Diagnosis and treatment box convenient for veterinarian to take instruments
By designing a sliding tray, positioning pins, elastic clamps, and a transparent cover inside the box, the problem of limited operation for veterinarians when retrieving tools from the diagnostic kit was solved, enabling them to quickly and accurately obtain the necessary instruments and improving diagnostic efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2026-04-07
AI Technical Summary
When veterinarians use a medical kit, their finger dexterity is limited, making it difficult to quickly and accurately retrieve the necessary tools, which affects the efficiency and accuracy of diagnosis and treatment.
A diagnostic box is designed, comprising a box body, a sliding tray, positioning pins, elastic clamps, a transparent cover, and a gripping handle. The sliding tray slides along an internal track within the box body, the positioning pins are fixed in multiple preset positions, the elastic clamps secure instruments of different sizes and shapes, the transparent cover facilitates viewing, and the gripping handle facilitates operation.
It improves the ease and efficiency of veterinarians in retrieving instruments, reduces search time and difficulty, and enhances diagnostic efficiency and safety.
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Figure CN224085455U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of animal husbandry technology, specifically to a diagnostic kit that facilitates veterinarians' access to instruments. Background Technology
[0002] Veterinary medical kits are primarily used for carrying and storing veterinary tools. However, in actual use, veterinarians often face limitations in finger dexterity when retrieving specific instruments, making it difficult to quickly and accurately retrieve the required tools, thus affecting diagnostic efficiency and accuracy. Summary of the Invention
[0003] In view of this, the present disclosure provides a diagnostic kit that facilitates veterinarians in accessing instruments, at least partially solving the problems existing in the prior art.
[0004] This application discloses a diagnostic kit for veterinarians to easily access instruments, comprising:
[0005] The enclosure is used to store various veterinary diagnostic and treatment instruments;
[0006] The sliding tray can slide along the internal tracks of the box;
[0007] Locating pins are installed on one side of the sliding tray to secure the sliding tray in multiple preset positions.
[0008] Flexible clamps, fixed to a sliding tray, are used to secure instruments of different sizes and shapes;
[0009] A transparent cover, hinged to the top of the box;
[0010] The grip handle is fixed to the outside of the transparent cover; among which...
[0011] The interior of the enclosure is divided into multiple different storage areas, each of which is specifically designed to hold a particular type of instrument.
[0012] The sliding tray is marked at each preset position.
[0013] Preferably, the edge of the sliding tray is provided with a raised anti-slip edge.
[0014] Preferably, the height of the anti-slip edge is 2 cm, forming a step with the height difference of the sliding tray.
[0015] Preferably, the surface of the sliding tray is provided with anti-slip texture.
[0016] Preferably, the elastic component between the positioning pin and the sliding tray is a spring.
[0017] Preferably, the positioning pin is provided with an operating handle.
[0018] Preferably, the opening of the elastic clamp faces the front of the box.
[0019] Preferably, the elastic clamp is provided with adjustment knobs on both sides, and the opening width of the elastic clamp can be adjusted by rotating the adjustment knobs.
[0020] Preferably, the inner surface of the elastic clamp is provided with a protective layer.
[0021] Preferably, the height of the grip handle is less than the total height of the transparent cover.
[0022] This disclosure provides a diagnostic kit for veterinarians to easily retrieve instruments, comprising: a kit body for storing various veterinary diagnostic instruments; a sliding tray that can slide along an internal track within the kit body; positioning pins installed on one side of the sliding tray for securing the tray at multiple preset positions; elastic clamps fixed to the sliding tray for securing instruments of different sizes and shapes; a transparent cover hinged to the top of the kit body; and a gripping handle fixed to the outside of the transparent cover. The interior of the kit body is divided into multiple different storage areas, each specifically designed for holding a particular type of instrument. The sliding tray has markings at each preset position. This solution addresses the challenge of veterinarians having limited finger dexterity when retrieving specific instruments, making it difficult to quickly and accurately retrieve the required tools. Attached Figure Description
[0023] To more clearly illustrate the technical solutions of the exemplary embodiments of this disclosure, the accompanying drawings used in the embodiments will be briefly described below. It should be understood that the following drawings only show some embodiments of this disclosure and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0024] Figure 1 This is a schematic diagram of the axonometric structure of the housing of this utility model;
[0025] Figure 2 This utility model Figure 1 Enlarged schematic diagram of a partial cross-section of the middle box;
[0026] Figure 3 This utility model Figure 1 Enlarged schematic diagram of a medium-elastic clamp.
[0027] In the diagram: 1. Box body; 2. Sliding tray; 3. Positioning pin; 4. Elastic clamp; 5. Transparent cover; 6. Grip handle; 7. Storage area; 8. Anti-slip edge; 9. Anti-slip texture; 10. Spring; 11. Operating handle; 12. Marking point; 13. Adjustment knob; 14. Protective layer Detailed Implementation
[0028] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0029] like Figure 1 As shown, the diagnostic kit for veterinarians to easily access instruments according to this application includes several key components: a kit body 1, a sliding tray 2, a positioning pin 3, a flexible clamp 4, a transparent cover 5, and a gripping handle 6. The diagnostic kit is designed to improve the ease of operation for veterinarians in quickly and accurately obtaining the necessary instruments during diagnostic procedures.
[0030] The housing 1 is used to store various veterinary diagnostic instruments and is the basic structure of the diagnostic kit. Its interior is designed with multiple parallel sliding rails for mounting the sliding tray 2, allowing it to slide smoothly within the housing 1. The sliding tray 2 is the main component for supporting and securing the instruments. It slides back and forth along the internal rails of the housing 1 via rollers or sliders at its bottom, allowing veterinarians to easily pull out the tray to retrieve the necessary instruments. For flexible adjustment in different usage scenarios, a positioning pin 3 is installed on one side of the sliding tray 2. This positioning pin 3 is connected to the sliding tray 2 via an elastic component and can engage with multiple pre-set grooves on the housing 1, thereby securing it in different sliding positions and preventing the sliding tray 2 from sliding on its own.
[0031] Elastic clamp 4 (reference) Figure 3 Fixed above the sliding tray 2, the device consists of multiple clips made primarily of elastic material. It can be adjusted to accommodate the size and shape of different instruments, ensuring that various medical devices are securely fixed on the tray and will not shake or fall off even during movement. A transparent cover 5 is hinged to the top of the box 1 and can be opened and closed freely. The transparent cover allows veterinarians to clearly see the location of all instruments inside the box without opening the lid, thus improving retrieval speed. Furthermore, a gripping handle 6 is fixed to the outside of the transparent cover 5. This handle is ergonomically designed, allowing veterinarians to quickly grasp and open or close the cover, simplifying the operation and reducing finger strain.
[0032] Specifically, the internal slide rails of the housing 1 can be made of metal or high-strength plastic to ensure structural strength and smooth sliding. The sliding tray 2 can be injection molded using precision molds and equipped with rollers or sliders at its bottom to accommodate the slide rail design. The positioning pin 3 is made of stainless steel and is connected to the sliding tray 2 via elastic components such as spring 10 to ensure stable fixation in the required position. The elastic clamp 4 can be made of various materials, such as silicone or rubber, and its design must possess a certain degree of elasticity and fixing capacity to adapt to instruments of various sizes and shapes. The transparent cover 5 is usually made of transparent materials such as acrylic, which has good impact resistance and light transmission. The hinge part can be made of metal or engineering plastic to ensure its durability and flexibility. The grip handle 6 should be designed according to ergonomic principles and covered with soft materials to increase grip comfort.
[0033] Through the aforementioned design and technical means, the solution presented in this application addresses the problem of limited finger manipulation for veterinarians when retrieving specific instruments. Traditional medical kits are mostly closed or open structures, requiring veterinarians to frequently bend or squat to locate the necessary instruments, and finger manipulation is extremely inconvenient in confined spaces. The medical kit of this application, by introducing a sliding tray 2 and positioning pins 3, allows the tray to be easily pulled out, making the instrument location clearly visible, greatly reducing search time and operational difficulty. Simultaneously, the elastic clamp 4 ensures instrument safety, while the transparent cover 5 and gripping handle 6 further enhance operational convenience and efficiency. In summary, this design significantly improves the veterinarian's work experience and increases diagnostic efficiency.
[0034] In one embodiment, the veterinarian-friendly medical instrument case of this application includes a case 1, the interior of which is rationally divided into multiple different storage areas 7. Each storage area 7 is specifically designed to hold a particular type of medical instrument and equipment, ensuring that each instrument has a designated storage location and reducing the time veterinarians spend searching for needed instruments in emergencies. These storage areas 7 are designed not only for functional needs but also for identification using a color-coding system, further enhancing ease of operation and accuracy of identification. For example, commonly used tools and medications can be assigned to the red-marked area, while more delicate or expensive equipment can be placed in the blue-marked area.
[0035] Specifically, the interior of the cabinet 1 can be divided into different storage areas 7 using insertable, removable partitions. The partitions can be made of plastic or metal, and the size and number of storage areas 7 can be adjusted as needed. Color-coded labels can be applied directly to the partitions or the inner surface of the cabinet 1 using stickers, paint, or other highly visible methods to ensure clear identification even in low light conditions.
[0036] Continue to refer to Figure 1 In one embodiment, the sliding tray 2 of the diagnostic box for easy instrument access by veterinarians is provided with a raised anti-slip edge 8, effectively preventing the instrument from accidentally slipping during the pulling process, thus increasing the safety and convenience of operation. The anti-slip edge 8 is 2 cm high, forming a small step with the height difference between it and the sliding tray 2. This design not only provides stable support but also ensures that the instrument will not slip due to accidental impact or vibration when the sliding tray 2 is pulled out or pushed back, thereby improving the overall reliability and ease of operation.
[0037] Specifically, the sliding tray 2 is equipped with anti-slip edges 8 around its perimeter. These anti-slip edges 8 are made of a rigid material and have sufficient rigidity to provide effective support. The height of the anti-slip edges 8 is 2 cm, slightly higher than the surface of the sliding tray 2, forming a slight step. This height design prevents the instrument from sliding out during movement without obstructing normal instrument handling. For example, when the sliding tray 2 is fully extended, the anti-slip edges 8 can form barriers in four directions, effectively restricting the position of the instrument and preventing it from sliding out under external forces. At the same time, the inner surface of the anti-slip edges 8 is smooth, reducing friction when in contact with the instrument and ensuring that the instrument is not damaged during handling. The anti-slip edges 8 are fixed to the bottom and perimeter of the sliding tray 2 by welding or integral molding to ensure a secure connection that will not loosen or fall off.
[0038] In one embodiment, the sliding tray 2 of the diagnostic case for easy access to instruments by veterinarians is provided with anti-slip textures 9 on its surface to increase friction with the instrument surface and prevent the instrument from shifting during sliding. The sliding tray 2 is a drawer-type device placed inside the diagnostic case for storing various medical instruments and tools. The design of the sliding tray 2 is particularly important to ensure the safety and stability of the instruments within the diagnostic case. The anti-slip textures 9 can be made using various materials and processes, such as forming textures on the tray surface through molding or etching. Specifically, these anti-slip textures 9 are evenly distributed across the entire surface of the sliding tray 2, increasing the coefficient of friction between the tray and the instrument.
[0039] Specifically, the anti-slip texture 9 can be treated with a high-friction coefficient rubber material or an anti-slip coating. The sliding tray 2 itself is made of high-strength materials, such as plastic or metal, to ensure its durability and load-bearing capacity. The connection between the anti-slip texture 9 and the tray can be integral molding, that is, the anti-slip texture is directly formed during the tray manufacturing process, or the anti-slip material is fixed to the tray surface using an adhesive. In this way, whether moving the medical kit or opening the sliding tray 2, the sliding and displacement of the instrument can be effectively prevented, thereby improving the safety of use.
[0040] In one embodiment, such as Figure 2As shown, in the diagnostic kit for easy access to instruments by veterinarians according to this application, the elastic component between the positioning pin 3 and the sliding tray 2 employs a spring 10 design. The spring 10 is designed to ensure that the positioning pin 3 has good elastic recovery performance, thereby enabling stable fixation of the sliding tray 2 in multiple positions. Furthermore, this design reduces the operating force required to fix and release the sliding tray 2, improving operational convenience and efficiency.
[0041] In one embodiment, the spring 10 is installed between the sliding tray 2 and the positioning pin 3. One end of the spring 10 is fixed to the sliding tray 2, and the other end is fixed to the positioning pin 3 via a connecting component. This arrangement allows the positioning pin 3 to automatically pop out and engage in a predetermined slot under the action of the spring 10 when the sliding tray 2 moves to a specific position, thereby fixing the sliding tray 2. Specifically, the elastic design of the positioning pin 3 ensures that it can quickly return to its original position, while the multiple preset slots on the sliding tray 2 provide multiple fixing points for the positioning pin 3, ensuring that the sliding tray 2 can be securely locked in different positions. For example, the elasticity of the positioning pin 3 can be adjusted by changing the material and strength of the spring 10 to adapt to different usage requirements.
[0042] Return to reference Figure 1 In one embodiment, the positioning pin 3 of the diagnostic kit for easy instrument access by veterinarians is provided with an operating handle 11. The size and shape of the operating handle 11 are ergonomically designed to ensure that veterinarians can easily operate it with their thumb and forefinger. The operating handle 11 is designed to improve ease of use and comfort, enabling veterinarians to quickly and accurately lock and unlock the positioning pin 3 even in emergency situations.
[0043] The operating handle 11 is connected to the positioning pin 3 either as a fixed connection or a movable connection. Specifically, the operating handle 11 can be made of plastic or metal and is fixed to one end of the positioning pin 3 by screws or clips. The operating handle 11 is usually designed to be curved or flat, and its surface may have anti-slip textures to increase friction and prevent slippage. In addition, the length and width of the operating handle 11 are optimized according to the size of a human hand, and usually do not exceed the maximum opening distance of a veterinarian's thumb and forefinger to ensure ease of operation.
[0044] For example, the operating handle 11 can be integrated with the positioning pin 3 by molding, or it can be assembled onto the positioning pin 3 as a separate part. Regardless of the method used, the design of the operating handle 11 should ensure stability after repeated use, preventing it from loosening or falling off. In practical applications, the movement path of the positioning pin 3 is limited to a certain range to avoid excessive movement that could damage the equipment. Furthermore, the operating handle 11 should be positioned in an easily accessible area, typically near the edge of the housing 1 or near the handle, allowing veterinarians to operate it directly without opening the housing.
[0045] In one embodiment, such as Figure 2 As shown, the diagnostic kit of this application, which facilitates veterinary access to instruments, has clearly marked points 12, such as grooves or protrusions, at each preset position on the sliding tray 2. These marked points 12 are designed to enable veterinarians to quickly locate the desired position on the sliding tray 2 by touch, even in poor visual conditions, thereby facilitating quick and easy access to the required diagnostic instruments.
[0046] The sliding tray 2 is installed inside the medical kit and can slide horizontally along guide rails for easy opening and closing. Marking points 12 are located on the surface of the sliding tray 2, above different tool storage areas. Each tool has a specific marking point 12 for its corresponding area. These marking points 12 can be integrally formed using a mold, or fixed to the sliding tray 2 through post-processing methods such as compression molding or welding. For example, grooves can be created by cutting grooves of the appropriate shape on the sliding tray 2, while protrusions can be formed by attaching small protrusions to the tray surface.
[0047] Specifically, the sliding tray 2 can be made of plastic or metal, and the location and size of each tool storage area should be planned in advance during the design phase. The specific shape and location of the marking points 12 need to be customized according to the layout of commonly used tools and the veterinarian's operating habits. For example, different shaped marking points 12 can be set in different areas of the sliding tray 2, allowing veterinarians to quickly identify and find the required tools by touch. In this way, even in low light or emergency situations, veterinarians can quickly and accurately obtain the necessary diagnostic and treatment tools.
[0048] In one embodiment, such as Figure 3 As shown, the opening of the elastic clamp 4 of the diagnostic kit for easy access to instruments by veterinarians in this application faces the front of the kit body 1, so that veterinarians can quickly and directly remove or place instruments from the front without having to go around to the side of the kit body 1 to operate. This design significantly improves the convenience and efficiency of veterinarians during use, especially in emergency situations, saving valuable time.
[0049] Specifically, the flexible clamp 4 is fixed to the front part inside the housing 1, ensuring that its opening always faces forward. This installation method not only conforms to ergonomic design but also allows veterinarians to quickly retrieve the required instruments without changing their body posture. The flexible clamp 4 consists of two or more deformable elastic arms with a certain gap between them, allowing the clamp to provide sufficient elastic support during insertion and removal, ensuring the stability and safety of the instruments. In addition, the material selection for the flexible clamp 4 also needs to consider its durability and adaptability to various environments.
[0050] For example, the base of the elastic clamp 4 can be fixed to the front of the inner wall of the box 1 with bolts, so that the opening of the clamp faces the front door of the box 1. In this way, whether in a vehicle, an animal hospital, or an outdoor environment, veterinarians can easily open the front cover of the box 1 to quickly access and operate the instruments.
[0051] In one embodiment, the flexible clamp 4 of the veterinary instrument handling case of this application is designed with an adjustment function to ensure that it can accommodate instruments of different sizes and shapes. Specifically, adjustment knobs 13 are provided on both sides of the flexible clamp 4. By rotating these adjustment knobs 13, the opening width of the flexible clamp 4 can be adjusted. This design not only ensures the stability of the flexible clamp 4 but also enhances its flexibility, allowing various instruments to be securely fixed inside the treatment case. The adjustment knobs 13 allow the user to manually adjust the opening size of the flexible clamp 4 according to actual needs, thereby ensuring that instruments of various sizes can be reliably fixed.
[0052] Specifically, adjusting knobs 13 can be installed on both sides of the elastic clamp 4. The adjusting knobs 13 are connected to the elastic clamp 4 via threads or other mechanical connections. Rotating the adjusting knob 13 causes its axial movement to change the opening of the elastic clamp 4, thereby adjusting the opening width. Specifically, rotating the adjusting knob 13 clockwise gradually reduces the opening of the elastic clamp 4, and vice versa. This adjustment mechanism ensures the clamp's adaptability to instruments of different sizes and shapes. For example, a knob with trapezoidal threads can be used with a clamp made of elastic material; rotating the knob adjusts the pressure distribution inside the clamp, thus changing its opening width.
[0053] In one embodiment, in the veterinary instrument handling case of this application, the inner surface of the elastic clamp 4 is provided with a soft protective layer 14. The protective layer 14 can be made of rubber or silicone, effectively preventing scratches or damage to the surface of the precision instrument during fixing and handling. This protective layer 14 fits tightly against the inner surface of the elastic clamp 4, ensuring all-around protection for the instrument. Furthermore, the soft material has good cushioning properties, which can absorb shock when the instrument is subjected to external impacts, further improving its safety. Through this design, the case can ensure the instrument is securely fixed while minimizing any adverse effects on its appearance and function.
[0054] Specifically, the protective layer 14 is fixed to the inner surface of the elastic clamp 4 by adhesive bonding or nesting. For example, a raised structure can be pre-formed on the inner side of the elastic clamp 4, allowing the rubber or silicone protective layer 14 to be firmly fixed thereon through an interference fit. Another method is to use double-sided tape or a special adhesive to bond the protective layer 14 to the inner surface of the elastic clamp 4, ensuring that it will not fall off during long-term use. Both methods can effectively achieve a stable installation of the protective layer 14, meeting the needs of different usage environments.
[0055] In one embodiment, the height of the grip handle 6 of the diagnostic case for easy instrument access by veterinarians is designed to be lower than the total height of the transparent cover 5. This design not only ensures smoother closing of the transparent cover 5 but also facilitates quick gripping of the diagnostic case by veterinarians when operating with one hand. By optimizing the position and size of the grip handle 6, the overall ease of operation of the diagnostic case is significantly improved. Specifically, the low-profile design of the grip handle 6 reduces the impact on the closing of the transparent cover 5, avoiding collisions or obstructions between the transparent cover 5 and the grip handle 6, thereby improving the efficiency of veterinarian operations.
[0056] For example, the grip handle 6 is mounted on the side of the transparent cover 5, approximately two-thirds of the way up its total height. The grip handle 6 is made of durable plastic with a suitable curvature for ergonomic comfort. The transparent cover 5 is made of high-strength transparent plastic and completely covers the opening of the treatment box. When the veterinarian needs to close the transparent cover 5, the grip handle 6 does not obstruct its path, ensuring smooth closure. Furthermore, this low-profile design makes the grip handle 6 more concealed when the transparent cover 5 is closed, without affecting its overall appearance and functionality.
[0057] In actual operation, when using this device, the veterinarian first easily opens the transparent cover 5 by grasping the handle 6. The transparent cover 5 is connected to the housing 1 via a hinge and can be flexibly flipped up and down, providing the veterinarian with a clear view and facilitating direct observation of the instrument layout inside the housing. Next, the veterinarian can pull the sliding tray 2 to any position, allowing it to slide smoothly along the track inside the housing 1. The installation design of the sliding tray 2 ensures that it can move smoothly back and forth on the track, making the instruments on the tray more accessible. After the sliding tray 2 is fully extended, the veterinarian can adjust the position of the positioning pin 3 as needed to fix it in a preset position. The elastic connection between the positioning pin 3 and the sliding tray 2 allows it to be securely fixed in different positions, ensuring that the tray will not slide on its own in case of accidental movement. At the same time, the elastic clamp 4 firmly fixes instruments of various sizes and shapes to the tray, preventing them from being damaged due to shaking or falling during movement. Throughout the process, the design of the transparent cover 5 and the sliding tray 2 works together to simplify the veterinarian's operating steps, reduce the burden of manual operation, and improve diagnostic efficiency.
[0058] The exemplary systems and methods of the present invention have been specifically shown and described with reference to the above embodiments, which are merely examples of the best mode for implementing the systems and methods. Those skilled in the art will understand that various changes can be made to the embodiments of the systems and methods described herein without departing from the spirit and scope of the invention as defined in the appended claims when implementing the systems and / or methods.
Claims
1. A diagnostic kit for easy access to instruments by veterinarians, characterized in that, include: Box (1), used to store various veterinary diagnostic and treatment instruments; The sliding tray (2) can slide along the internal track of the box (1); Positioning pins (3) are installed on one side of the sliding tray (2) to fix the sliding tray (2) in multiple preset positions; The elastic clamp (4) is fixed on the sliding tray (2) and is used to fix instruments of different sizes and shapes; A transparent cover (5) is hinged to the top of the box (1); The grip handle (6) is fixed to the outside of the transparent cover plate (5); among which The interior of the housing (1) is divided into multiple different storage areas (7), each storage area (7) being specifically used to place a particular type of instrument; The sliding tray (2) is provided with a marking point (12) at each preset position.
2. The diagnostic kit for convenient veterinary instrument access according to claim 1, characterized in that: The sliding tray (2) has raised anti-slip edges (8) on its edges.
3. The diagnostic kit for convenient veterinary instrument access according to claim 2, characterized in that: The height of the anti-slip edge (8) is 2 cm, forming a step with the height difference between it and the sliding tray (2).
4. The diagnostic kit for convenient veterinary instrument access according to claim 2, characterized in that: The surface of the sliding tray (2) is provided with anti-slip texture (9).
5. The diagnostic kit for convenient veterinary instrument access according to claim 1, characterized in that: The elastic component between the positioning pin (3) and the sliding tray (2) is a spring (10).
6. The diagnostic kit for convenient veterinary instrument access according to claim 5, characterized in that: The positioning pin (3) is provided with an operating handle (11).
7. The diagnostic kit for convenient veterinary instrument access according to claim 1, characterized in that: The opening of the elastic clamp (4) faces the front of the box (1).
8. The diagnostic kit for convenient veterinary instrument access according to claim 7, characterized in that: The elastic clamp (4) is provided with adjustment knobs (13) on both sides, and the opening width of the elastic clamp (4) can be adjusted by rotating the adjustment knobs (13).
9. The diagnostic kit for convenient veterinary instrument access according to claim 8, characterized in that: The inner surface of the elastic clamp (4) is provided with a protective layer (14).
10. The diagnostic kit for convenient veterinary instrument access according to claim 1, characterized in that: The height of the grip handle (6) is less than the total height of the transparent cover plate (5).