Animal blood pressure monitoring device

By designing an animal blood pressure monitoring device with a rotatable reclining board and blood pressure monitoring components, the problem of obtaining blood pressure data in different body positions was solved, improving data diversity and monitoring efficiency, adapting to animals of different body sizes, and ensuring monitoring accuracy.

CN223969183UActive Publication Date: 2026-03-06INST OF LAB ANIMAL SCI CHINESE ACAD OF MEDICAL SCI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Existing animal blood pressure monitoring devices cannot acquire blood pressure data when animals are in different body positions, resulting in limited data.

Method used

An animal blood pressure monitoring device was designed, comprising a rotatable reclining board and a blood pressure monitoring component. The reclining board can rotate to change the animal's position. Combined with a drive component and a locking structure, the monitoring process is ensured to be stable. A fixing component and a heating structure are designed to accommodate animals of different body sizes.

Benefits of technology

It enables the acquisition of more blood pressure data under different body positions, improves monitoring efficiency and data diversity, reduces manpower consumption and animal stress response, adapts to animals of different body sizes, and ensures monitoring accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of animal blood pressure monitoring, in particular to an animal blood pressure monitoring device. The animal blood pressure monitoring device comprises a monitoring table, a rotatable lying plate is arranged on the monitoring table, the lying plate has an initial state parallel to the horizontal plane and a rotating state rotating by a specified angle in the horizontal axial direction, and a fixing assembly is arranged on the contact face of the lying plate and an animal to be detected to fix the animal to be detected. The lying plate is suitable for enabling the animal to be detected to switch different body positions through rotation; the blood pressure monitoring assembly is arranged on one side of the monitoring table, and the monitoring end of the blood pressure monitoring assembly is connected with an animal to be monitored on the lying plate so as to monitor dynamic blood pressure values of the animal to be monitored in different body positions. The lying plate is rotatably arranged on the monitoring table and can rotate by any angle, so that the animal to be detected can be converted into different body positions, the blood pressure of the animal to be detected in different body positions can be acquired, and the data acquisition quantity is increased.
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Description

Technical Field

[0001] This utility model relates to the field of animal blood pressure monitoring technology, and specifically to an animal blood pressure monitoring device. Background Technology

[0002] Animal experiments are an important method for studying animal function, and monitoring animal blood pressure is a crucial way to obtain preclinical data related to diseases. In related technologies, when monitoring animal blood pressure, the animal is usually placed lying down on a monitoring platform for easy monitoring. However, this monitoring device can only acquire blood pressure when the animal is lying flat or supine, and cannot acquire blood pressure in other positions, resulting in relatively limited data. Summary of the Invention

[0003] In view of this, the present invention provides an animal blood pressure monitoring device to solve the problem that related monitoring devices cannot obtain blood pressure of animals in other body positions, resulting in relatively limited data.

[0004] This utility model provides an animal blood pressure monitoring device, comprising:

[0005] A monitoring platform is provided with a rotatable reclining board. The reclining board has an initial state parallel to the horizontal plane and a rotational state that rotates by a specified angle along the horizontal axis. A fixing component is provided on the contact surface between the reclining board and the animal to be tested to fix the animal to be tested. The reclining board is adapted to allow the animal to be tested to switch to different body positions by rotating.

[0006] A blood pressure monitoring component is disposed on one side of the monitoring station. The monitoring end of the blood pressure monitoring component is connected to the animal to be tested located on the lying board to monitor the dynamic blood pressure value of the animal to be tested in different body positions.

[0007] In one alternative embodiment, the monitoring station is provided with a drive assembly connected to the reclining platform to drive the reclining platform to rotate.

[0008] In one alternative embodiment, the monitoring platform is provided with a locking structure adapted to fix the lying board.

[0009] In one optional embodiment, the fixing component includes multiple straps and multiple positioning structures for fixing the limbs of the animal to be tested. The multiple straps are arranged in a one-to-one correspondence with the multiple positioning structures. The positioning structure includes a plurality of positioning holes spaced apart along the extension direction of the lying board. The straps are detachably connected to the positioning holes.

[0010] In one alternative embodiment, the bottom of the strap is provided with a screw, the positioning hole has an internal thread, and the screw is threadedly connected to the positioning hole.

[0011] In one alternative embodiment, a heating structure is provided on the end face of the lying board that is away from the contact surface with the animal to be tested.

[0012] In one optional embodiment, the monitoring platform includes a pair of support columns and a base arranged at intervals and opposite to each other. The pair of support columns are respectively disposed on both sides of the base and fixedly connected to the base. The other ends of the pair of support columns are connected to each other through a rotating shaft. The two ends of the rotating shaft are rotatably connected to the support columns. The lying plate is fixedly connected to the rotating shaft.

[0013] In one alternative embodiment, the drive assembly includes a drive motor, the output shaft of which is connected to one end of the rotating shaft to drive the rotating shaft to rotate.

[0014] In one optional embodiment, the locking structure includes a drive wheel disposed within the support column and toothed mating portions disposed at both ends of the rotating shaft. The drive wheel is disposed within the support column and engages with the toothed mating portions. The drive motor is disposed on the support column, and the output shaft of the drive motor extends into the support column and is fixedly connected to the drive wheel.

[0015] In one alternative embodiment, the end face of the rotating shaft is provided with a scale, and the support column is provided with a pointer pointing to the scale.

[0016] Beneficial effects:

[0017] 1. This utility model discloses an animal blood pressure monitoring device. By rotatably setting a lying board on the monitoring platform, the lying board can be rotated at any angle, allowing the animal to be tested to change different body positions, which is beneficial to obtaining the blood pressure of the animal in different body positions and increasing the amount of data obtained.

[0018] 2. By controlling the drive assembly through the control device to rotate the recumbent board, the staff can avoid manually rotating the recumbent board, saving manpower and improving monitoring efficiency. At the same time, it can also avoid stimulating the animal being tested and prevent fluctuations in its blood pressure from affecting the monitoring results.

[0019] 3. By setting a locking structure, the lying plate can be fixed to prevent it from rotating during the monitoring process and affecting the monitoring results.

[0020] 4. By setting several positioning holes, the position of the straps can be adjusted to fix the limbs of animals of different sizes, effectively increasing the variety of animals to be tested and improving practicality.

[0021] 5. The straps are detachably mounted on the lying board via screws and positioning holes. This allows the straps to be removed when the size of the next animal to be tested differs from that of the current animal, and the position of the straps can be adjusted according to the size of the next animal, effectively improving practicality.

[0022] 6. By setting up a heating structure, it is possible to prevent the test animal from becoming hypothermic and affecting its blood pressure. The heating structure can conduct heat to the lying board, keeping the test animal on the lying board at body temperature and ensuring the accuracy of monitoring data. Attached Figure Description

[0023] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0024] Figure 1 This is a schematic diagram of an animal blood pressure monitoring device according to an embodiment of the present invention;

[0025] Figure 2 This is a front view of an animal blood pressure monitoring device according to an embodiment of the present invention;

[0026] Figure 3 This is a schematic diagram of the lying board according to an embodiment of the present utility model.

[0027] Explanation of reference numerals in the attached figures:

[0028] 1. Monitoring platform; 2. Reclining board; 3. Straps; 4. Positioning hole; 5. Screw; 6. Support column; 7. Base; 8. Rotating shaft; 9. Scale; 10. Pointer. Detailed Implementation

[0029] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0030] The following is combined with Figures 1 to 3 The following describes embodiments of the present invention.

[0031] According to an embodiment of the present invention, an animal blood pressure monitoring device is provided, comprising: a monitoring station 1 and a blood pressure monitoring component.

[0032] Specifically, the monitoring platform 1 is equipped with a rotatable reclining board 2. The reclining board 2 has an initial state parallel to the horizontal plane and a rotational state that allows it to rotate a specified angle along the horizontal axis. A fixing component is provided on the contact surface between the reclining board 2 and the animal to be tested to fix the animal in place. The reclining board 2 is adapted to allow the animal to switch between different body positions by rotating. A blood pressure monitoring component is located on one side of the monitoring platform 1. The monitoring end of the blood pressure monitoring component is connected to the animal to be tested located on the reclining board 2 to monitor the dynamic blood pressure values ​​of the animal in different body positions.

[0033] In this embodiment, Figure 1 In this system, the left end of the reclining board 2 can rotate to the right, and the right end can rotate to the left, allowing the reclining board 2 to be flipped. In its initial state, the reclining board 2 is parallel to the horizontal plane. The animal to be tested can lie, sit, or lie prone on the upper surface of the reclining board 2. A fixing component is provided on the upper surface of the reclining board 2 to secure the animal to it, preventing movement and avoiding stress reactions that could cause the animal to escape from the reclining board 2, thus affecting monitoring efficiency. Rotating the reclining board 2 allows the animal to rotate, changing its position. The reclining board 2 can rotate at any angle to monitor the blood pressure of the animal in different positions. A blood pressure monitoring component is located on one side of the monitoring station 1, and its monitoring end is connected to the animal to monitor its real-time blood pressure value.

[0034] It should be noted that by rotatably setting the lying board 2 on the monitoring table 1, the lying board 2 can be rotated at any angle, allowing the animal to be tested to change different body positions, which is beneficial for obtaining the blood pressure of the animal in different body positions and increasing the amount of data obtained.

[0035] In some embodiments, the monitoring station 1 is provided with a drive assembly, which is connected to the reclining plate 2 to drive the reclining plate 2 to rotate.

[0036] In this embodiment, the drive assembly is connected to the control device, which can control the rotation of the lying board 2 via the drive assembly. By controlling the drive assembly to rotate the lying board 2, the control device avoids manual rotation by staff, saving manpower and improving monitoring efficiency. Simultaneously, it avoids stimulating the animal being tested, preventing fluctuations in its blood pressure that could affect the monitoring results.

[0037] In other embodiments, the drive assembly can also be manually controlled to drive the deck 2 to rotate.

[0038] In this embodiment, a locking structure is provided on the monitoring station 1. The locking structure is suitable for fixing the lying plate 2 to prevent the lying plate 2 from rotating during the monitoring process and affecting the monitoring results.

[0039] In some embodiments, the fixing component includes multiple straps 3 for fixing the limbs of the animal to be tested and multiple positioning structures. The multiple straps 3 are arranged in a one-to-one correspondence with the multiple positioning structures. The positioning structure includes a plurality of positioning holes 4 spaced apart along the extension direction of the lying plate 2. The straps 3 and the positioning holes 4 are detachably connected.

[0040] In this embodiment, the fixing component includes four straps 3 and four positioning structures. The four straps 3 and the four positioning structures are arranged one-to-one. The straps 3 can be mounted on the lying board 2 through the positioning structures, securing the limbs of the animal to be tested and preventing movement. The positioning structures include six spaced-apart positioning holes 4. In the initial state, the six positioning holes 4 are arranged horizontally. The straps 3 can be mounted on the lying board 2 through the positioning holes 4, and their position on the lying board 2 can be adjusted through the six positioning holes 4 to better secure the limbs of the animal to be tested. By providing several positioning holes 4, the position of the straps 3 can be adjusted to secure the limbs of animals of different sizes, effectively increasing the variety of animals that can be tested and improving practicality.

[0041] In other alternative embodiments, the fixing components may include six or eight or other numbers of straps 3 and positioning structures, the positioning structures may include five or seven or other numbers of positioning holes 4.

[0042] In some embodiments, the bottom of the strap 3 is provided with a screw 5, the positioning hole 4 has an internal thread, and the screw 5 is threadedly connected to the positioning hole 4.

[0043] In this embodiment, a screw 5 is fixedly provided at the bottom of the strap 3. The screw 5 is threadedly connected to the positioning hole 4 to fix the strap 3 on the lying plate 2. At the same time, the strap 3 is detachably set on the lying plate 2 through the screw 5 and the positioning hole 4. When the body size of the next test animal is different from that of the current test animal, the strap 3 can be removed and the position of the strap 3 can be adjusted according to the body size of the next test animal, which effectively improves the practicality.

[0044] In some embodiments, a heating structure is provided on the end face of the lying board 2 that is away from the contact surface with the animal to be tested.

[0045] In this embodiment, a heating structure (not shown) is provided on the lower end face of the lying plate 2. The heating structure is a graphene heating element. The animal to be tested needs to be anesthetized before blood pressure monitoring to prevent stress. Due to the long monitoring time, a heating structure is provided on the lying plate 2 to prevent hypothermia from affecting the animal's blood pressure. The heating structure can conduct heat to the lying plate 2 to maintain the body temperature of the animal on the lying plate 2. The heating structure is activated when the animal is fixed on the lying plate 2, or it can be activated after a period of monitoring. The heating structure is connected to a control device.

[0046] In some embodiments, the monitoring platform 1 includes a pair of support columns 6 and a base 7 arranged at intervals and opposite to each other. The pair of support columns 6 are respectively arranged on both sides of the base 7 and fixedly connected to the base 7. The other ends of the pair of support columns 6 are connected to each other through a rotating shaft 8. The two ends of the rotating shaft 8 are rotatably connected to the support columns 6, and the lying plate 2 is fixedly connected to the rotating shaft 8.

[0047] In this embodiment, the base 7 is a rectangular plate, and a pair of support columns 6 are respectively arranged on the front and rear sides of the base 7. The pair of support columns 6 are arranged opposite to each other, and the lower end of the support column 6 is fixedly connected to the base 7. The upper ends of the pair of support columns 6 are connected to each other through a rotating shaft 8. The two ends of the rotating shaft 8 are rotatably connected to the support column 6. The bottom of the lying plate 2 is provided with a connecting part. The lying plate 2 is fixedly connected to the rotating shaft 8 through the connecting part. The lying plate 2 is rotatably arranged on the support column 6 through the rotating shaft 8.

[0048] In this embodiment, the drive assembly includes a drive motor (not shown), and the output shaft (not shown) of the drive motor is connected to one end of the rotating shaft 8 to drive the rotating shaft 8 to rotate.

[0049] In this embodiment, the locking structure includes a drive wheel (not shown) disposed within the support column 6 and toothed mating portions (not shown) disposed at both ends of the rotating shaft 8. The drive wheel is disposed within the support column 6 and engages with the toothed mating portions. A drive motor is disposed on the support column 6, and the output shaft of the drive motor extends into the support column 6 and is fixedly connected to the drive wheel. Each pair of support columns 6 is provided with a drive wheel, and the drive motor is fixedly disposed on the side wall of the support column 6. A through hole is opened on the side wall of the support column 6 with the drive motor, and the output shaft of the drive motor extends into the support column 6 through the through hole and connects to the drive wheel. The drive wheel is fixedly sleeved on the output shaft. The control device is connected to the drive motor. When the deck 2 needs to rotate, the control device controls the output shaft of the drive motor to rotate. The output shaft passes through the side wall of the support column 6 and is fixedly connected to the drive wheel inside the support column 6. The rotation of the output shaft drives the drive wheel to rotate. The upper end of the support column 6 has an opening, and the toothed engagement part of the rotating shaft 8 is set at the opening. The drive wheel can mesh with the toothed engagement part of the rotating shaft 8 at the opening. The rotation of the drive wheel drives the rotating shaft 8 to rotate. When the drive wheel stops rotating, the engagement of the drive wheel with the toothed engagement part can limit the rotation of the rotating shaft 8 and prevent the rotating shaft 8 from rotating.

[0050] In some embodiments, the end face of the rotating shaft 8 is provided with a scale 9, and the support column 6 is provided with a pointer 10 pointing to the scale 9.

[0051] In this embodiment, both ends of the rotating shaft 8 are provided with scales 9, and the support column 6 is provided with pointers 10 pointing to the scales 9. The scales 9 are angle scales, which can make it convenient for staff to check the rotation angle of the lying board 2.

[0052] Although embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations all fall within the scope defined by the appended claims.

Claims

1. An animal blood pressure monitoring device, characterized by, The animal blood pressure monitoring device comprises a monitoring platform (1) provided with a rotatable lying plate (2), the lying plate (2) has an initial state parallel to the horizontal plane and a rotating state rotated by a specified angle along the horizontal axis direction, a fixing assembly is arranged on the contact surface of the lying plate (2) for fixing the animal to be tested, and the lying plate (2) is adapted to switch different body positions of the animal to be tested by rotating. A blood pressure monitoring assembly is arranged on one side of the monitoring platform (1), and a monitoring end of the blood pressure monitoring assembly is connected with the animal to be tested on the lying plate (2) to monitor the dynamic blood pressure value of the animal to be tested in different body positions.

2. The animal blood pressure monitoring device according to claim 1, wherein the monitoring platform (1) is provided with a driving assembly connected with the lying plate (2) to drive the lying plate (2) to rotate.

3. The animal blood pressure monitoring device according to claim 2, wherein the monitoring platform (1) is provided with a locking structure adapted to fix the lying plate (2).

4. The animal blood pressure monitoring device according to claim 3, wherein the fixing assembly comprises a plurality of binding belts (3) for fixing limbs of the animal to be tested and a plurality of positioning structures, the plurality of binding belts (3) and the plurality of positioning structures are arranged one by one, the positioning structure comprises a plurality of positioning holes (4) arranged at intervals along the extension direction of the lying plate (2), and the binding belt (3) is detachably connected with the positioning hole (4).

5. The animal blood pressure monitoring device according to claim 4, wherein the bottom of the binding belt (3) is provided with a screw rod (5), the positioning hole (4) has an internal thread, and the screw rod (5) is threadedly connected with the positioning hole (4).

6. The animal blood pressure monitoring device according to any one of claims 1 to 5, wherein an end surface of the lying plate (2) away from the contact surface of the animal to be tested is provided with a heating structure.

7. The animal blood pressure monitoring device according to claim 3, wherein the monitoring platform (1) comprises a pair of support columns (6) and a base (7) arranged oppositely at intervals, the pair of support columns (6) are respectively arranged on two sides of the base (7) and fixedly connected with the base (7), the other ends of the pair of support columns (6) are connected with each other through a rotating shaft (8), the two ends of the rotating shaft (8) are rotatably connected with the support columns (6), and the lying plate (2) is fixedly connected with the rotating shaft (8).

8. The animal blood pressure monitoring device according to claim 7, wherein the driving assembly comprises a driving motor, and an output shaft of the driving motor is connected with one end of the rotating shaft (8) to drive the rotating shaft (8) to rotate.

9. The animal blood pressure monitoring device according to claim 8, wherein ​ ​ ​ ​ ​ ​ ​ ​ The locking structure comprises a driving wheel arranged in the support column (6) and a toothed matching part arranged at both ends of the rotating shaft (8), the driving wheel is arranged in the support column (6) and matches with the toothed matching part, the driving motor is arranged on the support column (6), and the output shaft of the driving motor extends into the support column (6) and is fixedly connected with the driving wheel.

10. The animal blood pressure monitoring device of claim 7, wherein: An end surface of the rotating shaft (8) is provided with a scale (9), and the support column (6) is provided with a pointer (10) pointing to the scale (9).