Veterinary efficient dynamic scheduling method based on wireless network

The wireless network-driven animal operating table adjustment and cleaning components solve the problems of adaptability and cleaning of operating tables for animals of different sizes, achieving efficient fixation and cleaning, reducing surgical risks and infection probability, and improving surgical success rate and safety.

CN121242767APending Publication Date: 2026-01-02李翔
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Patent Information

Application Number
CN202511457950.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-13
Publication Date
2026-01-02

AI Technical Summary

Technical Problem

Existing animal operating tables cannot effectively accommodate animals of different sizes, resulting in high costs, large space requirements, difficult cleaning, and the risk of infection.

Method used

A highly efficient dynamic scheduling method for veterinarians based on wireless networks is adopted, including a support platform, support column, placement platform, adjustment component, and cleaning component. The animal is fixed and cleaned by adjusting the fixing structure through a synchronous motor driven by a threaded tube and a moving plate, combined with a magnetic adsorption cleaning rod.

Benefits of technology

This allows for adjustments to the fixation structure based on the animal's body size, reducing surgical risks, increasing surgical success rates, minimizing infection risks, ensuring a clean surgical environment, and improving operational accuracy and safety.

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Abstract

The invention discloses a veterinary efficient dynamic scheduling method based on a wireless network, and relates to the field of animal medical equipment.The veterinary efficient dynamic scheduling method comprises a supporting table, a supporting column and a placement table, the supporting column and the placement table are arranged on the surface of the supporting table, the supporting column is fixed to the surface of the supporting table, and the placement table is hinged to the upper end of the supporting column; an adjusting assembly and a cleaning assembly are further arranged on the surface of the containing table. The position of the moving plate can be adjusted according to the body type of an animal, so that the placing table can adapt to animals of different body types, the fixing block, the telescopic rod and the fixing plate on the surface of the moving plate are matched, it can be ensured that the animal is located at the fixed position, and doctors can conduct accurate and stable surgical operation conveniently; the operating table is simple in structure, convenient to use, capable of reducing operation risks and improving the success rate of the operation, capable of avoiding sudden movement and distortion of the animal in the operation and guaranteeing smooth operation, meanwhile capable of enabling the fixed position to better meet the body type and physiological requirements of the animal by adjusting the operating table, and capable of relieving discomfort of the animal.
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Description

Technical Field

[0001] This invention relates to the field of animal medical equipment technology, specifically to a method for efficient dynamic scheduling of veterinarians based on wireless networks. Background Technology

[0002] Surgical practice is required when performing surgery on animals in veterinary hospitals or during teaching and research in veterinary medicine and related majors in colleges and universities. In order to keep the animals in a fixed position and prevent them from struggling, the animals must be restrained and fixed before the operation.

[0003] Currently, commonly used animal operating tables mainly consist of an operating table with relatively fixed restraint positions. When performing surgery on animals of different sizes, different sized operating tables or different restraint structures are usually used. However, using different sized operating tables for different animal sizes undoubtedly increases costs significantly and occupies excessive space in the operating room. Using different restraint structures leads to overly complex operating table structures. If the restraint structure is detachable, selecting the appropriate structure based on the animal's size requires storing excess restraints, which also carries the risk of loss. Furthermore, most pets are furry animals, and pet hair may remain on the operating table after surgery. If this hair is not cleaned properly, it can easily cause infection in pets undergoing subsequent surgeries. Therefore, we provide a wireless network-based, efficient, dynamic scheduling method for veterinary procedures to solve these problems. Summary of the Invention

[0004] The purpose of this invention is to overcome the shortcomings of the prior art and provide a veterinary efficient dynamic scheduling method based on wireless networks, which solves the problem that existing operating tables are not convenient for restraining animals of different sizes.

[0005] To solve the above-mentioned technical problems, the present invention provides the following technical solution: a veterinary efficient dynamic scheduling method based on a wireless network, comprising a support platform and a support column and a placement platform disposed on the surface of the support platform, wherein the support column is fixed to the surface of the support platform, the placement platform is hinged to the upper end of the support column, and the surface of the placement platform is further provided with an adjustment component and a cleaning component. The adjustment assembly includes a synchronous motor and a rotating shaft, a threaded tube, and a movable plate disposed on the side of the synchronous motor. The movable plate is also provided with a fixing block, a telescopic rod, and a fixing plate. The fixing plate can fix the animal's limbs. The cleaning assembly includes a first support plate, a second support plate disposed on the side of the first support plate, a slide rod, a slide sleeve, and a cleaning rod. The cleaning rod is capable of cleaning the surface of the placement platform, and the length of the cleaning rod corresponds to the width of the placement plate.

[0006] Furthermore, a lifting unit is fixed on the upper surface of the support platform. The upper end of the lifting unit is hinged to the lower surface of the placement platform. There are two lifting units, which are symmetrically arranged on both sides of the support column. The lifting unit can adjust the tilt angle of the placement platform.

[0007] Furthermore, the surface of the placement platform is provided with a transmission chamber, the synchronous motor is fixed to the inner wall of the transmission chamber, the rotating shaft is fixed to the output shaft of the synchronous motor, the surface of the rotating shaft is provided with threads, the threaded tube can be movably connected to the rotating shaft through the threads, and the moving plate is fixed to one end of the threaded tube.

[0008] Furthermore, a slider is fixed on the lower surface of the movable plate, and a groove is provided on the surface of the transmission chamber. The slider can be slidably connected in the groove, and the movable plate can be movably connected in the transmission chamber through the slider and the groove.

[0009] Furthermore, the fixing block is fixed to the upper surface of the movable plate, the telescopic rod is fixed to the surface of the movable plate, the fixing plate is fixed to one end of the telescopic rod, a spring is sleeved on the surface of the telescopic rod, and the fixing plate is a rubber plate.

[0010] Furthermore, both the first support plate and the second support plate are fixed to the upper surface of the movable plate. One end of the slide rod is fixed to the side of the first support plate, and the other end of the slide rod is fixed to the side of the second support plate. The sliding sleeve can be slidably connected to the surface of the sliding sleeve. The cleaning rod can be fixed to the upper surface of the sliding sleeve through a rotating shaft and a bearing. A magnet is fixed to the upper surface of the second support plate, and the magnet can fix the cleaning rod by adsorption.

[0011] Furthermore, the operation method of this efficient dynamic scheduling method for veterinarians based on wireless networks is as follows: First, the animal's body size is measured, and the measurement results are input into an external control device. Then, the external control device controls the synchronous motor to operate. The synchronous motor drives the rotating shaft to rotate, the rotating shaft drives the threaded tube to move, and the threaded tube drives the moving plate fixed at one end to move, thereby driving the fixed block fixed on the surface of the moving plate to move synchronously. When the fixed block moves to the designated position, the control device can control the synchronous motor to stop operating. Then place the animal on the platform, pull the fixing plate upwards so that the animal's limbs pass through the fixing blocks, and then release the fixing plate. Under the action of the spring rebound force, the fixing plate can be moved to fix the animal's limbs. When the platform needs cleaning, simply rotate the cleaning rod to disengage it from the magnet and make it perpendicular to the platform. Then, move the cleaning rod through the sliding sleeve to clean the platform. After cleaning, rotate the cleaning rod in the opposite direction to make it parallel to the sliding rod and fix it in place by the magnet.

[0012] Compared with existing technologies, this efficient dynamic scheduling method for veterinarians based on wireless networks has the following advantages: I. This invention, through the adjustment of components, can be adjusted according to the animal's body shape, making the placement table adaptable to animals of different sizes. With the fixed blocks, telescopic rods, and fixed plates on the surface of the movable plate, it can not only ensure that the animal is in a fixed position, which is conducive to the doctor to perform precise and stable surgical operations, reduce surgical risks and improve the success rate of surgery, but also avoid sudden movement and twisting of the animal during surgery, ensuring the smooth progress of the surgery. At the same time, by adjusting the operating table, the fixed position can be made more in line with the animal's body shape and physiological needs, reducing the animal's discomfort.

[0013] Second, the present invention can clean the hair on the surface of the placement table through the cleaning component, which can not only reduce the risk of bacterial infection on the placement table and surgical instruments, but also help maintain the cleanliness and hygiene of the surgical environment. It can also reduce the possibility of bacterial contamination of animals during subsequent surgeries, reduce the incidence of postoperative infection, and help animals recover and grow after surgery.

[0014] Third, the present invention, through the hinged connection between the lifting unit and the placement platform, support column and placement platform, can adjust the angle of the placement platform by a small range. This not only makes it easier for doctors to see the surgical area and reduces the observation obstacles caused by shadows and angles, which helps to improve the accuracy and success rate of surgical operations, but also minimizes positional deviations and instrument misoperation during surgical operations, reduces surgical risks and ensures the safety of the operation.

[0015] Other advantages, objectives and features of the invention will be set forth in part in the description which follows, and in part will be apparent to those skilled in the art from the following examination or study, or may be learned from the practice of the invention. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a cross-sectional view of the adjustment component in this invention; Figure 3 This is a side view of the structure of the present invention; Figure 4 For the present invention Figure 2 Enlarged structural diagram at point A in the middle.

[0017] In the picture: 1. Support platform; 2. Support column; 3. Placement platform; 301. Transmission compartment; 4. Lifting unit; 5. Adjustment components; 501. Synchronous motor; 502. Rotating shaft; 503. Threaded pipe; 504. Moving plate; 505. Slider; 506. Fixing block; 507. Telescopic rod; 508. Fixing plate; 509. Spring; 6. Cleaning components; 601. First support plate; 602. Second support plate; 603. Slide rod; 604. Slide sleeve; 605. Cleaning rod. Detailed Implementation

[0018] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0019] Please see Figure 1-3 The present invention provides a technical solution: a method for efficient dynamic scheduling of veterinarians based on wireless network, including a support platform 1 and a support column 2 and a placement platform 3 disposed on the surface of the support platform 1. The support column 2 is fixed to the surface of the support platform 1, and the placement platform 3 is hinged to the upper end of the support column 2. The surface of the placement platform 3 is also provided with an adjustment component 5 and a cleaning component 6.

[0020] Please see Figure 2 and Figure 4The aforementioned adjustment assembly 5 includes a synchronous motor 501 and a rotating shaft 502, a threaded tube 503, and a movable plate 504 disposed on the side of the synchronous motor 501. The movable plate 504 is further provided with a fixing block 506, a telescopic rod 507, and a fixing plate 508. The fixing plate 508 can fix the animal's limbs. A transmission chamber 301 is provided on the surface of the placement platform 3. The synchronous motor 501 is fixed to the inner wall of the transmission chamber 301. The rotating shaft 502 is fixed to the output shaft of the synchronous motor 501. A thread is provided on the surface of the rotating shaft 502. The threaded tube 503 can be movably connected to the rotating shaft 502 via the thread. The movable plate 504 is fixed to one end of the threaded tube 503. The fixing block 506 is fixed to the upper surface of the movable plate 504, and the telescopic rod 507 is fixed to the movable plate 504. On the surface of the movable plate 504, a fixed plate 508 is fixed to one end of the telescopic rod 507. A spring 509 is sleeved on the surface of the telescopic rod 507, and the fixed plate 508 is a rubber plate. This invention, through the adjustment component 5, can be adjusted according to the animal's body shape, so that the placement table 3 can be adapted to animals of different body shapes. With the fixed block 506, telescopic rod 507, and fixed plate 508 on the surface of the movable plate 504, it can not only ensure that the animal is in a fixed position, which is conducive to the doctor to perform precise and stable surgical operations, reduce surgical risks and improve the success rate of surgery, but also avoid sudden movement and twisting of the animal during surgery, ensuring the smooth progress of the surgery. At the same time, by adjusting the operating table, the fixed position can be made more in line with the animal's body shape and physiological needs, reducing the animal's discomfort.

[0021] Please see Figure 1 and Figure 2 The cleaning assembly 6 includes a first support plate 601, a second support plate 602 disposed on the side of the first support plate 601, a slide rod 603, a sliding sleeve 604, and a cleaning rod 605. The cleaning rod 605 can clean the surface of the placement platform 3, and the length of the cleaning rod 605 corresponds to the width of the placement plate. The first support plate 601 and the second support plate 602 are both fixed to the upper surface of the movable plate 504. One end of the slide rod 603 is fixed to the side of the first support plate 601, and the other end of the slide rod 603 is fixed to the side of the second support plate 602. The sliding sleeve 604 can slide. Connected to the surface of the sliding sleeve 604, the cleaning rod 605 can be fixed to the upper surface of the sliding sleeve 604 via a rotating shaft and bearing. A magnet is fixed to the upper surface of the second support plate 602, and the magnet can fix the cleaning rod 605 by adsorption. The present invention, through the cleaning component 6, can clean the hair on the surface of the placement table 3, which can not only reduce the risk of bacterial infection on the placement table 3 and surgical instruments, but also help maintain the cleanliness and hygiene of the surgical environment, reduce the possibility of bacterial contamination of animals in subsequent surgeries, reduce the incidence of postoperative infection, and help animals recover and grow after surgery.

[0022] Please see Figure 2 and Figure 3The upper surface of the aforementioned support platform 1 is also fixed with a lifting unit 4. The upper end of the lifting unit 4 is hinged to the lower surface of the placement platform 3. There are two lifting units 4, which are symmetrically arranged on both sides of the support column 2. The lifting unit 4 can adjust the tilt angle of the placement platform 3. Through the hinged arrangement of the lifting unit 4 with the placement platform 3, the support column 2 and the placement platform 3, the present invention can adjust the angle of the placement platform 3 by a small range. This not only makes it easier for doctors to see the surgical area and reduces the observation obstacles caused by shadows and angles, which helps to improve the accuracy and success rate of surgical operations, but also minimizes positional deviation and instrument misoperation during surgical operations, reduces surgical risks and ensures the safety of the operation.

[0023] Please see Figure 2 The lower surface of the aforementioned movable plate 504 is fixed with a slider 505, and the surface of the transmission chamber 301 is provided with a groove. The slider 505 can be slidably connected in the groove, and the movable plate 504 can be movably connected in the transmission chamber 301 through the slider 505 and the groove.

[0024] The operation method of the above-mentioned efficient dynamic scheduling method for veterinarians based on wireless networks is as follows: First, the animal's body size is measured, and the measurement results are input into an external control device. Then, the external control device controls the synchronous motor 501 to operate. The synchronous motor 501 drives the rotating shaft 502 to rotate, the rotating shaft 502 drives the threaded tube 503 to move, and the threaded tube 503 drives the moving plate 504 fixed at one end to move, thereby driving the fixed block 506 fixed on the upper surface of the moving plate 504 to move synchronously. When the fixed block 506 moves to the designated position, the control device can control the synchronous motor 501 to stop operating.

[0025] Then place the animal on the placement platform 3, pull the fixing plate 508 upward so that the animal's limbs pass through the fixing block 506, and then release the fixing plate 508. Under the action of the spring 509, the fixing plate 508 can be driven to fix the animal's limbs.

[0026] When it is necessary to clean the placement platform 3, simply rotate the cleaning rod 605 to disengage it from the magnet and make it perpendicular to the placement platform 3. Then, the sliding sleeve 604 drives the cleaning rod 605 to move, thus cleaning the placement platform 3. After cleaning, rotate the cleaning rod 605 in the opposite direction to make it parallel to the sliding rod 603, and use the magnet to attract and fix the cleaning rod 605.

[0027] Working principle: The staff first measures the animal's body size and then inputs the measurement results into the external control device. The external control device then controls the synchronous motor 501 to operate. The synchronous motor 501 drives the rotating shaft 502 to rotate, which in turn drives the threaded tube 503 to move. The threaded tube 503 drives the moving plate 504 fixed at one end to move, thereby driving the fixing block 506 fixed on the upper surface of the moving plate 504 to move synchronously. When the fixing block 506 moves to the designated position, the control device can control the synchronous motor 501 to stop operating. Then, the staff places the animal on the placement platform 3 and pulls the fixing plate 508 upward so that the animal's limbs pass through the fixing block 506. Then, the staff releases the fixing plate 508, and under the action of the spring 509's rebound force, the fixing plate 508 can be moved to fix the animal's limbs.

[0028] When it is necessary to clean the placement platform 3, the staff only needs to rotate the cleaning rod 605 to disengage it from the magnet and make it perpendicular to the placement platform 3. Then, the staff controls the movement of the sliding sleeve 604, which drives the cleaning rod 605 to move back and forth on the sliding rod 603 to clean the placement platform 3. After cleaning, the staff rotates the cleaning rod 605 in the opposite direction to make it parallel to the sliding rod 603, and then uses the magnet to attract and fix the cleaning rod 605.

[0029] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within the present invention.

Claims

1. A wireless network-based efficient dynamic scheduling method for veterinarians, comprising a support table (1) and a support column (2) and a placement table (3) arranged on the surface of the support table (1), characterized in that: The support column (2) is fixed on the surface of the support table (1), the placing table (3) is hinged on the upper end of the support column (2), and the surface of the placing table (3) is further provided with an adjusting assembly (5) and a cleaning assembly (6); the adjusting assembly (5) comprises a synchronous motor (501) and a rotating shaft (502), a threaded pipe (503) and a moving plate (504) arranged on the side of the synchronous motor (501), the surface of the moving plate (504) is further provided with a fixed block (506), a telescopic rod (507) and a fixed plate (508), and the fixed plate (508) can fix the limbs of the animal; the cleaning assembly (6) comprises a first support plate (601) and a second support plate (602), a slide rod (603), a slide sleeve (604) and a cleaning rod (605) arranged on the side of the first support plate (601), the cleaning rod (605) can clean the surface of the placing table (3), and the length of the cleaning rod (605) corresponds to the width of the placing plate.

2. The wireless network-based efficient dynamic scheduling method for veterinarians of claim 1, wherein: The upper surface of the support table (1) is further fixed with a lifting unit (4), the upper end of the lifting unit (4) is hinged to the lower surface of the placing table (3), the lifting unit (4) has two and is symmetrically arranged on the two sides of the support column (2), and the lifting unit (4) can adjust the inclination angle of the placing table (3).

3. The wireless network-based efficient dynamic scheduling method for veterinarians of claim 1, wherein: The surface of the placing table (3) is provided with a transmission bin (301), the synchronous motor (501) is fixed in the inner wall of the transmission bin (301), the rotating shaft (502) is fixed on the output shaft of the synchronous motor (501), the surface of the rotating shaft (502) is provided with a thread, the threaded pipe (503) can be movably connected with the rotating shaft (502) through the thread, and the moving plate (504) is fixed on one end of the threaded pipe (503).

4. The wireless network-based efficient dynamic scheduling method for veterinarians of claim 3, wherein: The lower surface of the moving plate (504) is fixed with a sliding block (505), the surface of the transmission bin (301) is provided with a sliding groove, and the sliding block (505) can be slidably connected in the sliding groove, so that the moving plate (504) can be movably connected in the transmission bin (301) through the sliding block (505) and the sliding groove.

5. The wireless network-based efficient dynamic scheduling method for veterinarians of claim 1, wherein: The fixed block (506) is fixed on the upper surface of the moving plate (504), the telescopic rod (507) is fixed on the surface of the moving plate (504), the fixed plate (508) is fixed on one end of the telescopic rod (507), the surface of the telescopic rod (507) is sleeved with a spring (509), and the fixed plate (508) is a rubber plate.

6. The wireless network-based efficient dynamic scheduling method for veterinarians of claim 1, wherein: The first support plate (601) and the second support plate (602) are fixed on the upper surface of the moving plate (504), one end of the slide rod (603) is fixed on the side surface of the first support plate (601), the other end of the slide rod (603) is fixed on the side surface of the second support plate (602), the sliding sleeve (604) is slidably connected on the surface of the sliding sleeve (604), the cleaning rod (605) is fixed on the upper surface of the sliding sleeve (604) through a rotating shaft and a bearing, the upper surface of the second support plate (602) is fixed with a magnet, and the magnet can fix the cleaning rod (605) by adsorption.

7. The wireless network-based high-efficient dynamic scheduling method for veterinary according to any one of claims 1-6, characterized in that: The operation method of the wireless network-based efficient dynamic scheduling method for veterinarians is as follows: first, the size of the animal is measured, and the measurement result is input into the external control device, then the external control device controls the synchronous motor (501) to operate, the synchronous motor (501) drives the rotating shaft (502) to rotate, the rotating shaft (502) drives the threaded pipe (503) to move, the threaded pipe (503) drives the moving plate (504) fixed on one end thereof to move, thereby driving the fixed block (506) fixed on the upper surface of the moving plate (504) to move synchronously, when the fixed block (506) moves to the specified position, the control device can control the synchronous motor (501) to stop operating.

8. Then the animal is placed on the placement table (3), the fixed plate (508) is pulled upward, the limbs of the animal pass through the fixed block (506), then the fixed plate (508) is released, and under the action of the elastic force of the spring (509), the fixed plate (508) is driven to fix the limbs of the animal.

9. When it is necessary to clean the placement table (3), only the cleaning rod (605) needs to be rotated to separate the cleaning rod (605) from the magnet and make the cleaning rod (605) perpendicular to the placement table (3), then the cleaning rod (605) is moved through the sliding sleeve (604), so that the placement table (3) can be cleaned, and after cleaning, the cleaning rod (605) is rotated in the opposite direction to make the cleaning rod (605) parallel to the slide rod (603), and the cleaning rod (605) is fixed by the magnet.