Suture needle storage disc

The suture needle storage tray with magnetic adsorption and adhesion functions solves the problem of suture needles being easily lost during surgery, achieving stable adsorption and convenient retrieval of suture needles, thus improving surgical management efficiency and safety.

CN223653871UActive Publication Date: 2025-12-12XIEHE HOSPITAL ATTACHED TO TONGJI MEDICAL COLLEGE HUAZHONG SCI & TECH UNIV
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Patent Information

Application Number
CN202423052172.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-12-12
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

Suture needles are easily lost or left behind during surgery, and existing magnetic needle trays cannot be conveniently placed outside the surgical instrument table, making them difficult to find and manage.

Method used

A suture needle storage tray was designed, which uses magnetic adsorption and adhesive functions, combined with an arc-shaped structure and antibacterial material, to achieve stable adsorption and convenient retrieval of suture needles.

Benefits of technology

It effectively prevents suture needles from slipping or getting lost, reduces search time, improves surgical efficiency, and meets the requirements of surgical convenience and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the field of medical instruments, and particularly discloses a suture needle storage disc. The suture needle storage disc comprises a disc bottom, a storage surface of which can attract suture needles through magnetism; the edge is arranged around the storage surface of the tray bottom and protrudes out of the storage surface of the tray bottom; wherein a containing groove is formed between the containing face of the tray bottom and the edge, and the other face of the tray bottom is provided with an adhesive portion. According to the suture needle storage disc, the suture needle can be adsorbed to the surface through the disc bottom, and therefore even if the suture needle moves in the operation process, the suture needle can be adsorbed to the suture needle storage disc and cannot slide off or be lost. And meanwhile, the edge of the storage surface can further prevent the suture needle from sliding off from the storage disc. In addition, the suture needle storage disc can be conveniently used in the surgical suture scene through the adhesion part, the suture needle storage disc can be placed in the operation range of a surgeon through the adhesion function, and the suture needles can be conveniently taken and placed.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of medical apparatus and instruments, especially relates to a suture needle storage tray. BACKGROUND

[0002] Loss or leaving of medical instruments during surgery is a rare but potential medical safety event that can lead to surgery delay, increased complications, and anxiety of patients and medical staff. Suture needle is a commonly used instrument in surgical operation, which has very high use rate, but due to its small size, it is not convenient for intraoperative instrument management. If the suture needle is not managed properly, it is a challenge for surgeons to find the suture needle because of its small size and light weight, and it is easy to move during the search process.

[0003] At present, there are some magnetic needle trays (such as CN2015209086968 discloses a magnet slot suture needle plate), but the common needle tray can only be placed on the surgical instrument table at present, and cannot be placed in a more convenient position. UTILITY MODEL CONTENT

[0004] In order to solve the above problems, the utility model adopts the following technical scheme:

[0005] The suture needle storage tray comprises:

[0006] The receiving surface of the bottom can attract the suture needle by magnetic force,

[0007] The edge is arranged around the receiving surface of the bottom and protrudes outward from the receiving surface of the bottom.

[0008] The receiving surface of the bottom and the edge form a containing groove, and the other surface of the bottom has an adhesive part.

[0009] In some ways, the adhesive part has a sticky layer connected with the bottom, and the other surface of the sticky layer is provided with a release paper.

[0010] In some ways, the adhesive part is an antibacterial adhesive.

[0011] In some ways, the bottom is provided with a magnetic body.

[0012] Further, the material of the bottom and the edge is antibacterial silica gel.

[0013] Further, the magnetic body is located between the bottom and the adhesive layer, or the magnetic body is located in the bottom, and the silica gel layer of the bottom covers the magnetic body.

[0014] Further, the magnetic body is located on the receiving surface of the bottom.

[0015] Further, the silicon gel layer of the bottom of the disc is coated with a magnetic metal piece; the magnetic metal piece can be attracted to the magnetic body so that the magnetic body is attached to the receiving surface of the disc bottom.

[0016] In some modes, the magnetic force of the magnetic body covers the receiving surface of the disc bottom.

[0017] In some modes, the rim is an arc-shaped structure, and an arc-shaped groove is formed on the inner side of the rim along the length direction; a strip-shaped groove is arranged on the receiving surface of the disc bottom along the length direction of the suture needle receiving disc.

[0018] In the present disclosure, the disc bottom can adsorb the suture needle on the surface, so that even if the suture needle moves during the operation, it can be adsorbed on the suture needle receiving disc and will not slip or be lost. At the same time, the rim of the receiving surface can further prevent the suture needle from slipping off the receiving disc. In addition, the adhesive part can make the suture needle receiving disc convenient to use in the operation suture scene, and can be placed in the operation range of the operating doctor through the adhesive function, and the suture needle can be conveniently taken and placed. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 Fig. 1 is a schematic view of one form of a suture needle receiving disc;

[0020] Figure 2 Fig. 2 is a schematic view of another form of a suture needle receiving disc from another perspective;

[0021] Figure 3 Fig. 3 is a schematic view of an exploded structure of one example of a suture needle receiving disc;

[0022] Figure 4 Fig. 4 is a schematic view of another example form of a suture needle receiving disc;

[0023] Figure 5 Fig. 5 is a sectional view of a rim of a suture needle receiving disc;

[0024] Figure 6 Fig. 6 is a use state diagram of a suture needle receiving disc.

[0025] In the drawings:

[0026] 100 disc bottom, 200 rim, 210 arc-shaped groove, 300 receiving groove, 400 adhesive part, 410 adhesive layer, 420 release paper, 430 magnetic body, 500 suture needle. DETAILED DESCRIPTION

[0027] The present disclosure will be further described below in conjunction with the drawings. In order to solve any of the foregoing problems, the following technical features can be combined to solve the corresponding problems.

[0028] The suture needle receiving disc, such as Figure 1As shown in the drawings, it comprises: a disc bottom 100, which can accommodate a suture needle through magnetic adsorption; a rim 200, which is arranged around the accommodating surface of the disc bottom 100 and protrudes outward from the accommodating surface of the disc bottom 100. The accommodating surface of the disc bottom 100 and the rim 200 form a containing groove 300, and the other surface of the disc bottom 100 has an adhesive part 400.

[0029] The suture needle accommodating disc of this type can be arranged in different forms as needed to store different suture needles, so as to facilitate convenient selection and placement during surgery. With the suture needle accommodating disc, doctors and nurses can find and place suture needles more quickly, especially in complex surgical operations, a plurality of suture needle accommodating discs can be used at the same time to distinguish suture needles of different sizes, reduce needle selection time, and the position of the suture needle accommodating disc adhered can be flexibly adjusted according to the needs of the operation, without affecting the operation. And the suture needle is placed in the magnetic area during the entire operation, and the placement position of the suture needle is also clearer, reducing the time for nurses to find and count the needle after the operation.

[0030] In order to facilitate the placement of the suture needle accommodating disc at different positions, such as Figure 2 As shown in the drawings, the adhesive part 400 has a paste layer 410 connected with the disc bottom 100, and a release paper 420 is arranged on the other surface of the paste layer 410. The paste layer 410 of the suture needle accommodating disc has adhesive properties, and can be placed in the operating range of the surgeon through the adhesive function, facilitating the taking and placing of the suture needle. For example, when suturing a surgical wound, the suture needle accommodating disc can be placed on a sterile non-woven fabric beside the sutured wound, so that the suture needle on the suture needle accommodating disc can be taken and placed through the shortest operation stroke. In actual application, the adhesive part 400 generally uses antibacterial paste glue, and a glue with too low adhesive property is generally selected to facilitate the taking of the disc body and the placement of the disc body on an inclined surface without sliding. In terms of glue, a glue such as the back surface of an electrotome can be used. Other structures with adhesive function can also be used to meet the antibacterial requirements of the operating room.

[0031] In the standby state, the release paper 420 can protect the adhesive surface of the paste layer 410, and after the release paper 420 is torn off, the adhesive surface of the paste layer 410 is exposed, and the adhesive operation can be realized.

[0032] In order to enable the accommodating surface of the disc bottom 100 to adsorb the suture needle through magnetism, the disc bottom 100 is provided with a magnetic body 430, which mainly serves to adsorb the suture needle and does not require adsorption of other substances (not excluded), and in actual application, it can stably adsorb the suture needle. As shown in the drawings, Figure 6In addition, a strip-shaped groove can be arranged on the receiving surface of the bottom 100 along the length direction of the suture needle receiving tray. The strip-shaped groove is concave, and the cross section of the strip-shaped groove is generally arc-shaped. When the suture needle is placed on the tray, the suture needle crosses the strip-shaped groove, so that the suture needle adsorbed on the receiving surface forms a gap with the inner wall of the strip-shaped groove. Thus, the surgical tool can easily clamp the suture needle. The two arms of the clamp body can be respectively embedded in the strip-shaped grooves on both sides of the suture needle to place the suture needle in the clamp head, so that the suture needle is easily clamped. The strip-shaped groove with an arc-shaped cross section is also easy to clean, and there is no dead angle in hygiene. The strip-shaped groove provides convenience for the reuse of the suture needle receiving tray.

[0033] In actual application, the materials of the bottom 100 and the rim 200 can be selected as needed. The materials of the bottom 100 and the rim 200 can be antibacterial silica gel or other materials, which meet the requirements of the materials of the instruments used in surgery. Of course, the bottom 100 and the rim 200 can also use other materials suitable for instrument receiving trays.

[0034] As for the installation method of the magnetic body 430, various methods can be used. First, the magnetic body 430 is located between the bottom 100 and the adhesive layer 410. Second, the magnetic body 430 is adsorbed to the bottom 100, so that the bottom 100 is covered with magnetism and can adsorb the suture needle. Third, the magnetic body 430 is located in the bottom 100, and the silica gel layer of the bottom 100 covers the magnetic body 430. Of course, other installation methods of the magnetic body 430 can also be used according to other needs.

[0035] As for the first installation method of the magnetic body 430, as shown in FIG. 4A, the magnetic body 430 is located between the bottom 100 and the adhesive layer 410. The adhesive layer 410 can use a double-sided adhesive profile, and then the edges of the adhesive layer 410 are attached to the bottom 100 to install the magnetic body 430 on the bottom surface of the bottom 100. At this time, the magnetic body 430 can still adsorb the suture needle on the receiving surface of the bottom 100. Figure 3 As for the second installation method of the magnetic body 430, as shown in FIG. 4B, the magnetic body 430 is adsorbed to the bottom 100, so that the bottom 100 is covered with magnetism and can adsorb the suture needle.

[0036] Figure 4 ​As shown, the magnetic body 430 can be directly attached to the bottom of the tray 100 (the figure is for illustrative purposes only and does not represent the actual proportions of the components). The silicone layer of the tray bottom 100 encapsulates a magnetic metal component; in other words, the tray 100 comprises two silicone layers, with the magnetic metal component positioned between them. This magnetic metal component attracts the magnetic body 430, causing it to adhere to the tray bottom 100 and maintaining the magnetic attraction of the storage surface. Alternatively, the magnetic body 430 itself can be encapsulated in antibacterial silicone. In this scenario, the magnetic body 430 can be easily separated from the tray bottom 100. For example, if a suture needle is lost during surgery, the magnetic body 430 can be separated from the tray bottom 100 to better locate the lost suture needle through magnetic attraction, which is more convenient than using the entire suture needle storage tray. Of course, if the magnetic body 430 is attached to the storage surface, a strip groove can be set on the magnetic body 430 to facilitate the clamping of the sewing needle. In this case, the attachment surface of the magnetic body 430 is the storage surface of the bottom of the tray 100.

[0037] The third installation method of the magnetic body 430 is described in detail. The magnetic body 430 is located in the bottom of the tray 100. The bottom of the tray includes two layers of silicone, and the magnetic body 430 is located between the two silicone layers. Thus, the bottom of the tray 100 has magnetic properties and can better attract suture needles.

[0038] In application, to enhance the blocking function of edge 200, such as Figure 5 As shown, the edge 200 has an arc-shaped structure and an arc-shaped groove 210 is formed on its inner side along the length direction, which is the extension direction of the edge 200. When the edge 200 is arc-shaped, it has a stronger blocking ability. Compared with the inner flat design, the arc-shaped groove 210 on the inner side of the edge 200 gives it an inward shape from the middle to the top, which can better block the suture needle and prevent it from slipping off the edge 200.

[0039] In application, in order to better maintain the adsorption of suture needles, the magnetic force of the magnetic body 430 covers the storage surface of the tray bottom 100. The most common approach is to increase the area of ​​the magnetic body 430 to better cover the entire tray bottom 100.

[0040] like Figure 6 As shown, when the suture needles are placed in the suture needle storage tray, each suture needle adheres well to the bottom 100 of the tray. Moving the suture needle storage tray will move the suture needles simultaneously. Furthermore, because the bottom of the suture needle storage tray has an adhesive portion 400, it can be placed on various objects, and the tray maintains a certain degree of adhesion, preventing it from shifting easily. Additionally, if a suture needle is lost, the suture needle storage tray or its magnetic component 430 can be peeled off, and its magnetic force can be used to locate the needle, which is not easily visible to the naked eye, on the operating table.

[0041] Those skilled in the art can clearly understand that various modifications can be made to the above embodiments without departing from the overall spirit and concept of the present application. All of them fall within the protection scope of the present application, and the details can be referred to the prior art. The protection scheme of the present application is subject to the claims attached to the present application.

Claims

1. A suture needle storage tray characterized by, The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device.

2. The suture needle storage tray of claim 1, wherein, The application relates to a suture needle storage device.

3. The suture needle storage tray of claim 1, wherein, The application relates to a suture needle storage device.

4. The suture needle storage tray of claim 1, wherein, The application relates to a suture needle storage device.

5. The suture needle storage tray of claim 4, wherein, The application relates to a suture needle storage device.

6. The suture needle storage tray of claim 4, wherein, The application relates to a suture needle storage device.

7. The suture needle storage tray of claim 4, wherein, The application relates to a suture needle storage device.

8. The suture needle storage tray of claim 7, wherein, The application relates to a suture needle storage device.

9. The suture needle storage tray of claim 1, wherein, The application relates to a suture needle storage device.

10. The suture needle storage tray of claim 4, wherein, The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device. The application relates to a suture needle storage device.