Bacteriostatic medical image in-vitro positioning paste
By using silver ion nano-silver antibacterial materials and a volatile layer design in the in vitro positioning patch for medical images, the problem of wear of the antibacterial coating of the positioning patch is solved, achieving a long-lasting antibacterial effect and a comfortable user experience.
Patent Information
- Application Number
- CN202422540349.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-10-21
AI Technical Summary
The antibacterial coating of existing medical image in vitro positioning stickers is easily worn during use, affecting the antibacterial effect.
Nano-silver antibacterial material made of silver ions is used, and a volatile layer is set above and below it. Antibacterial gas is emitted through the cone hole. Combined with the breathable layer and sensor to monitor the skin condition, the antibacterial effect is enhanced and the comfort of use is improved.
It achieves the durability and comfort of the antibacterial effect, reduces the friction of the positioning patch, monitors the skin condition, and improves the user experience of the positioning patch.
Smart Images

Figure CN223438649U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of in-vitro positioning stickers, especially relates to a bacteriostatic medical image in-vitro positioning sticker. BACKGROUND
[0002] The medical image in-vitro positioning sticker is an auxiliary tool in the examination process, aiming to help accurate positioning and record the specific parts of the patient, to ensure the definition and accuracy of the image, the positioning sticker usually has clear marks or patterns, which can help medical staff clearly identify the specific area in the image, help to provide the reference point of the imaging, and improve the accuracy of the doctor in image analysis.
[0003] Most of the existing medical image in-vitro positioning stickers use the method of spraying bacteriostatic coating on the outer end of the medical image in-vitro positioning sticker, but the surface of the medical image in-vitro positioning sticker will be worn during use, which will cause the bacteriostatic coating to wear off and affect the bacteriostatic effect, therefore, the technical personnel in the field provide a bacteriostatic medical image in-vitro positioning sticker to solve the problems in the above background technology. SUMMARY
[0004] The utility model discloses a bacteriostatic medical image in-vitro positioning sticker to solve the shortcomings in the prior art, which has better bacteriostatic effect.
[0005] To achieve the above object, the utility model provides the following technical scheme: a bacteriostatic medical image in-vitro positioning sticker, including lower layer, two bacteriostatic mechanisms, two sensors, two embedding barrels and three large pieces of adhesive, the lower layer upper end face is fixedly arranged with upper layer, the lower layer is internally provided with bottom layer and breathable layer, the lower layer lower end face is fixedly arranged with surrounding adhesive at the completion position.
[0006] Two bacteriostatic mechanisms include two outer frames, two bacteriostatic materials and four clamping blocks, a plurality of taper holes are formed in the upper end face of the two bacteriostatic mechanisms, and a volatile layer is fixedly sleeved on the upper side and the lower side of the inner wall of the two bacteriostatic mechanisms.
[0007] Further, the two embedding barrels are respectively embedded on the two sides of the upper end face of the upper layer, and the two bacteriostatic mechanisms are respectively clamped in the inner wall of the two embedding barrels.
[0008] Further, the lower end face of the lower layer is fixedly provided with positioning cones at the two sides of the middle position, and the three large pieces of adhesive are respectively fixedly arranged on the lower end face of the lower layer.
[0009] Further, two clamping grooves are formed in the inner wall of the two embedding barrels, and four clamping blocks are respectively clamped in the inner wall of the four clamping grooves.
[0010] Further, two sensors are fixedly arranged at lower side positions of the bottom layer, and the air-permeable layer is arranged at an upper end surface of the bottom layer.
[0011] Further, the upper layer is internally provided with a surface layer and a bacteriostatic layer, and the surface layer is fixedly arranged at an upper end surface of the bacteriostatic layer.
[0012] Further, two bacteriostatic materials are fixedly arranged at middle positions of inner walls of the two outer frames, and four clamping blocks are fixedly arranged at outer end surfaces of the two outer frames.
[0013] The utility model has the advantages of the following:
[0014] 1. The medical image external positioning patch provided by the utility model is used for adhering to the skin, and when the positioning patch is adhered to different patients, the surrounding adhesive sheet and the large adhesive sheet can be torn open, and the number of the adhesive sheets can be adjusted to make the positioning patch more comfortable.
[0015] 2. The medical image external positioning patch provided by the utility model is internally provided with bacteriostatic materials, the bacteriostatic materials are made of silver ions, the nano silver has excellent antibacterial performance, can continuously release silver ions when contacting moisture or humidity, and thus plays the antibacterial role, and the volatile layers are arranged above and below the bacteriostatic materials, the volatile layers inhibit the volatilization of the bacteriostatic materials, thus avoiding the quick volatilization of the bacteriostatic materials, the bacteriostatic material gas passing through the volatile layers is emitted from the conical holes, plays the bacteriostatic function, and makes the bacteriostatic effect of the positioning patch better. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a perspective view of the utility model;
[0017] Figure 2 It is a bottom view of the utility model;
[0018] Figure 3 It is a perspective view of the embedded cylinder of the utility model;
[0019] Figure 4 It is a front view of the bottom layer of the utility model;
[0020] Figure 5 It is a perspective view of the bacteriostatic mechanism of the utility model;
[0021] Figure 6 It is a front view of the bacteriostatic mechanism of the utility model.
[0022] LEGEND:
[0023] 1, bacteriostatic mechanism; 2, upper layer; 3, lower layer; 4, bacteriostatic layer; 5, large piece of adhesive patch; 6, surrounding adhesive patch; 7, positioning cone; 8, embedded cylinder; 9, clamping groove; 10, breathable layer; 11, bottom layer; 12, sensor; 13, surface layer; 101, cone hole; 102, clamping block; 103, outer frame; 104, volatile layer; 105, bacteriostatic material. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0025] Referring to Figure 1 , Figure 2 , Figure 3 , Figure 4 An embodiment provided by the present application: a bacteriostatic medical image in-vitro positioning patch, comprising a lower layer 3, two bacteriostatic mechanisms 1, two sensors 12, two embedded cylinders 8 and three large pieces of adhesive patch 5, the upper end surface of the lower layer 3 is fixedly provided with an upper layer 2, the inside of the lower layer 3 is provided with a bottom layer 11 and a breathable layer 10, and the lower end surface of the lower layer 3 is fixedly provided with a surrounding adhesive patch 6 at a complete position;
[0026] The two embedded cylinders 8 are respectively embedded on the two sides of the upper end surface of the upper layer 2, the two bacteriostatic mechanisms 1 are respectively clamped on the inner walls of the two embedded cylinders 8, the lower end surface of the lower layer 3 is fixedly provided with a positioning cone 7 at the two sides of the middle, the three large pieces of adhesive patch 5 are respectively fixedly provided on the lower end surface of the lower layer 3, the inner walls of the two embedded cylinders 8 are provided with two clamping grooves 9, four clamping blocks 102 are respectively clamped on the inner walls of the four clamping grooves 9, the two sensors 12 are respectively fixedly provided on the lower side of the bottom layer 11, the breathable layer 10 is provided on the upper end surface of the bottom layer 11, the inside of the upper layer 2 is provided with a surface layer 13 and a bacteriostatic layer 4, and the surface layer 13 is fixedly provided on the upper end surface of the bacteriostatic layer 4.
[0027] Specifically, when the positioning sticker is used, the positioning sticker adhered to the skin is torn off from the surrounding adhesive piece 6 and the large adhesive piece 5, and the positioning cone 7 is arranged below the lower layer 3. The position of the positioning sticker can be determined through the positioning cone 7. After the positioning sticker is fixed, the bacteriostatic mechanism 1 is inserted into the inner wall of the embedding cylinder 8, the clamping block 102 at the outer end of the bacteriostatic mechanism 1 is clamped into the inner wall of the clamping groove 9, and the bacteriostatic mechanism 1 is fixed. The surface layer 13 and the bacteriostatic layer 4 are arranged in the upper layer 2. The bacteriostatic ability of the positioning sticker is enhanced through the bacteriostatic layer 4 in the upper layer 2. The bacteriostatic layer 4 is composed of natural extracts, and the bacteriostatic layer 4 composed of natural extracts is more environmentally friendly. The surface layer 13 in the upper layer 2 can reduce the friction of the positioning sticker. The breathable layer 10 and the bottom layer 11 are arranged in the lower layer 3. The breathable ability of the positioning sticker is enhanced through the breathable layer 10, so that the positioning sticker does not produce a large uncomfortable feeling after long-term application. The sensor 12 in the bottom layer 11 can monitor the skin temperature and humidity, so that the positioning sticker is more convenient to use.
[0028] Reference Figure 5 , Figure 6 The two bacteriostatic mechanisms 1 include two outer frames 103, two bacteriostatic materials 105, and four clamping blocks 102. A plurality of taper holes 101 are formed in the upper end face of the two bacteriostatic mechanisms 1. The upper side and the lower side of the inner wall of the two bacteriostatic mechanisms 1 are fixedly provided with a volatile layer 104. The two bacteriostatic materials 105 are fixedly arranged at the middle positions of the inner walls of the two outer frames 103. The four clamping blocks 102 are fixedly arranged at the outer end faces of the two outer frames 103.
[0029] Specifically, the bacteriostatic mechanism 1 is internally provided with the bacteriostatic material 105. The bacteriostatic material 105 is made of silver ions. Nano-silver has excellent antibacterial performance and can continuously release silver ions when it comes into contact with moisture or humidity, thereby playing its antibacterial role. The volatile layer 104 is arranged above and below the bacteriostatic material 105. A plurality of taper holes 101 are formed in the upper side of the outer frame 103. The volatile layer 104 can inhibit the volatilization of the bacteriostatic material 105, thereby avoiding the rapid volatilization of the bacteriostatic material 105. The volatile layer 104 is made of a polymer base material. The bacteriostatic material 105 gas passing through the volatile layer 104 is emitted from the taper holes 101, thereby playing a bacteriostatic function.
[0030] Working principle: when using the positioning sticker, tear the surrounding adhesive piece 6 and the large adhesive piece 5 to pass through the positioning of the positioning cone 7, adhere the positioning sticker to the skin, then insert the bacteriostatic mechanism 1 into the inner wall of the embedding cylinder 8, the clamping block 102 is clamped into the inner wall of the clamping groove 9 to fix the bacteriostatic mechanism 1, the upper layer 2 is provided with a surface layer 13 and a bacteriostatic layer 4, the bacteriostatic layer 4 enhances the antibacterial ability of the positioning sticker, and the surface layer 13 can reduce the friction of the positioning sticker, and the lower layer 3 is provided with a breathable layer 10 and a bottom layer 11, the breathable layer 10 can enhance the air permeability of the positioning sticker, and the sensor 12 in the bottom layer 11 can monitor the skin temperature and humidity;
[0031] Secondly, the bacteriostatic mechanism 1 is provided with bacteriostatic material 105, volatile layers 104 are arranged above and below the bacteriostatic material 105, and a plurality of taper holes 101 are formed in the upper frame 103, the volatile layers 104 can inhibit the volatilization of the bacteriostatic material 105, and the gas passing through the volatile layers 104 is discharged from the taper holes 101, thereby achieving the function of bacteriostasis.
[0032] Finally, it should be pointed out that: the above only describes preferred embodiments of the present application and is not intended to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for some technical features, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. An antibacterial medical image in vitro positioning patch, comprising a lower layer (3), two antibacterial mechanisms (1), two sensors (12), two embedded tubes (8) and three large adhesive sheets (5), characterized in that: The upper end surface of the lower layer (3) is fixedly provided with the upper layer (2), the interior of the lower layer (3) is provided with the bottom layer (11) and the breathable layer (10), and the lower end surface of the lower layer (3) is fixedly provided with the surrounding adhesive sheet (6); The two antibacterial mechanisms (1) comprise two outer frames (103), two antibacterial materials (105) and four clamping blocks (102); a plurality of conical holes (101) are provided on the upper end surfaces of the two antibacterial mechanisms (1); and a volatile layer (104) is fixedly provided on the upper and lower sides of the inner walls of the two antibacterial mechanisms (1).
2. The antibacterial medical image in vitro positioning sticker according to claim 1, characterized in that: The two embedded cylinders (8) are respectively embedded and arranged at positions on both sides of the upper end surface of the upper layer (2), and the two antibacterial mechanisms (1) are respectively clamped and arranged on the inner walls of the two embedded cylinders (8).
3. The antibacterial medical image in vitro positioning sticker according to claim 1, characterized in that: Positioning cones (7) are fixedly provided at both sides of the middle of the lower end surface of the lower layer (3), and the three large adhesive sheets (5) are fixedly provided on the lower end surface of the lower layer (3).
4. The antibacterial medical image in vitro positioning sticker according to claim 1, characterized in that: Two clamping grooves (9) are provided on the inner walls of the two embedded cylinders (8), and the four clamping blocks (102) are respectively clamped and arranged on the inner walls of the four clamping grooves (9).
5. The antibacterial medical image in vitro positioning sticker according to claim 1, characterized in that: The two sensors (12) are respectively fixedly arranged at the lower side of the bottom layer (11), and the air permeable layer (10) is arranged on the upper end surface of the bottom layer (11).
6. The antibacterial medical image in vitro positioning sticker according to claim 1, characterized in that: A surface layer (13) and an antibacterial layer (4) are provided inside the upper layer (2), and the surface layer (13) is fixedly provided on the upper end surface of the antibacterial layer (4).
7. The antibacterial medical image in vitro positioning sticker according to claim 1, characterized in that: The two antibacterial materials (105) are respectively fixedly arranged at the middle positions of the inner walls of the two outer frames (103), and the four clamping blocks (102) are respectively fixedly arranged at the outer end surfaces of the two outer frames (103).