Crawling ladder device for mouse resistance training

By designing a resistance training ladder device for mice, and utilizing an adjustable ladder and protractor system, the problem of inaccurate angle and intensity control in existing devices during resistance training was solved. This achieved accurate simulation and safety assurance, improved experimental efficiency, and reduced costs.

CN223681754UActive Publication Date: 2025-12-19BEIJING SPORT UNIV
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Patent Information

Application Number
CN202520110820.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2025-12-19
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

Existing mouse locomotion devices struggle to provide variable angles, precise control of movement intensity, and ensure mouse safety when simulating resistance exercise, resulting in unmet research needs.

Method used

A resistance training ladder device for mice was designed. Through an adjustable ladder and a ladder protractor adjustment system, it can accurately simulate the resistance movement of mice under different intensities. The device includes a base, a main frame, an adjustable ladder and a mouse platform. High-strength materials are used to ensure stability and safety.

Benefits of technology

It achieves precise simulation of resisted movement in mice, allows for flexible adjustment of movement intensity, ensures mouse safety, simplifies experimental preparation, improves experimental efficiency, and reduces costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a mouse resistance training crawling ladder device which comprises a base, a main body frame is arranged on the base, and the lower end of the main body frame is connected with the base through a crawling ladder protractor and is locked and fixed through a locking mechanism; the ladder stand protractor is used for adjusting the inclination angle of the main body frame; an adjustable crawling ladder is mounted on the main body frame and is used for anti-resistance training of mice. According to the technical scheme, through the adjustable crawling ladder and the resistance adjusting system based on the angle, resistance movement of a mouse under different intensities can be accurately simulated; the device is simple and convenient to operate, a researcher can quickly and accurately set and adjust experiment parameters through the angle adjusting device, and the experiment preparation time is shortened.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of animal experiment equipment, and particularly relates to a mouse resistance training ladder device. BACKGROUND

[0002] With the deepening of biomedical research, especially in the research fields related to resistance exercise such as muscle strength, bone health, and neural rehabilitation, there is an increasing demand for mouse experiment devices that can accurately simulate resistance exercise. However, existing exercise devices cannot meet the requirements of precision and specificity for these specific research directions.

[0003] Most of the existing mouse exercise devices focus on aerobic exercise or simple strength training, and there is a lack of ladder device design specifically for resistance exercise models. Some existing ladder devices are not optimized for resistance exercise in structure and cannot well simulate the force condition and movement pattern of mice during resistance exercise.

[0004] The existing mouse exercise devices have many defects in solving the problem of resistance exercise simulation. For example, in terms of providing variable angles, accurately controlling exercise intensity, and ensuring the safety of mice during resistance exercise, the existing technical solutions are not perfect. CONTENT OF THE INVENTION

[0005] The present application provides a mouse resistance training ladder device to achieve the effects of accurately simulating mouse resistance exercise, flexibly adjusting exercise intensity, and ensuring the safety of mouse exercise.

[0006] The present application provides a mouse resistance training ladder device, comprising: a base, wherein,

[0007] A main frame is arranged on the base, and the lower end of the main frame is connected with the base through a ladder protractor and locked and fixed through a locking mechanism;

[0008] The ladder protractor is used to adjust the inclination angle of the main frame;

[0009] An adjustable ladder is installed on the main frame, and the adjustable ladder is used for resistance training of mice.

[0010] In the technical scheme, the base is provided with a main frame, the lower end of the main frame is connected with the base through a ladder protractor, and is locked and fixed through a locking mechanism; the ladder protractor is used for adjusting the inclination angle of the main frame; the adjustable ladder is installed on the main frame, and is used for resistance training of mice; through the adjustable ladder and the angle-based resistance adjusting system, the anti-resistance movement of mice under different intensities can be accurately simulated; the device is simple to operate, and researchers can quickly and accurately set and adjust experimental parameters through the angle adjusting device, so that the experimental preparation time is reduced.

[0011] In one specific embodiment, the locking mechanism comprises a sliding screw and a bolt hole provided on the base, wherein,

[0012] The bolt hole is used for installing a fixing bolt;

[0013] The sliding screw and the fixing bolt are used for locking and fixing the main frame and the base after the inclination angle of the main frame is adjusted.

[0014] In one specific embodiment, the top end of the adjustable ladder is provided with a mouse loading platform, wherein,

[0015] The mouse loading platform is used for placing mice after training.

[0016] In one specific embodiment, the adjustable ladder and the main frame are detachably connected.

[0017] In one specific embodiment, the adjustable ladder and the main frame are clamped and fixed.

[0018] In one specific embodiment, the adjustable ladder comprises a partition plate and ladder assemblies provided on both sides of the partition plate.

[0019] In one specific embodiment, the ladder assembly comprises a plurality of crossbars, and each crossbar is arranged at equal intervals.

[0020] In one specific embodiment, the ladder protractor is integrally arranged with the base.

[0021] In one specific embodiment, a sliding groove is arranged on the ladder protractor, and the sliding screw is installed in the sliding groove.

[0022] In one specific embodiment, a buffer pad is arranged on the base. BRIEF DESCRIPTION OF DRAWINGS

[0023] Fig. 1 A structural schematic view (perspective view) of a mouse resistance training ladder device provided by the embodiment of the present application;

[0024] Fig. 2 A structural schematic diagram (front view) of the mouse resistance training ladder device provided by the embodiment of the present application is shown in the following figure.

[0025] Fig. 3 A structural schematic diagram (left view) of the mouse resistance training ladder device provided by the embodiment of the present application is shown in the following figure.

[0026] In the figure, 1 is a base, 2 is a main frame, 3 is a ladder protractor, 4 is an adjustable ladder, 5 is a sliding screw, 6 is a mouse loading platform, 7 is a partition, 8 is a crossbar, and 9 is a sliding groove. DETAILED DESCRIPTION

[0027] The present application will be further described in detail by the accompanying drawings and embodiments. Through these descriptions, the features and advantages of the present application will become more apparent.

[0028] The word "exemplary" is used herein to mean "serving as an example, instance, or illustration." Any implementation described herein as "exemplary" is not necessarily to be construed as preferred or advantageous over other implementations. Although aspects of an implementation can be presented in the singular, the plural is contemplated unless expressly modified otherwise.

[0029] In addition, the technical features involved in different embodiments of the present application described below can be combined with each other as long as there is no conflict.

[0030] To facilitate understanding of the mouse resistance training ladder device provided by the embodiment of the present application, the application scenario thereof is first described. The mouse resistance training ladder device provided by the embodiment of the present application is used to achieve the effects of accurately simulating mouse resistance exercise, flexibly adjusting exercise intensity, and ensuring mouse exercise safety. With the deepening of biomedical research, especially in the research fields related to resistance exercise such as muscle strength, bone health, and neural rehabilitation, there is an increasing demand for mouse experimental devices that can accurately simulate resistance exercise. However, existing exercise devices are difficult to meet the requirements of precision and specificity for these specific research directions. Most of the existing mouse exercise devices focus on aerobic exercise or simple strength training, and there is a lack of ladder device design specifically for resistance exercise models. Some existing ladder devices are not optimized for resistance exercise in structure and cannot well simulate the stress condition and exercise mode of mice in resistance exercise. There are many defects in existing mouse exercise devices when solving the problem of simulating resistance exercise. For example, in terms of providing variable angles, accurately controlling exercise intensity, and ensuring the safety of mice in resistance exercise, the existing technical solutions are not perfect. Therefore, the embodiment of the present application provides a mouse resistance training ladder device to achieve the effects of accurately simulating mouse resistance exercise, flexibly adjusting exercise intensity, and ensuring mouse exercise safety. The embodiment will be described in detail in combination with specific drawings.

[0031] Reference Figs. 1-3 , Fig. 1 The structural schematic diagram (perspective view) of the mouse resistance training ladder device provided by the embodiment of the present application is shown in the figure. Fig. 2 The structural schematic diagram (front view) of the mouse resistance training ladder device provided by the embodiment of the present application is shown in the figure. Fig. 3 The structural schematic diagram (left view) of the mouse resistance training ladder device provided by the embodiment of the present application is shown in the figure.

[0032] In Figs. 1-3 the embodiment of the present application, a mouse resistance training ladder device is provided, comprising a base 1, wherein

[0033] A main frame 2 is arranged on the base, the lower end of the main frame is connected with the base through a ladder protractor 3, and is locked and fixed through a locking mechanism;

[0034] The ladder protractor is used to adjust the inclination angle of the main frame;

[0035] An adjustable ladder 4 is installed on the main frame, and the adjustable ladder is used for resistance training of mice.

[0036] In the above technical solution, the base is arranged, the main frame is arranged on the base, the lower end of the main frame is connected with the base through the ladder protractor, and is locked and fixed through the locking mechanism; the ladder protractor is used to adjust the inclination angle of the main frame; the adjustable ladder is installed on the main frame, and the adjustable ladder is used for resistance training of mice; through the adjustable ladder and the angle-based resistance adjusting system, the resistance exercise of mice under different intensities can be accurately simulated; the device is easy to operate, and researchers can quickly and accurately set and adjust experimental parameters through the angle adjusting device, thereby reducing experimental preparation time.

[0037] In a specific implementable embodiment, the locking mechanism comprises a sliding screw 5 and a bolt hole arranged on the base, wherein

[0038] The bolt hole is used to pass and fix a bolt;

[0039] The sliding screw and the fixed bolt are used to lock and fix the main frame and the base after adjusting the inclination angle of the main frame.

[0040] In a specific implementable embodiment, the top end of the adjustable ladder is provided with a mouse loading platform 6, wherein

[0041] The mouse loading platform is used to place mice after training.

[0042] In one embodiment, the adjustable ladder is detachably connected to the main frame.

[0043] In one embodiment, the adjustable ladder is detachably connected to the main frame.

[0044] In one embodiment, the adjustable ladder comprises a partition plate 7 and ladder assemblies arranged on both sides of the partition plate.

[0045] In one embodiment, the ladder assembly comprises a plurality of horizontal rods 8, each of which is arranged at equal intervals.

[0046] In one embodiment, the ladder angle gauge is integrally arranged with the base.

[0047] In one embodiment, the ladder angle gauge is provided with a sliding slot 9, and the sliding screw is arranged in the sliding slot.

[0048] In one embodiment, the base is provided with a buffer pad.

[0049] Specifically, referring to Figs. 1-3 , the mouse anti-resistance training ladder device comprises a base, a main frame, an adjustable ladder, an angle gauge system (including a ladder angle gauge), and a mouse loading platform.

[0050] The base is made of heavy metal material to ensure the stability of the entire device and prevent shaking during mouse exercise. The base has bolt holes and sliding screws for stable connection with the main frame.

[0051] The ladder main frame is a cuboid structure made of high-strength aluminum alloy and is vertically installed on the base. The side of the frame is provided with fixing holes for installing and adjusting the ladder and other components.

[0052] (1) Adjustable ladder

[0053] The ladder is composed of 62 horizontal rods made of high-strength aluminum alloy, and the distance between the two steps is 1.5 cm to ensure stable gripping of the mouse. There is a vertical partition plate in the middle to ensure that the two sides of the partition plate can be trained at the same time and improve the training efficiency. The partition plate is made of acrylic plate to avoid injury to the mouse.

[0054] (2) Resistance adjustment system

[0055] The system mainly realizes the change of resistance based on the angle adjustment of the ladder protractor. The inclination angle of the ladder can be adjusted according to the experimental requirements, and the angle adjustment range is 0-90°. By changing the inclination angle of the ladder, different resistances are realized. The greater the angle, the greater the resistance the mouse will experience when climbing, thereby simulating resistance exercise of different intensities. Through the precise angle control mechanism, researchers can accurately set the ladder angle and thus control the resistance experienced by the mouse. The connecting device between the ladder and the main frame is specially designed to ensure the stability of the ladder at different angles and ensure the repeatability of the experiment.

[0056] (3) Mouse loading platform

[0057] The top end of the device is equipped with a high-strength aluminum alloy mouse loading platform, and the baffle height is higher than the ladder, which is convenient for placing the mouse and prevents the mouse from falling from the side during climbing, avoiding injury to the mouse.

[0058] (4) Connection and cooperation

[0059] The base and the main frame are tightly connected through sliding screws to ensure the stability of the structure, and 2-4 fixing screws can be added if necessary. The ladder and the main frame are tightly matched through the clamping groove to ensure the smoothness and stability of the ladder when adjusting the angle. The base can be laid with a cushion to ensure the safety of the mouse. From the figure, the layout of the base, the main frame, the adjustable ladder, the angle between the base and the main frame, and the mouse loading platform of the device can be clearly seen, showing that the device structure is compact and the design is reasonable, which can well meet the needs of mouse resistance exercise experiment.

[0060] The operation process of the mouse resistance training ladder device is as follows:

[0061] (1) Place the base on a stable workbench to ensure that it is placed horizontally, and check the firmness of the connection. Lay a cushion on the base before the training starts to protect the safety of the mouse.

[0062] (2) According to the experimental design, adjust the ladder to the appropriate inclination angle through the protractor, and record the angle data at the same time.

[0063] (3) Give the mouse a weight to start climbing, and researchers can observe the movement of the mouse on both sides through the transparent baffle and record relevant data such as climbing speed and movement time. When the mouse climbs to the top, it can be placed on the mouse loading platform to rest and ensure the safety of the mouse. According to the experimental intensity, repeat the above operation after interval rest.

[0064] (4) After the experiment is completed, take the mouse off the mouse loading platform, clean and maintain the device, and check whether all parts are normal to prepare for the next experiment.

[0065] In the above technical solution, the beneficial effects include:

[0066] (1) Functionality enhancement

[0067] The device can accurately simulate the resistance exercise of mice under different intensities through the adjustable ladder and the angle-based resistance adjustment system. Researchers can flexibly adjust the angle of the ladder to change the resistance according to the experimental requirements, and conduct targeted training and research on the muscle strength and endurance of mice, greatly enriching the experimental functions.

[0068] (2) Efficiency improvement

[0069] The device is easy to operate, and researchers can quickly and accurately set and adjust experimental parameters through the angle adjustment device, reducing experimental preparation time. The stability and reliability of the device ensure that the mice can smoothly perform exercise, reducing experimental interruptions caused by equipment problems and improving experimental efficiency. The device can ensure that the two sides of the partition can be trained simultaneously, improving training efficiency.

[0070] (3) Cost reduction

[0071] In terms of material selection, acrylic plates are used as partition materials and common metals, which reduces production costs while ensuring device performance. In addition, the safety design of the device reduces the experimental failure and repeated costs caused by mouse injuries, which helps to reduce the overall cost of the experiment in the long run.

[0072] Those skilled in the art know that the present application can be implemented as a system, a method or a computer program product.

[0073] Therefore, the present disclosure can be embodied in the form of a system, a method or a computer program product.

[0074] Any combination of one or more computer readable medium can be utilized. The computer readable medium can be a computer readable signal medium or a computer readable storage medium. A computer readable storage medium can be, for example, but not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any suitable combination of the foregoing. More specific examples (a non-exhaustive list) of the computer readable storage medium include: an electrical connection having one or more wires, a portable computer diskette, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or Flash memory), an optical fiber, a portable compact disc read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the foregoing. In the context of this document, a computer readable storage medium can be any tangible medium that can contain, or store a program for use by or in connection with an instruction execution system, apparatus, or device.

[0075] Although the embodiments of the present application have been shown and described above, it should be understood by those ordinary skilled in the art that the above embodiments are exemplary and cannot be understood as limiting the present application, and those ordinary skilled in the art can make changes, modifications, replacements and variations to the above embodiments within the scope of the present application. On this basis, various replacements and improvements can be made to the present application, and these all fall within the protection scope of the present application.

Claims

1. A mouse anti-resistance training ladder device, characterized by, The utility model relates to a mouse anti-resistance training device, including: The base, wherein, The main body frame is connected with the base through the ladder angle gauge at the lower end, and is locked and fixed through the locking mechanism; The ladder angle gauge is used for adjusting the inclination angle of the main body frame; The adjustable ladder is installed on the main body frame, and the adjustable ladder is used for the anti-resistance training of mice.

2. The mouse anti-resistance training ladder apparatus of claim 1, wherein, The locking mechanism includes a sliding screw and a bolt hole arranged on the base, The bolt hole is used for installing a fixing bolt; The sliding screw and the fixing bolt are used for locking and fixing the main body frame and the base after adjusting the inclination angle of the main body frame.

3. The mouse anti-resistance training ladder apparatus of claim 2, wherein, The top of the adjustable ladder is provided with a mouse loading table, The mouse loading table is used for placing the mice after training.

4. The mouse anti-resistance training ladder apparatus of claim 3, wherein, The adjustable ladder and the main body frame are detachably connected.

5. The mouse anti-resistance training ladder apparatus of claim 4, wherein, The adjustable ladder and the main body frame are clamped and fixed.

6. The mouse anti-resistance training ladder apparatus of claim 5, wherein, The adjustable ladder includes a partition plate and ladder assemblies arranged on both sides of the partition plate.

7. The mouse anti-resistance training ladder apparatus of claim 6, wherein, The ladder assembly includes a plurality of crossbars, and each crossbar is arranged at equal intervals.

8. The mouse anti-resistance training ladder apparatus of claim 7, wherein, The ladder angle gauge is integrally arranged with the base.

9. The mouse anti-resistance training ladder apparatus of claim 8, wherein, The ladder angle gauge is provided with a sliding groove, and the sliding screw is installed in the sliding groove.

10. The mouse anti-resistance training ladder apparatus of claim 9, wherein, The base is provided with a buffer pad.