection box 1, and the sealing assembly 10 is supported by the limiting block 9.
Specifically, the sealing assembly 10 comprises a sealing plate 101 arranged in the middle of the limiting block 9 in a sliding manner, a movable block 102 is hinged to the outside of the detection box 1, and two ends of the movable block 102 are respectively hinged to the two sealing plates 101;
a limiting component 11 is arranged between the movable block 102 and the detection box 1.
In a further embodiment, the sealing plate 101 is slidingly limited by the set limiting block 9, wherein the opening end of the quantitative tank 7 is controlled to open and close by the set sealing plate 101, the movable block 102 is rotatably supported by the set detection box 1, and the sealing plate 101 is controlled to hermetically slide by the movable block 102, wherein when one opening end of the quantitative tank 7 is opened, the other opening end is closed, and vice versa.
Specifically, a sliding groove 111 is formed in one side of the movable block 102, the limiting component 11 comprises a sliding block 112 slidably arranged in the sliding groove 111, a connecting block 113 is fixedly arranged on one side, close to the middle of the sliding groove 111, of the detection box 1, a second spring 114 is arranged between the connecting block 113 and the sliding block 112, and two ends of the second spring 114 are fixedly connected with the connecting block 113 and the sliding block 112 respectively.
In a further embodiment, the sliding block 112 is limited by the sliding groove 111, and the second spring 114 is limited by the connecting block 113 and the sliding block 112, wherein when the movable block 102 is pressed, the sliding block 112 is driven to slide to the other side of the sliding groove 111 by the elastic force of the second spring 114, and the movable block 102 is elastically supported, so that the movable block 102 cannot shake under the condition of no external force.
The working principle and the using flow of the utility model are as follows:
the first spring 42 elastically supports the linkage block 41, so that the linkage block 41 drives the sealing cover 3 to seal the detection box 1 under the condition of no external force, and the leakage condition is reduced, wherein the linkage block 41 can control the sealing cover 3 to open and close on the detection box 1.
Through urine can flow to built-in shell 5 through the open end of detecting box 1 when getting to through built-in shell 5 to the anterior segment urine is got, and the middle section urine can be through leading to groove 6 by water conservancy diversion piece 8 drainage to quantitative groove 7 in, increase the accuracy of detecting.
The sealing plate 101 is controlled to slide in a sealing manner through the movable block 102, and the opening end of the quantitative tank 7 is controlled to be opened and closed through the sealing plate 101, wherein when one opening end of the quantitative tank 7 is opened, the other opening end is closed, and vice versa, so that urine in the quantitative tank 7 conveniently flows onto the test paper, the elastic force of the second spring 114 can drive the sliding block 112 to slide towards the other side of the sliding groove 111, the movable block 102 is elastically supported, the movable block 102 cannot shake under the condition of no external force, and the tightness of the detection box 1 is improved.
It should be understood that the foregoing examples of the present utility model are merely illustrative of the present utility model and not limiting of the embodiments of the present utility model, and that various other changes and modifications can be made by those skilled in the art based on the above description, and it is not intended to be exhaustive of all of the embodiments, and all obvious changes and modifications that come within the scope of the utility model are defined by the following claims.

Claims (6)

1. An endocrine urine glucose detection device, comprising:
the detection device comprises a detection box (1), wherein an extension block (2) is fixedly arranged on one side of the detection box (1), a sealing cover (3) is hinged to the extension block (2), the sealing cover (3) is in sealing clamping connection with the detection box (1), and a linkage assembly (4) is arranged between the sealing cover (3) and the extension block (2);
the inside of detection box (1) is fixed and is provided with built-in shell (5), logical groove (6) have been seted up at the middle part of built-in shell (5), just logical groove (6) have been seted up a plurality of, quantitative groove (7) have been seted up to the one end that sealed lid (3) was kept away from to detection box (1).
2. The endocrine urine glucose detection device according to claim 1, wherein: the linkage assembly (4) comprises a linkage block (41) fixedly arranged on one side of the sealing cover (3), a first spring (42) is arranged between the linkage block (41) and the extension block (2), and two ends of the first spring (42) are fixedly connected with the linkage block (41) and the extension block (2) respectively.
3. The endocrine urine glucose detection device according to claim 1, wherein: the side of the built-in shell (5) and the middle part of the detection box (1) are in sealing arrangement, and a flow guide block (8) is arranged on one side of the built-in shell (5) located in the through groove (6).
4. The endocrine urine glucose detection device according to claim 1, wherein: the middle part of ration groove (7) is the run through setting, two open ends symmetry that detect box (1) are located ration groove (7) are fixed and are provided with stopper (9), be provided with seal assembly (10) on stopper (9).
5. The endocrine urine glucose detection apparatus as defined in claim 4, wherein: the sealing assembly (10) comprises sealing plates (101) arranged in the middle of the limiting block (9) in a sliding manner, a movable block (102) is hinged to the outside of the detection box (1), and two ends of the movable block (102) are respectively hinged to the two sealing plates (101);
a limiting component (11) is arranged between the movable block (102) and the detection box (1).
6. The endocrine urine glucose detection apparatus as defined in claim 5, wherein: the sliding chute (111) has been seted up to one side of movable block (102), spacing subassembly (11) are including sliding slider (112) that set up in the inside of spout (111), the fixed connecting block (113) that is provided with in one side that detects box (1) is close to spout (111) middle part, be provided with second spring (114) between connecting block (113) and slider (112), the both ends of second spring (114) are respectively with connecting block (113) and slider (112) fixed connection.
CN202321289171.1U 2023-05-25 2023-05-25 Urine glucose detection device for endocrine Active CN220490837U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321289171.1U CN220490837U (en) 2023-05-25 2023-05-25 Urine glucose detection device for endocrine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321289171.1U CN220490837U (en) 2023-05-25 2023-05-25 Urine glucose detection device for endocrine

Publications (1)

Publication Number Publication Date
CN220490837U true CN220490837U (en) 2024-02-13

Family

ID=89832464

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321289171.1U Active CN220490837U (en) 2023-05-25 2023-05-25 Urine glucose detection device for endocrine

Country Status (1)

Country Link
CN (1) CN220490837U (en)

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