Cerebral stroke gene detection equipment

By designing the symmetrical slab and support plate structure of stroke gene detection equipment, the convenient placement and removal of test tubes during sampling and testing is solved, and the convenience and safety of operation are improved.

CN223086581UActive Publication Date: 2025-07-11LIAOCHENG VOCATIONAL & TECHN COLLEGE
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Patent Information

Application Number
CN202421991568.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-07-11
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

The prior art lacks convenient equipment to realize the placement of test tubes during sampling and removal of test tubes during detection, resulting in inconvenient operation.

Method used

A stroke gene detection device is designed, using a symmetrical clamping plate and support plate structure, and is rotatably connected by half-hole, clamping ring and connecting rod to achieve convenient placement and removal of the test tube, and is combined with the box cover to provide protection.

Benefits of technology

It realizes the stable placement of the test tube during sampling and the convenient removal of the test tube during testing, improves the convenience and safety of operation, and avoids damage to the test tube.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides cerebral apoplexy gene detection equipment, which comprises a hollow box body connected with symmetrical transverse rods and at least one group of symmetrical vertical rods; the group of symmetrical clamping plates are arranged in the box body, the symmetrical cross rods respectively penetrate through the group of symmetrical clamping plates, and each clamping plate is respectively provided with a group of uniformly distributed half holes; the symmetrical vertical rods penetrate through the bearing plate, and the bearing plate is provided with a set of inserting grooves which are evenly distributed. The utility model relates to the technical field of detection equipment, in particular to cerebral apoplexy gene detection equipment. Aiming at the defects in the prior art, the cerebral apoplexy gene detection equipment is developed, and the test tube is convenient to place during sampling and is convenient to take out during detection.
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Description

Technical Field

[0001] The utility model relates to the technical field of detection equipment, in particular to a gene detection device for stroke. Background Art

[0002] Stroke, also known as apoplexy or cerebrovascular accident, refers to a group of clinical syndromes that suddenly occur due to cerebrovascular lesions, resulting in limited cerebral function disorders that last for more than 24 hours or cause death. Gene detection for stroke mainly analyzes an individual's genetic information to evaluate their risk of stroke or to find specific gene mutations that cause stroke. By collecting blood samples, gene detection for stroke can be achieved.

[0003] In the prior art, for example, a gene detection device that is convenient for picking up, with the authorization announcement number CN213009449U, can play a role in protecting the test tubes used for gene detection, reduce the damage probability of the test tubes, and is convenient for the taking and storing of the test tubes.

[0004] Currently, there is still a lack of a device that can conveniently place test tubes during sampling and conveniently take out test tubes during detection.

[0005] Therefore, in view of the above problems, a gene detection device for stroke is proposed to solve the above problems. Summary of the Utility Model

[0006] In view of the deficiencies of the prior art, the utility model develops a gene detection device for stroke, which realizes the convenient placement of test tubes during sampling and the convenient taking out of test tubes during detection.

[0007] The technical solution for the utility model to solve the technical problems is as follows: The utility model provides a gene detection device for stroke, including: a box body, which is hollow inside, the box body is connected with symmetric cross bars, and the box body is connected with at least one group of symmetric vertical bars; a group of symmetric clamping plates, arranged inside the box body, the symmetric cross bars respectively pass through a group of symmetric clamping plates, and each clamping plate is respectively provided with a group of uniformly distributed semi-holes; a supporting plate, the symmetric vertical bars respectively pass through the supporting plate, and the supporting plate is provided with a group of uniformly distributed slots. By adopting the clamping plates with semi-holes arranged thereon, two semi-holes form a test tube placement hole, which matches with the corresponding slots, facilitating the placement of test tubes. When taking out the test tubes, by separating the corresponding clamping plates and moving the supporting plate upward, the test tubes can be conveniently taken out.

[0008] As an optimization, a set of mounting seats are respectively connected to both sides of the supporting plate. Each of the mounting seats is respectively connected to a lower shaft. The two ends of each clamping plate are respectively connected to an upper shaft. The upper end of each connecting rod is respectively rotatably connected to the corresponding upper shaft, and the lower end of each connecting rod is respectively rotatably connected to the corresponding lower shaft. By adopting the way of rotatably connecting the connecting rods, when the supporting plate is pulled upward, the two clamping plates are separated from each other, which is convenient for taking out the test tube.

[0009] As an optimization, the supporting plate is connected to at least one connecting rod, and the connecting rod is connected to a handle ring. By adopting the handle ring, it is convenient to lift the supporting plate upward.

[0010] As an optimization, a set screw is threadedly connected to each clamping plate corresponding to the corresponding cross bar. By adopting the set screw, it is convenient to lock the position of the clamping plate.

[0011] As an optimization, a clamping ring is respectively arranged in each semi-hole, and each clamping ring is respectively connected to the corresponding clamping plate. By arranging the clamping ring, it is convenient to clamp the test tube.

[0012] As an optimization, the clamping ring is made of sponge material to avoid damaging the test tube.

[0013] As an optimization, the box body is matched with a box cover. By arranging the box cover, when transporting, the box cover is covered on the box body to protect the test tube.

[0014] As an optimization, the box cover is connected to a handle.

[0015] The effects provided in the utility model content are only the effects of the embodiments, rather than all the effects of the utility model. The above technical solutions have the following advantages or beneficial effects:

[0016] (1) By adopting symmetric clamping plates in this device, when the set screws are tightened and the two clamping plates contact each other, the two semi-holes form a placement hole. After inserting the test tube, the clamping ring clamps the test tube, which is convenient for placing the test tube.

[0017] (2) By adopting the supporting plate and the rotatable connection of the connecting rods in this device, after loosening the set screws and pulling up the handle ring, the supporting plate drives the test tube to move upward, and the clamping plates move away from each other, which is convenient for taking out the test tube.

[0018] (3) When the test tube is taken out in this device, when the adjacent clamping plates contact each other, the clamping plates at both ends are far away from the handle ring, and it is safe to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The drawings are used to provide a further understanding of the present utility model and constitute a part of the specification. They are used together with the embodiments of the present utility model to explain the present utility model and do not constitute a limitation to the present utility model.

[0020] Figure 1Schematic three-dimensional structure diagram of the present utility model.

[0021] Figure 2 Schematic partial three-dimensional structure diagram of the present utility model.

[0022] Figure 3 Schematic partial three-dimensional structure diagram of the present utility model.

[0023] Figure 4 Schematic partial three-dimensional structure diagram of the present utility model.

[0024] Figure 5 Schematic diagram of the test tube placement state of the present utility model.

[0025] Figure 6 Schematic diagram of the test tube removal state of the present utility model.

[0026] In the figure: 1. Box cover, 2. Box body, 3. Handle, 4. Cross bar, 5. Vertical bar, 6. Handle ring, 7. Connecting rod, 8. Support plate, 9. Slot, 10. Mounting seat, 11. Lower shaft, 12. Link rod, 13. Upper shaft, 14. Clamping plate, 15. Half hole, 16. Snap ring, 17. Set screw. Detailed implementation mode

[0027] In order to clearly illustrate the technical features of this solution, the present utility model will be described in detail below through specific embodiments and in conjunction with its accompanying drawings. The following disclosure provides many different embodiments or examples for implementing different structures of the present utility model. To simplify the disclosure of the present utility model, the components and settings of specific examples are described below. In addition, the present utility model may repeat reference numerals and / or letters in different examples. This repetition is for the purpose of simplification and clarity, and does not itself indicate the relationship between the various embodiments and / or settings discussed. It should be noted that the components illustrated in the drawings are not necessarily drawn to scale. The present utility model omits the description of well-known components, processing technologies and processes to avoid unnecessarily limiting the present utility model. The terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present utility model. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance. In the description of the present utility model, it should be noted that unless otherwise clearly specified and limited, the terms "installed", "connected", "connected" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the internal communication of two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

[0028] As Figures 1 to 6 shown, Embodiment 1: A stroke gene detection device, comprising: a box body 2, which is hollow inside, the box body 2 is connected to symmetric cross bars 4, and the box body 2 is connected to at least one set of symmetric vertical bars 5; a set of symmetric clamping plates 14, arranged inside the box body 2, the symmetric cross bars 4 respectively pass through a set of symmetric clamping plates 14, and each clamping plate 14 is respectively provided with a set of uniformly distributed half holes 15; a supporting plate 8, the symmetric vertical bars 5 respectively pass through the supporting plate 8, and the supporting plate 8 is provided with a set of uniformly distributed slots 9. By adopting the setting of the clamping plates 14, on which there are half holes 15, two half holes 15 form a test tube placement hole, which matches the corresponding slots 9, facilitating the placement of test tubes. When taking out the test tubes, by separating the corresponding clamping plates 14 and moving the supporting plate 8 upward, it is convenient to take out the test tubes.

[0029] The supporting plate 8 is connected to at least one connecting rod 7, and the connecting rod 7 is connected to a handle ring 6. By adopting the handle ring 6, it is convenient to lift the supporting plate 8 upward.

[0030] Each of the card plates 14 is threadedly connected to the corresponding cross bar 4 by a setscrew 17. By using the setscrew 17, it is convenient to lock the position of the card plate 14.

[0031] A snap ring 16 is respectively arranged in each of the semi-holes 15, and each snap ring 16 is respectively connected to the corresponding card plate 14. By arranging the snap ring 16, it is convenient to clamp the test tube.

[0032] The snap ring 16 is made of sponge material to avoid damaging the test tube.

[0033] The box body 2 matches the box cover 1. By arranging the box cover 1, during transportation, the box cover 1 is covered on the box body 2 to protect the test tube.

[0034] The box cover 1 is connected to the handle 3.

[0035] The working process of this embodiment is as follows:

[0036] In the initial state, each pair of symmetric card plates 14 are in contact with each other. When placing the test tube, insert the test tube into the placement hole formed by the two semi-holes 15 and into the slot 9 to keep the test tube vertical, causing the snap ring 16 to deform and clamp the test tube.

[0037] When taking out the test tube, loosen the setscrew 17, move the card plates 14 to both sides, and the card plates 14 move along the cross bar 4, causing the snap ring 16 to move away from the test tube. Pull the handle ring 6 upward, the handle ring 6 drives the connecting rod 7 to move upward, and the connecting rod 7 drives the supporting plate 8 to move along the vertical rod 5, causing the supporting plate 8 to drive the test tube to move upward, facilitating the removal of the test tube.

[0038] Embodiment 2: This embodiment is further elaborated on the basis of Embodiment 1. A set of mounting seats 10 are respectively connected to both sides of the supporting plate 8, each mounting seat 10 is respectively connected to a lower shaft 11, the two ends of each card plate 14 are respectively connected to an upper shaft 13, the upper ends of each connecting rod 12 are respectively rotatably connected to the corresponding upper shafts 13, and the lower ends of each connecting rod 12 are respectively rotatably connected to the corresponding lower shafts 11. By adopting the way of rotational connection of the connecting rods, when the supporting plate 8 is pulled upward, the two card plates 14 are separated from each other, facilitating the removal of the test tube.

[0039] The working process of this embodiment is as follows:

[0040] In the initial state, each pair of symmetric card plates 14 are in contact with each other. When placing the test tube, insert the test tube into the placement hole formed by the two semi-holes 15 and into the slot 9 to keep the test tube vertical, causing the snap ring 16 to deform and clamp the test tube.

[0041] When taking out the test tube, loosen the setscrew 17, pull the handle ring 6 upward. The handle ring 6 drives the connecting rod 7 to move upward. The connecting rod 7 drives the supporting plate 8 to move along the vertical rod 5, so that the supporting plate 8 drives the test tube to move upward. The supporting plate 8 drives the mounting seat 10 and the lower shaft 11 to move. The lower shaft 11 drives the connecting rod 12 to swing. The connecting rod 12 drives the upper shaft 13 to move. The upper shaft 13 drives the clamping plate 14 to move along the cross bar 4. The clamping plate 14 drives the clamping ring 16 away from the test tube. When adjacent clamping plates 14 come into contact with each other, tighten the setscrew 17 and take out the test tube.

[0042] Although the specific embodiments of the utility model are described above in conjunction with the accompanying drawings, it is not a limitation to the protection scope of the utility model. Based on the technical solution of the utility model, various modifications or deformations that can be made by those skilled in the art without creative labor are still within the protection scope of the utility model.

Claims

1. A gene detection device for stroke, characterized in that, Comprising: A box body (2) which is hollow inside, the box body (2) is connected to symmetric cross bars (4), and the box body (2) is connected to at least one set of symmetric vertical bars (5); A set of symmetric clamping plates (14) arranged inside the box body (2), the symmetric cross bars (4) respectively pass through the set of symmetric clamping plates (14), and each clamping plate (14) is respectively provided with a set of evenly distributed semi-holes (15); A supporting plate (8), the symmetric vertical bars (5) respectively pass through the supporting plate (8), and the supporting plate (8) is provided with a set of evenly distributed slots (9).

2. The stroke gene detection device according to claim 1, characterized in that: Both sides of the supporting plate (8) are respectively connected to a set of mounting seats (10), each mounting seat (10) is respectively connected to a lower shaft (11), both ends of each clamping plate (14) are respectively connected to an upper shaft (13), the upper end of each connecting rod (12) is respectively rotatably connected to the corresponding upper shaft (13), and the lower end of each connecting rod (12) is respectively rotatably connected to the corresponding lower shaft (11).

3. The stroke gene detection device according to claim 1, characterized in that: The supporting plate (8) is connected to at least one connecting rod (7), and the connecting rod (7) is connected to a handle ring (6).

4. The stroke gene detection device according to claim 1, characterized in that: Each clamping plate (14) is threadedly connected to a set screw (17) corresponding to the corresponding cross bar (4).

5. The stroke gene detection device according to claim 1, characterized in that: A clamping ring (16) is respectively arranged in each semi-hole (15), and each clamping ring (16) is respectively connected to the corresponding clamping plate (14).

6. The stroke gene detection device according to claim 5, characterized in that: The clamping ring (16) is made of sponge material.

7. The stroke gene detection device according to claim 1, characterized in that: The box body (2) is matched with a box cover (1).

8. The stroke gene detection device according to claim 7, characterized in that: The box cover (1) is connected to a handle (3).

Citation Information

Patent Citations

  • Gene detection equipment convenient to pick

    CN213009449U