Gene detection sample storage device with classification structure
By designing a genetic detection sample storage device with a classification structure, using magnetic blocks, inner body and double marking, the problem of poor classification effect of existing devices is solved, rapid classification and accurate positioning of samples are achieved, and management efficiency and safety are improved.
Patent Information
- Application Number
- CN202422809506.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-11-18
AI Technical Summary
The existing genetic detection sample storage device does not have a portable classification effect during use, the label is unclear and easy to confuse, and it is difficult to quickly and accurately find the required samples. The classification method is single, and it cannot meet the complex and diverse classification needs of genetic detection samples.
A genetic detection sample storage device with a classification structure is designed, including a storage box, a top cover, an inner body and a middle partition. The sealing is enhanced by a magnetic block and a magnetic groove. The inner body is divided into two parts to store samples in a classified manner. The placing plate is equipped with a through hole and a stable sleeve to fix the sample tube. There are coded plates on the outer wall of the sample tube and a classified plate inside the sealing cover, providing double markings.
It realizes rapid classification and accurate positioning of samples, reduces confusion, improves the accuracy and traceability of sample management, and ensures the safety and operation convenience of samples.
Smart Images

Figure CN223279619U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of gene detection equipment, in particular to a gene detection sample storage device with a classification structure. Background Art
[0002] Genetic testing primarily involves extracting DNA or RNA from human tissue or biological fluid samples (such as blood, saliva, and cell scrapings) and analyzing them using molecular biology methods to determine the desired gene sequence. This method can reveal an individual's genetic information, which can then be used for a variety of purposes, including genetic counseling, disease diagnosis, disease risk assessment, and drug response prediction.
[0003] Existing genetic testing sample storage devices do not have a portable classification effect during use, such as the automated sample collection device disclosed in application number CN202021054000.7. Existing genetic testing sample storage devices do not have a portable classification effect during use. Some storage devices have deficiencies in classification identification, such as unclear and easily confused identification, which makes it difficult to quickly and accurately find the required samples during use. The classification method is single and does not have a regional classification effect. Some devices only achieve classification through simple partitioning or separation, which cannot meet the complex and diverse genetic testing sample classification needs.
[0004] Therefore, it is necessary to invent a gene detection sample storage device with a classification structure to solve the above problems. Utility Model Content
[0005] The purpose of the utility model is to provide a gene detection sample storage device with a classification structure to solve the problem that the classification effect is not portable during use.
[0006] In order to achieve the above-mentioned purpose, the present invention provides the following technical solutions: a genetic testing sample storage device with a classification structure, comprising a storage box, a top cover, a cover edge, an eave strip, a fixing plate, an inner layer body, a middle partition, a placement plate and a sample tube, wherein a top cover is provided on the top of the storage box, cover edges are provided on both sides of the top cover, an eave strip is provided at the connection between the top of the cover edge and the top cover, a fixing plate is provided under one side of the top cover, an inner layer body is provided inside the storage box, a middle partition is provided in the middle of the inner layer body, placement plates are fixedly installed in the middle of both sides of the middle partition, and a number of sample tubes are placed in the middle of the placement plate.
[0007] Preferably, magnetic blocks are installed on the inner wall of the top cover and the side walls of the cover edge, and magnetic grooves matching the size of the magnetic blocks are opened on the upper sides of the outer wall of the storage box and the upper front side wall.
[0008] Preferably, the eaves connecting strip connects the top cover and the cover edge and is a soft rubber strip, and the cover edge is flipped and folded on the top cover through the eaves connecting strip.
[0009] Preferably, the inner side of the fixed plate is fixedly connected to the side wall of the storage box through a fixed adhesive plate, and a connecting shaft is provided at the connection between the top of the fixed plate and the lower end of the top cover, and the top cover is flipped open and closed above the storage box through the connecting shaft.
[0010] Preferably, the middle partition divides the inner layer body into two parts, both ends of the middle partition are provided with card slots, the middle of both sides of the inner wall of the inner layer body are equipped with convex strips that match the card slots, and both sides of the middle of the middle partition are fixed with hand plates.
[0011] Preferably, there are two placement plates, which are located on both sides of the middle partition respectively. Six through holes are opened on the surface of each placement plate. A stabilizing sleeve is fixedly provided below the through hole. A non-slip gasket is provided at the upper port of the stabilizing sleeve, and the sample tube is placed in the stabilizing sleeve.
[0012] Preferably, a sealing cover is provided on the top of the sample tube, a coding plate is provided above one side of the outer wall of the sample tube, the interior of the sealing cover is hollow, a glass cover is provided above the sealing cover, and one side of the edge of the glass cover is rotatably connected through a rotating shaft.
[0013] Preferably, a classification label is provided in the inner hollow of the sealing cover, a snap-fit hole is provided at the top ring of the sealing cover, and a snap-fit plug is correspondingly installed at the bottom edge of the glass cover.
[0014] In the above technical solution, the technical effects and advantages provided by the utility model are:
[0015] This genetic testing sample storage device with a classification structure divides the inner layer into two parts through a middle partition, which can conveniently classify and store different types of genetic testing samples, reducing the possibility of sample confusion. The through-holes and stable sleeve design on the placement plate ensure that each sample tube has a fixed position, which is convenient for quick retrieval and inventory. The coding plate on the outer wall of the sample tube and the classification label inside the sealing cover provide dual identification of the sample, which is convenient for identification and tracking. The information on the coding plate and the classification label can record detailed information of the sample, such as sample type, collection date, test items, etc., which helps to improve the accuracy and traceability of sample management. This genetic testing sample storage device with a classification structure has demonstrated significant beneficial effects in sample management, safety, ease of operation, sample identification and tracking, and durability and stability of the device, providing strong support for the smooth progress of genetic testing experiments. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0017] Figure 2 This is a schematic diagram of the inner layer installation structure of the utility model;
[0018] Figure 3 This is a schematic diagram of the top cover structure of the present invention when viewed from above;
[0019] Figure 4 This is a schematic diagram of the sample tube installation structure of the utility model;
[0020] Figure 5 This is a schematic structural diagram of the sealing cover of the present invention.
[0021] Description of reference numerals:
[0022] 1. Storage box; 2. Top cover; 201. Magnetic block; 202. Magnetic slot; 3. Lid edge; 4. Eaves strip; 5. Fixed plate; 501. Fixed adhesive plate; 502. Connecting shaft; 6. Inner body; 7. Middle partition; 701. Card slot; 702. Handle plate; 8. Placement plate; 801. Stabilizing sleeve; 802. Anti-slip gasket; 9. Sample tube; 901. Sealing cover; 902. Coding plate; 903. Glass cover; 904. Rotating shaft; 905. Classification label; 906. Snap-fit hole; 907. Snap-fit plug. DETAILED DESCRIPTION
[0023] In order to enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings.
[0024] The utility model provides Figure 1-5The device is a genetic testing sample storage device with a classification structure, comprising a storage box 1, a top cover 2, a cover edge 3, an eave strip 4, a fixing plate 5, an inner layer 6 and a middle partition 7. The top of the storage box 1 is provided with a top cover 2, and magnetic blocks 201 are installed on the inner wall of the top cover 2 and the side wall of the cover edge 3. Magnetic grooves 202 matching the size of the magnetic blocks 201 are provided on the upper sides of the outer wall of the storage box 1 and the upper front side wall. Both sides of the top cover 2 are provided with a cover edge 3, and an eave strip 4 is provided at the connection between the top of the cover edge 3 and the top cover 2. The eave strip 4 connects the top cover 2 and the cover edge 3 and is a soft rubber strip. The cover edge 3 is flipped and folded on the top cover 2 through the eave strip 4. 2 is provided with a fixing plate 5 below one side, the inner side of the fixing plate 5 is fixedly connected to the side wall of the storage box 1 through a fixing adhesive plate 501, a connecting shaft 502 is provided at the connection between the top of the fixing plate 5 and the bottom of one end of the top cover 2, and the top cover 2 is flipped open and closed above the storage box 1 through the connecting shaft 502, and an inner layer body 6 is provided inside the storage box 1, a middle partition 7 is provided in the middle of the inner layer body 6, and the middle partition 7 divides the inner layer body 6 into two parts, and a card slot 701 is provided at both ends of the middle partition 7, and convex strips that engage with the card slot 701 are installed in the middle of both sides of the inner wall of the inner layer body 6, and a portable plate 702 is fixedly installed on both sides of the middle of the middle partition 7;
[0025] A placement plate 8 is fixedly installed in the middle of both sides of the middle partition 7. There are two placement plates 8, which are respectively located on both sides of the middle partition 7. Six through holes are opened on the surface of each placement plate 8. A stabilizing sleeve 801 is fixedly set below the through hole. An anti-slip gasket 802 is set at the upper end of the stabilizing sleeve 801. The sample tube 9 is placed in the stabilizing sleeve 801. Several sample tubes 9 are placed in the middle of the placement plate 8. A sealing cover 901 is set on the top of the sample tube 9. A coding plate 902 is set above one side of the outer wall of the sample tube 9. The interior of the sealing cover 901 is hollow. A glass cover 903 is set above the sealing cover 901. One edge side of the glass cover 903 is rotatably connected by a rotating shaft 904. A classification label 905 is set at the hollow inside the sealing cover 901. A snap-fit hole 906 is opened at the top circle of the sealing cover 901, and a snap-fit plug 907 is correspondingly installed at the bottom edge of the glass cover 903.
[0026] This utility works as follows:
[0027] Refer to the instruction manual Figure 1-5, for this type of genetic testing sample storage device with a classification structure, when in use, the storage box 1 is first used as the main structure to accommodate all other components and sample tubes 9. The top cover 2 is connected to the storage box 1 through the connecting shaft 502 on the fixing plate 5, and can be flipped open and closed to ensure the safe storage of the sample tubes 9. The design of the magnetic block 201 and the magnetic groove 202 enhances the sealing and stability between the top cover 2 and the storage box 1. The cover edge 3 is located on both sides of the top cover 2 and is connected to the top cover 2 through the eaves strip 4. The eaves strip 4 allows the cover edge 3 to be flipped and folded on the top cover 2, which is convenient for the opening and closing operation of the top cover 2 and also increases the flexibility of the device. The inner layer 6 is located inside the storage box 1, providing storage space for the sample tubes 9. The middle partition 7 divides the inner layer 6 into two parts, which is convenient for the classified storage of different types of sample tubes 9. The middle The two ends of the partition 7 are engaged with the convex strips of the inner layer 6 through the card groove 701 to ensure stable installation. The design of the carrying plate 702 makes it easy to lift the middle partition 7 together with the sample tube 9. The placement plates 8 are located on both sides of the middle partition 7. There is a through hole on the surface of each placement plate 8. There is a stabilizing sleeve 801 and an anti-slip gasket 802 under the through hole to fix and support the sample tube 9. This design prevents the sample tube 9 from moving or tipping over during transportation or storage. The sample tube 9 is used to store genetic testing samples. There is a sealing cover 901 on the top to ensure the sealing and safety of the sample. The interior of the sealing cover 901 is hollow and can be used to place a classification label 905 for easy identification and classification. The glass cover 903 is connected to the sealing cover 901 through a rotating shaft 904 to facilitate opening and closing the sealing cover 901. The coding plate 902 provides additional identification information for the sample tube 9;
[0028] When using the device, first open the top cover 2 by turning over the connecting shaft 502 on the fixing plate 5 to expose the inner layer 6 and the placement plate 8. As needed, different types of sample tubes 9 are placed into the corresponding stabilizing sleeves 801 on the placement plate 8, ensuring that the sealing caps 901 of the sample tubes 9 are tightly closed, and check whether the information on the coding plate 902 is correct. Then turn the top cover 2 back over the storage box 1 and ensure that the top cover 2 is tightly closed through the adsorption effect of the magnetic block 201 and the magnetic groove 202. If the entire device needs to be moved or stored, the handrail 7 on the middle partition 7 can be grasped. 02 to operate. When it is necessary to take out the sample tube 9, first open the top cover 2, then find the required sample tube 9 according to the information on the classification label 905 and the coding label 902, and gently pull it out. Regularly clean the storage box 1, the placement plate 8 and the sample tube 9 to ensure their cleanliness and hygiene. At the same time, check the sealing of the sealing cover 901 to ensure the safe storage of the sample. The genetic testing sample storage device not only provides a safe and orderly sample storage function, but also improves the efficiency and accuracy of sample management through design elements such as the classification label 905 and the coding label 902.
Claims
1. A gene detection sample storage device with a classification structure, comprising a storage box (1), a top cover (2), a cover edge (3), a flange (4), a fixing plate (5), an inner layer (6), a middle partition (7), a placement plate (8) and a sample tube (9), characterized in that: The storage box (1) is provided with a top cover (2) on the top, and cover edges (3) are provided on both sides of the top cover (2). An eaves strip (4) is provided at the connection between the top of the cover edge (3) and the top cover (2). A fixing plate (5) is provided below one side of the top cover (2). An inner layer (6) is provided inside the storage box (1), and a middle partition (7) is provided in the middle of the inner layer (6). A placement plate (8) is fixedly installed in the middle of both sides of the middle partition (7), and a plurality of sample tubes (9) are placed in the middle of the placement plate (8).
2. The genetic testing sample storage device with a classification structure according to claim 1, characterized in that: Magnetic blocks (201) are installed on the inner wall of the top cover (2) and the side wall of the cover edge (3), and magnetic grooves (202) matching the size of the magnetic blocks (201) are opened on the upper sides of the outer wall and the upper front side wall of the storage box (1).
3. The gene testing sample storage device with a classification structure according to claim 1, characterized in that: The eaves connecting strip (4) connects the top cover (2) and the cover edge (3) and is a soft rubber strip. The cover edge (3) is turned over and folded on the top cover (2) through the eaves connecting strip (4).
4. The genetic testing sample storage device with a classification structure according to claim 1, characterized in that: The inner side of the fixed plate (5) is fixedly connected to the side wall of the storage box (1) via a fixed adhesive plate (501); a connecting shaft (502) is provided at the connection between the top end of the fixed plate (5) and the lower end of the top cover (2); the top cover (2) is turned over and opened and closed above the storage box (1) via the connecting shaft (502).
5. The gene testing sample storage device with a classification structure according to claim 1, characterized in that: The middle partition (7) divides the interior of the inner layer body (6) into two parts, and a card slot (701) is provided at both ends of the middle partition (7). A convex strip that matches the card slot (701) is installed in the middle of both sides of the inner wall of the inner layer body (6), and a handheld board (702) is fixedly installed on both sides of the middle of the middle partition (7).
6. The gene testing sample storage device with a classification structure according to claim 1, characterized in that: There are two placement plates (8), which are respectively located on both sides of the middle partition (7). Six through holes are opened on the surface of each placement plate (8). A stabilizing sleeve (801) is fixedly arranged below the through holes. An anti-slip gasket (802) is arranged at the upper end of the stabilizing sleeve (801). The sample tube (9) is placed in the stabilizing sleeve (801).
7. The gene testing sample storage device with a classification structure according to claim 1, characterized in that: A sealing cover (901) is provided on the top of the sample tube (9), a coding plate (902) is provided above one side of the outer wall of the sample tube (9), the interior of the sealing cover (901) is hollow, a glass cover (903) is provided above the sealing cover (901), and one side of the edge of the glass cover (903) is rotatably connected via a rotating shaft (904).
8. The gene testing sample storage device with a classification structure according to claim 7, characterized in that: A classification label (905) is provided in the hollow interior of the sealing cover (901), a snap-fit hole (906) is provided at the top ring of the sealing cover (901), and a snap-fit plug (907) is correspondingly installed at the bottom edge of the glass cover (903).
Citation Information
Patent Citations
Gene detection storage box
CN213736343U