Siphon glass slide special for gynecology department
By designing the multi-region structure and siphon principle of gynecological special siphon slides, the biological contamination problem caused by the flow of traditional slide samples is solved, the sample processing is automated and refined, the pollution risk is reduced, and it is suitable for automated scanning and analysis equipment.
Patent Information
- Application Number
- CN202520011585.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2035-01-03
AI Technical Summary
Traditional ordinary slides lack special sample areas in gynecological examinations, resulting in liquid samples flowing and increasing the risk of biological contamination.
A special siphon slide for gynecology is designed, including a multi-area structure such as limit coating area, treatment mixing area, sample retention area, siphon channel area, main observation area, etc. The sample processing is performed using siphon principle and automation equipment, eliminating coverslip steps, reducing artificial contact, and using anti-stick coating and isolation protective coating frame to prevent contamination.
It realizes the refinement and automation of sample processing, reduces the risk of biological contamination, improves the observation effect, and is suitable for automated scanning and analysis equipment.
Smart Images

Figure CN223217734U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass slides, in particular to a siphon glass slide specially used for gynecology. Background Art
[0002] Gynecology is a medical specialty within medical institutions. It is a subspecialty of obstetrics and gynecology, specializing in the diagnosis and treatment of gynecological diseases in women. It is divided into Western medicine gynecology and Traditional Chinese Medicine gynecology. Diseases of the female reproductive system, including vulvar, vaginal, and uterine diseases, are considered gynecological diseases and can be treated with external therapies. Gynecology is a medical specialty that studies women's diseases, such as the field of study. It can also refer to a hospital department that specializes in women's diseases. Gynecological diseases are diseases of the female reproductive system. There are many types of gynecological diseases, including common ones such as uterine fibroids, ovarian cysts, vaginitis, cervicitis, cervical erosion, pelvic inflammatory disease, adnexitis, dysfunctional uterine bleeding, breast diseases, infertility, menstrual disorders, endometritis, and abnormal vaginal discharge. Women should understand basic medical knowledge about menstruation, childbirth, pregnancy, delivery, and menopause from adolescence, and maintain a positive outlook. This can help prevent or reduce the occurrence of certain gynecological and obstetric diseases.
[0003] In current gynecological examinations, samples are placed on glass slides for testing. Traditional ordinary glass slides do not have a dedicated sample area. Samples are manually smeared on the slides and fixed with coverslips. Liquid samples will flow, posing a risk of biological contamination to the surrounding environment. Utility Model Content
[0004] The purpose of the present utility model is to provide a gynecological siphon slide to solve the problem raised in the above background technology that during the current gynecological examination and treatment, samples are placed on slides for detection. Traditional ordinary slides: commonly used slides do not have a dedicated sample area, and the samples are manually smeared on the slides and fixed with cover slips. Liquid samples will flow, posing a risk of biological contamination to the surrounding environment.
[0005] To achieve the above objectives, the present invention provides the following technical solutions:
[0006] A siphon slide specifically for gynecology comprises a main slide, wherein the top surface of the main slide is horizontally fixedly provided with a limiting coating area, the top surface of the limiting coating area is horizontally fixedly provided with a processing and mixing area, the top surface of the limiting coating area is horizontally fixedly provided with a sample retention area, the side edge of the sample retention area is horizontally provided with a siphon channel area, the top surface of the limiting coating area is horizontally fixedly provided with a main observation area, the top surface of the processing and mixing area is horizontally fixedly provided with an anti-stick coating, the top surface of the sample retention area is horizontally fixedly provided with a condensed glossy coating, the top surface of the main observation area is horizontally fixedly provided with a diffusion coating, the top surface of the diffusion coating is provided with a matching top groove area, and the inner side edge of the matching top groove area is fixedly provided with an isolation and protective coating frame.
[0007] As a preferred embodiment of the present invention: the top surface of the main glass slide is set as an easy-adhesion surface by a frosting process, the limiting coating area is fixed to the center position of the top surface of the main glass slide by using an anti-fouling coating material mixed with high-strength glue, and the limiting coating area and the easy-adhesion surface of the top surface of the main glass slide are fastened and bonded to each other.
[0008] As a preferred embodiment of the present invention: the processing mixing zone is fixedly arranged at a position near one end of the top surface center line of the limiting coating zone, and a raised isolation zone is arranged between the edge of the processing mixing zone and the limiting coating zone.
[0009] As a preferred embodiment of the present invention: the sample retention area is horizontally fixedly arranged on the top surface of the limiting coating area close to the side position of the processing mixing area, and the sample retention area is horizontally arranged at the center position between the processing mixing area and the main observation area, the siphon channel area is horizontally arranged between the sample retention area and the main observation area, and the sample retention area and the main observation area are kept connected to each other through the siphon channel area.
[0010] As a preferred embodiment of the present invention: the main observation area is horizontally fixedly set at one end of the top surface center line of the limiting coating area away from the processing mixing area, the anti-sticking coating is made of anti-sticking material, the condensed smooth coating is made of oil surface liquid isolation material, the matching top groove area is set at the top surface edge of the diffusion coating, the isolation protection coating frame is fixedly bonded to the inner side of the matching top groove area, and the top surface of the isolation protection coating frame protrudes from the top surface of the diffusion coating.
[0011] Compared with the prior art, the beneficial effects of the present invention are:
[0012] The utility model drips reagents and samples into the processing mixing zone to fully mix them, and then adds the mixed liquid into the sample retention zone through a pipette. The liquid will flow to the main observation zone due to the siphon principle of the siphon channel zone, eliminating the step of covering the cover glass. The sample in the main observation zone will not be affected by the shaking of the liquid. The matching automated equipment automatically adds samples, reagents, etc. to the processing mixing zone of the siphon slide, and then the equipment automatically adds samples and the siphon principle to the observation zone to complete the slide preparation, eliminating the step of covering the cover glass. There is no need for manual contact with reagents and samples, which reduces the risk of biological contamination. The fixed sample area position allows the prepared slide to be used in automated scanning and analysis equipment. The anti-stick coating can effectively prevent the sample from sticking. The cohesive glossy coating allows the sample to form water droplets on it, while the sample spreads out to the surroundings on the diffusion coating. The isolation and protective coating frame can isolate the diffused sample and prevent it from escaping to the outside and causing pollution. The use of a multi-zone separate operation structure makes the sample processing more precise. At the same time, under the isolation and protective structure, the sample will not escape and pollute the external environment during transfer or prevention. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Other features, objects and advantages of the present invention will become more apparent from the detailed description of the non-limiting embodiments with reference to the following drawings:
[0014] Figure 1 This is a schematic diagram of the three-dimensional structure of a gynecological siphon slide;
[0015] Figure 2 A schematic structural diagram showing the cross-sectional connection details of a processing mixing zone of a gynecological siphon slide;
[0016] Figure 3 This is a schematic structural diagram showing the cross-sectional connection details of the sample retention area of a gynecological siphon slide;
[0017] Figure 4 This is a structural diagram showing the cross-sectional connection details of the main observation area of a gynecological siphon slide.
[0018] In the figure: 1. Main slide; 2. Limit coating area; 3. Processing and mixing area; 4. Sample retention area; 5. Siphon channel area; 6. Main observation area; 7. Anti-stick coating; 8. Cohesive glossy coating; 9. Diffusion coating; 10. Matching top groove area; 11. Isolation and protective coating frame. DETAILED DESCRIPTION
[0019] See also Figure 1-4In the embodiment of the utility model, a gynecological siphon slide comprises a main slide 1, a limited coating area 2 is fixedly provided on the top surface of the main slide 1 horizontally, the top surface of the main slide 1 is set as an easy-to-attach surface by a frosting process, the limited coating area 2 is fixedly provided at the center of the top surface of the main slide 1 by a mixture of anti-fouling coating material and high-strength glue, the limited coating area 2 and the easy-to-attach surface of the top surface of the main slide 1 are fastened and bonded to each other, and a processing mixing area 3 is fixedly provided on the top surface of the limited coating area 2 horizontally. The processing and mixing zone 3 is fixedly arranged at a position near one end of the center line of the top surface of the limiting coating zone 2, a raised isolation zone is set between the edge of the processing and mixing zone 3 and the limiting coating zone 2, a sample retention zone 4 is fixedly arranged horizontally on the top surface of the limiting coating zone 2, and a siphon channel zone 5 is horizontally arranged on the side of the sample retention zone 4. The sample retention zone 4 is fixedly arranged horizontally on the top surface of the limiting coating zone 2 near the side of the processing and mixing zone 3, and the sample retention zone 4 is horizontally arranged at the center between the processing and mixing zone 3 and the main observation zone 6, and the siphon channel zone 5 is fixedly arranged horizontally on the top surface of the limiting coating zone 2 near the side of the processing and mixing zone 3. The area 5 is horizontally arranged between the sample retention area 4 and the main observation area 6, and the sample retention area 4 and the main observation area 6 are connected to each other through the siphon channel area 5. The top surface of the limiting coating area 2 is horizontally fixed with the main observation area 6, the top surface of the processing and mixing area 3 is horizontally fixed with the anti-stick coating 7, the top surface of the sample retention area 4 is horizontally fixed with the condensation polishing coating 8, the top surface of the main observation area 6 is horizontally fixed with the diffusion coating 9, the top surface of the diffusion coating 9 is provided with a matching top groove area 10, and the matching top groove area 1 0 is fixedly provided with an isolation protection coating frame 11 on the inner side edge, the main observation area 6 is horizontally fixedly set at one end of the top surface center line of the limiting coating area 2 away from the processing mixing area 3, the anti-sticking coating 7 is made of anti-sticking material, the condensed smooth coating 8 is made of oil surface liquid isolation material, the matching top groove area 10 is set at the top surface edge position of the diffusion coating 9, the isolation protection coating frame 11 is fixedly bonded to the inner side edge of the matching top groove area 10, and the top surface of the isolation protection coating frame 11 protrudes from the top surface of the diffusion coating 9.
[0020] The working principle of this utility model is:
[0021] The reagents and samples are dropped into the processing and mixing area 3 and mixed thoroughly, and then the mixed liquid is added to the sample retention area 4 through a pipette. The liquid will flow to the main observation area 6 due to the siphon principle of the siphon channel area 5, eliminating the step of covering the coverslip. The sample in the main observation area 6 will not be affected by the shaking of the liquid and the observation effect will not be affected by the shaking of the liquid. The matching automated equipment automatically adds samples, reagents, etc. to the processing and mixing area 3 of the siphon slide, and then the equipment automatically adds samples and enters the observation area through the siphon principle to complete the preparation, eliminating the step of covering the coverslip. There is no need for manual contact with reagents and samples, which reduces the risk of biological contamination. The fixed sample area position can use the prepared slides for automated scanning and analysis equipment. The anti-stick coating 7 can effectively prevent the sample from sticking, and the condensing glossy coating 8 can allow the sample to form water droplets on it and condense together, while the sample will diffuse to the surroundings on the diffusion coating 9, and the isolation protective coating frame 11 can isolate the diffused sample and prevent it from escaping to the outside to cause pollution.
[0022] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A gynecological siphon slide, comprising a main slide (1), characterized in that: The top surface of the main glass slide (1) is horizontally fixedly provided with a limited coating area (2), the top surface of the limited coating area (2) is horizontally fixedly provided with a processing and mixing area (3), the top surface of the limited coating area (2) is horizontally fixedly provided with a sample retention area (4), the side of the sample retention area (4) is horizontally provided with a siphon channel area (5), the top surface of the limited coating area (2) is horizontally fixedly provided with a main observation area (6), the top surface of the processing and mixing area (3) is horizontally fixedly provided with an anti-sticking coating (7), the top surface of the sample retention area (4) is horizontally fixedly provided with a condensed glossy coating (8), the top surface of the main observation area (6) is horizontally fixedly provided with a diffusion coating (9), the top surface of the diffusion coating (9) is provided with a matching top groove area (10), and the inner side of the matching top groove area (10) is fixedly provided with an isolation protection coating frame (11).
2. A gynecological siphon slide according to claim 1, characterized in that: The top surface of the main glass slide (1) is set as an easy-to-attach surface by a frosting process, and the limiting coating area (2) is fixedly set at the center position of the top surface of the main glass slide (1) by using an anti-fouling coating material and mixed with high-strength glue, and the limiting coating area (2) and the easy-to-attach surface of the top surface of the main glass slide (1) are fastened and bonded to each other.
3. A gynecological siphon slide according to claim 1, characterized in that: The processing and mixing zone (3) is fixedly arranged at a position close to one end of the top center line of the limiting coating zone (2), and a raised isolation zone is arranged between the edge of the processing and mixing zone (3) and the limiting coating zone (2).
4. A gynecological siphon slide according to claim 1, characterized in that: The sample retention area (4) is horizontally fixedly arranged on the top surface of the limiting coating area (2) near the side of the processing and mixing area (3), and the sample retention area (4) is horizontally arranged at the center between the processing and mixing area (3) and the main observation area (6). The siphon channel area (5) is horizontally arranged between the sample retention area (4) and the main observation area (6), and the sample retention area (4) and the main observation area (6) are kept in communication with each other through the siphon channel area (5).
5. A gynecological siphon slide according to claim 1, characterized in that: The main observation area (6) is horizontally fixedly set at the top center line of the limiting coating area (2) away from one end of the processing mixing area (3), the anti-sticking coating (7) is made of anti-sticking material, the condensed smooth coating (8) is made of oil surface liquid isolation material, the matching top groove area (10) is set at the top edge of the diffusion coating (9), and the isolation protection coating frame (11) is fixedly bonded to the inner side of the matching top groove area (10), and the top surface of the isolation protection coating frame (11) protrudes from the top surface of the diffusion coating (9).