Multifunctional livestock veterinarian examination device
Patent Information
- Application Number
- CN202520780486.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-04-23
AI Technical Summary
然而,在使用过程中存在一个值得关注的问题,即如何减少动物在检查时的压力反应
[0018]本公开实施例提供了一种多功能畜牧兽医检查装置,包括:活体固定模块,用于稳定动物的身体,其中所述活体固定模块具有能够调间距的夹持板、设有缓冲材质层以降低动物皮肤受压损伤的风险、以及配备有微振动模块以缓解动物的紧张情绪;移动底座,用于支撑和移动整个装置;可伸缩检查台,连接于所述移动底座,能够调整高度;照明臂,用于提供检查所需的光照,所述照明臂装配有红外线加热组件,防止动物受凉;工具挂架,设置于所述可伸缩检查台的侧边;所述微振动模块包括微型电机以及与其连接的偏心块,所述微振动模块能够通过控制器调节振动频率。通过本公开实施例的方案,能够解决如何减少动物的压力反应。
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Figure CN224776963U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of animal husbandry and veterinary equipment technology, specifically to a multifunctional animal husbandry and veterinary examination device. Background Technology
[0002] Multifunctional livestock and veterinary examination devices are integrated equipment specifically designed for livestock farming. They aim to facilitate efficient health checks for animals by veterinarians and typically include multiple functional modules such as restraint, testing, and sampling. However, a significant issue arises during use: minimizing stress responses in animals during examinations. Because animals are extremely sensitive to changes in their external environment, they are prone to fear and anxiety when restrained or examined due to unfamiliar equipment, sounds, or manipulations. This can trigger stress responses, affecting examination effectiveness and potentially posing additional risks to animal health. Summary of the Invention
[0003] In view of this, the present disclosure provides a multifunctional animal husbandry and veterinary examination device, which at least partially solves the problems existing in the prior art.
[0004] This application discloses a multifunctional animal husbandry and veterinary examination device, comprising:
[0005] A live animal restraint module for stabilizing an animal's body, wherein the live animal restraint module has an adjustable clamping plate, a cushioning material layer to reduce the risk of pressure injury to the animal's skin, and a micro-vibration module to alleviate the animal's stress.
[0006] A movable base for supporting and moving the entire device;
[0007] A retractable inspection table, connected to the movable base, is height-adjustable;
[0008] An illumination arm is used to provide the light required for inspection. The illumination arm is equipped with an infrared heating component to prevent the animal from getting cold.
[0009] A tool rack is provided on the side of the retractable inspection table;
[0010] The micro-vibration module includes a micro motor and an eccentric block connected thereto, and the vibration frequency can be adjusted by a controller.
[0011] According to one embodiment, the clamping plate is equipped with a pressure sensor, which is a thin-film type.
[0012] According to one embodiment, the flexible clamping plate is equipped with a removable pad.
[0013] According to one embodiment, the live animal fixation module is provided with an adjustment mechanism, which consists of two sets of horizontally and vertically arranged electric push rods. The vertically arranged electric push rods are used to adjust the height of the animal fixation, and the horizontally arranged electric push rods can drive the movable fixation module to move, so as to adjust the position of the clamping plate according to the size of the animal.
[0014] According to one embodiment, the telescopic inspection table has a grooved guide rail, in which a bidirectional screw and a screw block are installed. One end of the bidirectional screw is connected to a drive motor, which drives the bidirectional screw to rotate, so that the screw block moves the living body fixing module under the action of the thread.
[0015] According to one embodiment, the top surface of the retractable inspection table is provided with an anti-slip mat to reduce the risk of animals slipping.
[0016] According to one embodiment, the tool holder is mounted on a guide groove that surrounds the retractable inspection table.
[0017] According to one embodiment, the live fixation module has an embedded temperature detection probe to monitor temperature changes in localized areas of the animal's body.
[0018] This disclosure provides a multifunctional animal veterinary examination device, comprising: a live animal restraint module for stabilizing the animal's body, wherein the live animal restraint module has an adjustable clamping plate, a cushioning material layer to reduce the risk of pressure injury to the animal's skin, and a micro-vibration module to alleviate the animal's stress; a movable base for supporting and moving the entire device; a telescopic examination table connected to the movable base, capable of height adjustment; an illumination arm for providing the necessary lighting for examination, the illumination arm being equipped with an infrared heating component to prevent the animal from getting cold; a tool holder disposed on the side of the telescopic examination table; and the micro-vibration module including a micro motor and an eccentric block connected thereto, the micro-vibration module being able to adjust the vibration frequency via a controller. The solution provided by this disclosure addresses how to reduce stress responses in animals. Attached Figure Description
[0019] In the accompanying drawings, unless otherwise specified, the same reference numerals throughout the various drawings denote the same or similar parts or elements. These drawings are not necessarily drawn to scale. It should be understood that these drawings depict only some embodiments disclosed in this application and should not be construed as limiting the scope of this application.
[0020] Figure 1 This is a schematic diagram of the structure of the multifunctional animal husbandry and veterinary examination device described in this utility model;
[0021] Figure 2This is a schematic diagram of the movable fixing module in the multifunctional animal husbandry and veterinary examination device of this utility model;
[0022] Figure 3 This utility model describes a multifunctional livestock and veterinary examination device. Figure 2 Enlarged view of point A in the middle;
[0023] Figure 4 This is a schematic diagram of the anti-slip mat in a multifunctional livestock and veterinary examination device described in this utility model.
[0024] In the diagram: 1. Live body fixation module; 11. Clamping plate; 12. Buffer material layer; 13. Micro-vibration module; 14. Pressure sensor; 15. Removable pad; 16. Micro motor; 17. Eccentric block; 18. Adjustment mechanism; 19. Electric push rod; 2. Moving base; 20. Temperature detection probe; 21. Groove guide rail; 22. Bidirectional screw; 23. Screw block; 24. Drive motor; 3. Telescopic inspection table; 31. Anti-slip mat; 4. Illumination arm; 41. Infrared heating component; 5. Tool rack; 51. Guide groove Detailed Implementation
[0025] To make the objectives, technical solutions, and advantages of the embodiments of this disclosure clearer, the embodiments of this disclosure will be further described in detail below with reference to the accompanying drawings. The illustrative implementation methods and descriptions of the embodiments of this disclosure are only used to explain the embodiments of this disclosure and are not intended to limit the embodiments of this disclosure.
[0026] like Figure 1 As shown, a multifunctional animal husbandry and veterinary examination device of this application includes: a live animal fixation module 1, a movable base 2, a telescopic examination table 3, a lighting arm 4, and a tool rack 5. These components are described in detail below.
[0027] The device includes a live animal restraint module 1 for stabilizing the animal's body and reducing its stress response during examination. This live animal restraint module 1 employs a clamping plate 11 design with adjustable spacing to accommodate animals of different sizes. The distance between the two clamping plates 11 is adjusted via an electric slide rail or screw drive mechanism. Furthermore, the surface of the clamping plates 11 is covered with a cushioning material layer 12 to protect the animal's skin from damage due to prolonged pressure. This cushioning material can be a soft material such as medical-grade silicone or memory foam. Additionally, the live animal restraint module 1 incorporates a micro-vibration module 13, capable of generating low-frequency, moderate-intensity mechanical vibrations to soothe the animal. This vibration is achieved via a small motor connected to a vibrating rod.
[0028] The device also includes a movable base 2, which provides stable support for the entire structure and allows for convenient position adjustment. The movable base 2 is equipped with multiple casters at its bottom, each with a brake to lock the position during inspection and prevent accidental slippage. Its internal structure features a reinforced metal frame, while the exterior is clad in a high-strength plastic material to create a smooth surface. This design ensures the device remains stable on uneven surfaces and provides flexible mobility.
[0029] The telescopic examination table 3 is a key component of this device. Connected to the aforementioned movable base 2, it is primarily responsible for adjusting the operating height according to the actual height of the animal being examined. The telescopic examination table 3 consists of a multi-section nested structure, with each section's height adjusted via a hydraulic system or cylinder. It is also equipped with a locking mechanism to prevent rebound during the lifting and lowering process. This allows for the rapid determination of the optimal operating height based on the needs of different animals, creating convenient conditions for the operator.
[0030] For lighting, the device is equipped with a dedicated lighting arm 4. Installed at a suitable location near the inspection table, it can be freely swung and adjusted in direction and range according to the area being inspected. The light source is an LED strip, which outputs strong yet gentle light, effectively improving the operator's field of vision. Furthermore, a heat sink and temperature control circuit are installed inside the lamp to prevent overheating of the lamp surface due to prolonged operation.
[0031] Finally, the tool rack 5 is located on one side of the retractable examination table 3 and is securely connected to it via specific connectors. This tool rack 5 features multi-level storage slots and hooks for categorizing and storing various medical instruments, facilitating quick and easy access without taking up too much space. Its overall structure uses a corrosion-resistant stainless steel frame, while an external plastic shell enhances durability and impact resistance.
[0032] Regarding the technical challenge of reducing animal stress responses, the design of this device addresses this issue in several aspects. First, the adjustable-spacing clamping plate 11 in the live animal immobilization module 1, combined with the cushioning material layer 12, precisely holds the animal without causing excessive pressure or pain. This is further enhanced by the soothing vibrations provided by the micro-vibration module 13, which stimulate sensory nerve endings and calm anxiety. Second, the height-adjustable extendable examination table 3 reduces unnecessary animal lifting movements, further minimizing potential tension and fear. Simultaneously, the bright and evenly distributed lighting creates a comfortable and reassuring treatment atmosphere. Ultimately, this achieves the goal of comprehensively alleviating animal stress, making the examination process smoother and more efficient.
[0033] like Figure 2As shown, in one embodiment, the live animal restraint module 1 of the multifunctional animal husbandry and veterinary examination device of this application achieves more precise and reliable operation by optimizing the material and configuration of the clamping plate 11. Specifically, the clamping plate 11 of this module is made of a high-strength elastic material, which can generate appropriate reaction force according to the shape of the animal's body to achieve a stabilizing effect, while effectively preventing potential injury to the animal due to rigid contact. In addition, to realize the pressure monitoring function, a thin-film pressure sensor 14 is embedded in the interior or surface of the clamping plate 11. This structure is compact and highly sensitive, and can capture minute pressure changes. These thin-film pressure sensors 14 are distributed in the key contact areas of the clamping plate 11 to ensure comprehensive signal acquisition coverage and real-time feedback to the detection and control system to adjust operating parameters.
[0034] For example, a flexible connecting layer can be provided on the surface of the clamping plate 11 to fix the sensor assembly, while avoiding the impact on exposed parts, thereby improving installation accuracy. The pressure sensor 14 is bonded to the clamping plate 11 by adhesive or mold integration, ensuring durability and stability during long-term operation. Furthermore, the signal lines of these sensors can be designed to be integrated inside the module, communicating with the central processing unit along a fixed path to achieve efficient information transmission.
[0035] like Figure 2 As shown, in one embodiment, the clamping plate 11 of a multifunctional animal husbandry and veterinary examination device of this application is equipped with a removable pad 15 to achieve additional comfort and hygiene requirements. The removable pad 15 covers the inner surface of the flexible clamping plate 11 and is connected to the clamping plate 11 via a mounting structure. Specifically, the pad has a soft outer layer and a liquid-proof inner layer to simultaneously satisfy comfort and easy cleaning characteristics. Since various bodily fluid contacts may occur in animal husbandry and veterinary environments, the presence of this pad not only reduces frictional pressure on animals but also provides an easily replaceable protective layer, thereby improving hygiene.
[0036] Furthermore, the removable pad 15 is secured to the clamping plate 11 via clips, Velcro, or magnets. This securing method ensures the pad remains stable and does not shift under normal operating conditions, while allowing for quick removal for cleaning or replacement, making it suitable for high-frequency use scenarios. For example, when using a magnetic method, a metal sheet or magnetic material is placed inside the flexible clamping plate 11, and corresponding magnetic components are installed at the corresponding positions of the pad, thus achieving a simple docking and disassembly process. This design not only makes replacement more convenient but also ensures the functional integrity of the clamping plate 11 and the overall ease of operation of the inspection device.
[0037] like Figure 2As shown, in one embodiment, the cushioning layer 12 of the multifunctional animal husbandry and veterinary examination device of this application is designed with a gel-like or foamed material. This material is soft, elastic, and highly adaptable, forming a protective interface between the animal's body surface and the clamping plate 11, preventing direct contact and potential harm to the animal's skin. The surface of the clamping plate 11 is completely covered by the cushioning layer 12, allowing it to evenly distribute forces and closely conform to the animal's body surface, providing stable support even for animals with irregular body shapes or sizes. This characteristic helps reduce discomfort during the operation of the fixation module, thereby reducing the animal's stress response.
[0038] Specifically, gel-like or foamed materials can be attached to the inner surface of the clamping plate 11 during the manufacturing process through bonding or hot pressing. For example, a cushioning layer can be made of high-density polyurethane foam and then smoothly installed onto the clamping plate 11 using a non-toxic and environmentally friendly adhesive, ensuring a strong and durable bond. Furthermore, for easy disassembly and replacement, the clamping plate 11 and the cushioning material layer 12 can be connected via a snap-fit structure to ensure hygiene and safety during long-term use.
[0039] like Figure 3 As shown, in one embodiment, the micro-vibration module 13 of the multifunctional animal husbandry and veterinary examination device of this application is a component designed to reduce animal stress, specifically installed inside the live animal fixation module 1 or near the clamping plate 11. The micro-vibration module 13 consists of a micro motor 16 and its connecting components. This structure can adjust the working state of the micro motor 16 through a controller, thereby generating different vibration frequencies. The micro motor 16 and the eccentric block 17 form an assembly, wherein the eccentric block 17 is installed on the shaft of the micro motor 16 through a specific connection method to achieve the vibration effect generated by asymmetrical rotation.
[0040] To ensure the effectiveness and safety of the micro-vibration module 13, the micro-motor 16 is rigidly mounted within the internal space of the living body fixing module 1 via a rigid bracket, ensuring stable operation without affecting the functional integrity of the external clamping plate 11. The eccentric block 17 is precisely pressed onto the shaft of the micro-motor 16, resulting in a tight fit that maintains a reliable mechanical connection over extended periods. For example, in practical implementation, a low-noise brushless motor can be used, coupled with a controller unit equipped with digital signal input to achieve flexible frequency control. This allows the entire system to provide the required vibration stimulation under varying operating conditions without interfering with the overall operation of the device.
[0041] like Figure 1As shown, in one embodiment, the live animal fixation module 1 of the multifunctional animal husbandry and veterinary examination device of this application is equipped with an adjustment mechanism 18 to automatically adapt to animals of different body sizes. Specifically, the adjustment mechanism 18 consists of two sets of vertically arranged electric push rods 19. One set provides vertical thrust to adjust the height of the entire live animal fixation module 1, while the other set provides horizontal power, enabling the movable fixation module to move along a preset track, thereby flexibly adjusting the position of the clamping plate 11. In this way, the device can be precisely adjusted according to the actual body size of different animals. To further enhance the adaptability of the device, the vertical and horizontal electric push rods 19 are carefully arranged on the internal structural frame of the live animal fixation module 1 to ensure its movement stability and overall strength.
[0042] For example, two sets of electric actuators 19 are pre-installed in the frame of the live body fixation module 1. One set serves as a vertical height adjuster, with its bottom connected to the telescopic inspection table 3 or support structure, and its top connected to the main body of the fixation module. The other set of horizontally positioned electric actuators 19 is connected to the frame of the fixation module via a bracket, with its movable end connected to the movable fixation module, driving the clamping plate 11 to reciprocate along a horizontal track to complete the position adjustment. In this design, the two sets of electric actuators 19 are driven by a control unit and work in conjunction with sensors to detect and record the accurate position of the current module and clamping plate 11, thereby ensuring the accuracy of the adjustment process.
[0043] like Figure 1 and Figure 4 As shown, in one embodiment, the retractable examination table 3 of the multifunctional livestock and veterinary examination device of this application has a grooved guide rail 21. The grooved guide rail 21 is embedded inside the retractable examination table 3, providing a precise movement path for the entire positioning system. A bidirectional screw 22 is provided within the guide rail, which runs through the entire guide rail and can rotate freely along its central axis. Furthermore, a screw block 23 matches the bidirectional screw 22 via a threaded structure; when the bidirectional screw 22 rotates, the screw block 23 moves left and right along the guide rail according to the direction of the thread. To achieve this driving process, a drive motor 24 is connected to one end of the bidirectional screw 22, and electrical energy input causes the motor to operate, thereby driving the bidirectional screw 22 to rotate in a specific direction. This design allows the stable live animal fixation module 1 to be precisely adjusted in position to meet the needs of animals of different sizes.
[0044] For example, the rotation direction of the bidirectional screw 22 can be changed by adjusting the forward and reverse rotation of the drive motor 24, thereby controlling the displacement of the screw block 23 in the grooved guide rail 21. Specifically, after the drive motor 24 starts, it transmits power to the bidirectional screw 22 and controls the rotation speed and direction according to a preset program, so that the living fixing module 1 moves smoothly and accurately along the expected trajectory.
[0045] like Figure 4 As shown, in one embodiment, the top surface of the retractable examination table 3 of the multifunctional livestock and veterinary examination device of this application is provided with an anti-slip pad 31. The anti-slip pad 31 is located on the top of the retractable examination table 3, covering the area corresponding to the fixing module. The anti-slip pad 31 is typically made of a material with excellent wear resistance and grip, such as natural rubber or modified plastic composite material, to increase the friction between it and the animal's paws while providing a moderately soft feel. This design further enhances the stability of the animal's body fixation and reduces the risk of the animal accidentally sliding on the examination table surface due to external factors.
[0046] Specifically, the anti-slip mat 31 can be securely installed on the upper surface of the telescopic inspection table 3, possibly by adhesive bonding or by a snap-fit mechanism for easy detachment, facilitating regular cleaning and maintenance. For example, an embedded groove can be designed into the telescopic inspection table 3 to match the shape of the bottom of the anti-slip mat 31, thus achieving a tight structural fit. This technical solution ensures that the anti-slip mat 31 remains stable and does not shift during operation, while also providing practical convenience through easy replacement.
[0047] like Figure 1 As shown, in one embodiment, the illumination arm 4 of a multifunctional livestock and veterinary examination device of this application is equipped with an infrared heating component 41 to provide both illumination and cooling functions. This structure achieves combined operational requirements by combining optical and thermal radiation characteristics. In the examination area environment, animals may experience discomfort or stress due to low temperatures; therefore, the design of this device focuses on ensuring sufficient light while providing adequate warmth to the animal to reduce the negative impact of external temperature differences on the organism. The device as a whole maintains flexibility and can adapt to the lighting and warmth needs of various operating environments.
[0048] Specifically, the illumination arm 4 is equipped with an independently designed infrared heating component 41, which consists of a high-efficiency infrared emitting unit and a photomask, and is integrated into the end of the illumination arm 4 via an embedded mounting method. For example, the infrared heating component 41 can be disposed within the internal cavity of the illumination arm 4, and transmit infrared radiation to the central area of the inspection range through an opening. In terms of component connection, a rotary hinge or a fixed clamp is used to achieve a secure connection with the illumination arm 4. Furthermore, to ensure effective synergy, the component circuitry is connected to the main system to adjust the output intensity and angle range. In this way, the technical implementation of this feature balances the rationality of component positioning with overall performance stability.
[0049] like Figure 1As shown, in one embodiment, the tool holder 5 of the multifunctional livestock and veterinary examination device of this application has been optimized in its installation position, specifically by adjusting it to surround the retractable examination table 3. This design uses guide grooves 51 arranged around the retractable examination table 3 to fix the tool holder 5, allowing it to move freely along the guide grooves 51 or be locked in different positions. The tool holder 5 can be designed as a multi-segment structure, with each segment engaging with the guide grooves 51 via sliders, allowing the entire holder to be positioned close to any side of the animal according to operational needs, thereby reducing operational interference caused by frequent tool handling.
[0050] Furthermore, the connection between the tool holder 5 and the guide groove 51 employs a flexible snap-fit structure or fastening screws, allowing for quick fixing or unlocking of the holder position during use. This structure ensures the stability of the tool holder 5 while also facilitating precise control over tool access. Further, to enhance adaptability, the tool holder 5 can also be designed with tiered partitions or multi-angle hook structures to meet the spatial arrangement requirements of different tools.
[0051] For example, the sliding component can be accommodated by creating a continuous closed-loop track on the telescopic inspection table 3, while the tool holder 5 achieves position adjustment via a slider embedded in the track. This approach not only ensures a compact and aesthetically pleasing overall design but also better adapts to various needs in real-world usage scenarios.
[0052] like Figure 2 As shown, in one embodiment, the live animal restraint module 1 of the multifunctional animal husbandry and veterinary examination device of this application incorporates a temperature detection probe 20 to achieve accurate monitoring of local body temperature changes in animals. This design cleverly integrates the temperature detection function into the live animal restraint module 1, eliminating the need for additional independent components. Specifically, the temperature detection probe 20 is installed inside the live animal restraint module 1 and is positioned to contact or be close to the clamping plate 11. This design allows the temperature detection probe 20 to directly acquire the animal's body temperature data without affecting the core function of the live animal restraint module 1, namely, stabilizing the animal's body and providing comfortable conditions.
[0053] Furthermore, the temperature detection probe 20 itself may include a temperature-sensing element and connecting lines. The temperature-sensing element is integrated into the inner surface of the live animal fixation module 1 or under the buffer material layer 12 using precision embedding technology. This structure not only protects the temperature-sensing element from external impacts but also ensures that it fits snugly against the animal's body for temperature measurement. For example, in one embodiment, infrared temperature sensing technology or a thermocouple element can be used to construct the temperature-sensing part, while the signal is transmitted to an external data processing system or display screen via connecting wires.
[0054] For example, the temperature sensing probe 20 can be installed inside the clamping plate 11 by slotting and covered with a thin layer of heat insulation material to reduce the impact of the external environment on temperature data acquisition. At the same time, its leads are connected to the main control system through a concealed path, which maintains the overall aesthetics of the equipment while effectively integrating multiple functions.
[0055] In actual operation, when this device is in use, the entire device can be adjusted to a suitable position by moving the base 2, and then the height of the extendable examination table 3 can be adjusted according to the animal's height to ensure the convenience of the examination process. Next, the animal is guided to the live animal restraint module 1, and the animal's body is fixed using the adjustable-spacing clamping plate 11, while the cushioning material layer 12 reduces pressure damage to the animal's skin. Before the examination begins, the micro-vibration module 13 is turned on to alleviate the animal's anxiety. Subsequently, the lighting arm 4 provides sufficient illumination to the examination area, and the necessary examination tools are retrieved from the tool rack 5 for operation. After the examination is completed, the live animal restraint module 1 is released and the animal is guided away.
[0056] The specific embodiments described above further illustrate the purpose, technical solutions, and beneficial effects of the embodiments of this disclosure. It should be understood that the above descriptions are merely specific embodiments of the embodiments of this disclosure and are not intended to limit the scope of protection of the embodiments of this disclosure. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the embodiments of this disclosure should be included within the scope of protection of the embodiments of this disclosure.
Claims
1. A multifunctional livestock and veterinary examination device, characterized in that, include: Live restraint module (1) for stabilizing the body of an animal, wherein the live restraint module (1) has an adjustable clamping plate (11), a cushioning material layer (12) to reduce the risk of pressure injury to the animal's skin, and is equipped with a micro-vibration module (13) to relieve the animal's stress. A movable base (2) is used to support and move the entire device; A retractable inspection table (3) is connected to the movable base (2) and its height can be adjusted. An illumination arm (4) is provided to provide the light required for the inspection. The illumination arm (4) is equipped with an infrared heating component (41) to prevent the animal from getting cold. Tool rack (5) is provided on the side of the telescopic inspection table (3); The micro-vibration module (13) includes a micro motor (16) and an eccentric block (17) connected thereto. The micro-vibration module (13) can adjust the vibration frequency through a controller.
2. The multifunctional livestock and veterinary examination device according to claim 1, characterized in that: The clamping plate (11) is equipped with a pressure sensor (14), which is a thin-film type.
3. The multifunctional livestock and veterinary examination device according to claim 2, characterized in that: The clamping plate (11) is equipped with a removable pad (15).
4. The multifunctional livestock and veterinary examination device according to claim 1, characterized in that: The live animal fixation module (1) is provided with an adjustment mechanism (18), which consists of two sets of electric push rods (19) arranged horizontally and vertically. The vertically arranged electric push rods (19) are used to adjust the height of the animal fixation, and the horizontally arranged electric push rods (19) can drive the live animal fixation module (1) to move, and are used to adjust the position of the clamping plate (11) according to the size of the animal.
5. The multifunctional livestock and veterinary examination device according to claim 1, characterized in that: The retractable inspection table (3) has a grooved guide rail (21), in which a bidirectional screw (22) and a screw block (23) are installed. One end of the bidirectional screw (22) is connected to a drive motor (24), which drives the bidirectional screw (22) to rotate so that the screw block (23) moves the living body fixing module (1) under the action of the thread.
6. The multifunctional livestock and veterinary examination device according to claim 1, characterized in that: The top surface of the retractable inspection table (3) is provided with an anti-slip mat (31) to reduce the risk of animals slipping.
7. The multifunctional livestock and veterinary examination device according to claim 1, characterized in that: The tool holder (5) is installed in the guide groove (51), which surrounds the telescopic inspection table (3).
8. The multifunctional livestock and veterinary examination device according to claim 1, characterized in that: The live fixation module (1) has an embedded temperature detection probe (20) to monitor temperature changes in local areas of the animal's body.