Intelligent vibration maze experiment device capable of replacing water maze experiment

By simulating earthquake environments through an intelligent vibration maze experimental device, which replaces the water maze experiment, the problems of animal drowning and low experimental efficiency are solved, and efficient and safe animal experimental data collection and analysis are achieved.

CN119234726BActive Publication Date: 2025-10-10GUANGZHOU MEDICAL UNIV +1
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202411646401.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-10-10
Estimated Expiration
2044-11-18

AI Technical Summary

Technical Problem

Existing water maze experiments have problems such as the risk of animal drowning, complicated experimental procedures, low experimental efficiency, low accuracy of experimental results, and non-compliance with the "3R" principles of animal experiments.

Method used

An intelligent vibration maze experimental device was designed, which used a simulated earthquake environment to replace the water maze experiment. It used an intelligent detection module box, inner barrel module, outlet module, inlet module and intelligent robot dog, and manufactured various earthquake sources through motor reducers, electric push rods and other components. It combined with an intelligent screen display and touch screen to output data to realize automated experiments.

Benefits of technology

It avoids the risk of animal drowning, ensures the accuracy of experimental results and animal health, reduces the labor intensity of experimenters, improves experimental efficiency, and meets the needs of rich support and automated control of experimental data.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119234726B_ABST
    Figure CN119234726B_ABST
Patent Text Reader

Abstract

The application relates to the technical field of experimental instruments, and discloses an intelligent vibration maze experiment device capable of replacing a water maze experiment, which comprises an outer barrel module, an intelligent detection module box, an inner barrel module, an outlet module, an inlet module and an intelligent robot dog, the inner barrel module is fixed on the upper fixing seat of the inner barrel fixing spring of the outer barrel through a spring fixing seat fixing screw, the square hole at the upper portion of the inner barrel module is sleeved on the high-foam rubber sealing ring of the cantilever of the outer barrel, the intelligent detection module box is fixed on the cantilever at the upper portion of the outer barrel through a screw, the inlet module is inserted into the square hole at the middle portion of the outer barrel through the inlet of the outlet module, and the electric push rod C is fixed on the upper edge of the square hole at the middle portion of the outer barrel through an electric push rod C fixing screw. The water maze experiment is replaced by the mode of simulating a seismic environment, so that the risk of animal drowning is avoided, and the life safety of the animals is greatly guaranteed. Since no water is involved, the animals do not have the risk of wound infection after entering the water.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field of experimental instruments, in particular to an intelligent vibration maze experimental device capable of replacing a water maze experiment. Background Art

[0002] The water maze test is a neuroscience experiment commonly used to study learning and memory in animals (such as mice and rats). It involves having the animals navigate a water-filled maze and search for a hidden platform. Through repeated training, the animals' swimming paths and the time it takes to find the platform are observed to assess their spatial learning and memory abilities. This experiment is commonly used in research on neurodegenerative diseases and the effects of drugs on cognitive function.

[0003] However, existing water maze experiments have many shortcomings. First, animals are at risk of drowning during the experiment, especially small experimental animals with weak swimming ability, which may drown due to exhaustion or inability to find a platform. Secondly, if the animals have undergone brain surgery before the experiment, the wounds are very likely to become infected after entering the water, and bacteria and microorganisms in the water may enter the animal's body and cause serious infection, affecting the animal's health and the accuracy of the experimental results. Furthermore, the experimental process is complicated, and taking and placing animals consumes a lot of manpower and material resources, and improper water treatment can easily cause waste and environmental pollution. In addition, in order to obtain accurate data, it is often necessary to repeat the experiment many times, which not only leads to animal waste, but also does not conform to the "3R" principle of animal experiments. At the same time, there are also problems such as high labor intensity for experimenters, low experimental efficiency and low accuracy of experimental results. Summary of the Invention

[0004] In view of the shortcomings of the existing technology, the present invention provides an intelligent vibration maze experimental device that can replace the water maze experiment, solving the problem that animals may drown in the water due to exhaustion, inability to find a platform or other unexpected situations in the existing water maze experimental device.

[0005] To achieve the above objectives, the present invention is implemented through the following technical solutions: an intelligent vibration maze experiment device that can replace the water maze experiment, including an outer barrel module, an intelligent detection module box, an inner barrel module, an outlet module, an inlet module and an intelligent robot dog, wherein the inner barrel module is fixed to the upper fixing seat on the inner barrel fixing spring of the outer barrel by a spring fixing seat fixing screw;

[0006] The square hole on the upper part of the inner barrel module is sleeved on the high foam rubber sealing ring on the cantilever of the outer barrel;

[0007] The intelligent detection module box is fixed to the cantilever on the upper part of the outer barrel by screws;

[0008] The inlet module is inserted into the square hole in the middle of the outer barrel through the inlet of the outlet module, and is fixed to the square hole in the middle of the outer barrel with the electric push rod C fixing screw;

[0009] The outlet module is inserted into the square hole on the side of the barrel module in the middle of the outer barrel through the outlet of the outlet module, and is fixed on the upper side of the square hole on the side of the barrel module in the middle of the outer barrel with the electric push rod fixing screw;

[0010] The intelligent robot dog enters the inner barrel space of the inner barrel module through the inlet module and walks to the outside of an intelligent vibration maze experimental device that can replace the water maze experiment through the outlet module.

[0011] Preferably, the outer barrel module includes a rubber strip, an outer barrel, a cantilever, a cantilever fixing screw, a high-foam rubber sealing ring, a cantilever cover plate side fixing screw, a cantilever cover plate, a spring fixing seat fixing screw, an upper fixing seat, an inner barrel fixing spring, a lower fixing seat, a supporting channel steel, an embedded bolt, an emotion change detection touch screen, a safety platform, a high-foam rubber sleeve, an eccentric wheel, a roller, an electric push rod A, an electric push rod B, an electric push rod fixing screw, a motor reducer, a motor reducer fixing screw and a safety platform fixing screw;

[0012] The rubber strip is inlaid on the upper edge of the outer barrel;

[0013] The supporting channel steel is welded to the rib plate on the bottom plate of the outer barrel and fixed to the ground by embedded bolts;

[0014] The lower fixing seat is fixed to the inner bottom plate of the outer barrel by the spring fixing seat fixing screws, the inner barrel fixing springs are respectively sleeved on the small circles of the lower fixing seat, and the small circles of the upper fixing seat are respectively inserted into the upper circles of the inner barrel fixing springs;

[0015] The motor reducer is fixed to the inner bottom plate of the outer barrel by the motor reducer fixing screws, the electric push rod A with a roller is fixed to the left arm on the output shaft of the motor reducer by the electric push rod fixing screws, the electric push rod B with a roller is fixed to the right arm on the output shaft of the motor reducer by the electric push rod fixing screws, the eccentric wheel is connected to the upper end of the output shaft of the motor reducer by a key, the safety platform is fixed to the inner bottom plate of the outer barrel by the safety platform fixing screws, the emotion change detection touch screen is fixed to the plane of the safety platform by screws, and the high foam rubber sleeve is placed on the edge of the emotion change detection touch screen and the plane of the safety platform;

[0016] The cantilever is inserted into the square hole on the side of the outer barrel module at the upper end of the outer barrel, and then inserted into the square hole on the upper part of the inner barrel, and then inserted into the square hole opposite to the square hole on the upper part of the inner barrel, and then inserted into the square hole on the side of the other barrel module at the upper end of the outer barrel and fixed to the barrel wall on the upper end of the outer barrel by the cantilever fixing screws. The small end face of the cantilever cover plate is inserted into the square hole on the side of the other barrel module at the upper end of the outer barrel, and then inserted into the square hole on the other barrel module end of the cantilever and fixed to the barrel wall on the other barrel module end of the outer barrel by the cantilever fixing screws. The high foam rubber sealing ring is connected to the periphery of the two ends of the cantilever by glue, the square hole on the upper part of the inner barrel is sleeved on the high foam rubber sealing ring, the bottom plate of the inner barrel is fixed to the upper fixing seat by the spring fixing seat fixing screws, and the cantilever cover plate is fixed to the other barrel module end of the cantilever with the cantilever cover plate side fixing screws;

[0017] The outer barrel module provides a natural disaster source for simulating earthquakes for the inner barrel module, and produces a variety of different earthquake sources by adjusting the speed of the motor reducer and the rise and fall of the electric push rod A and the electric push rod B.

[0018] Preferably, the intelligent detection module box includes an instrument cabinet, an infrared camera, an air conditioning module, a humidity adjustment module, an air conditioner, a light box, a temperature adjustment module, a noise control module and an infrared tracker;

[0019] The instrument cabinet is used to respectively install an infrared camera, an air conditioning module, a humidity conditioning module, an air conditioner, a light box, a temperature conditioning module, a noise control module and an infrared tracker into the instrument cabinet and fix them on the panel of the instrument cabinet with screws. The instrument cabinet is fixed to the cantilever of the outer barrel module by bolts, wherein the probes of the infrared camera, the air conditioning module, the humidity conditioning module, the air conditioner, the temperature conditioning module, the noise control module and the infrared tracker pass through the bottom of the instrument cabinet and are placed in the activity space.

[0020] Preferably, the inner barrel module includes inner barrel cover fixing screws, inner barrel cover, inner barrel, smart screen display fixing screws, smart screen display, spring door A, smart robot dog automatic charging pile, smart touch screen fixing screws, smart touch screen, smart touch screen table fixing screws, smart touch screen table, spring door B, swing hollow shaft guide rail upper fixing screws, swing hollow shaft guide rail, guide rail fixing screws, inner barrel tilting guide rail, inner barrel shaking guide rail, stabilizing pin fixing screws, inner barrel stabilizing pin and stabilizing spring;

[0021] The inner barrel cover is fixed to the upper flange of the inner barrel by inner barrel cover fixing screws;

[0022] The smart screen display is fixed to the inner barrel wall of the inner barrel by means of smart screen display fixing screws;

[0023] The spring door armor is fixed to the edge of the barrel wall with a square hole in the middle and lower part by screws, and an intelligent robot dog automatic charging pile is installed not far from the spring door armor;

[0024] The smart touch screen table is fixed to the middle and lower flange of the barrel wall by the smart touch screen table fixing screws;

[0025] The smart touch screen is fixed to the smart touch screen table by smart touch screen fixing screws;

[0026] The spring door B is fixed to the side of the barrel wall with a square hole in the lower middle part of the other barrel module side by screws;

[0027] The upper side of the swing hollow shaft guide rail is fixed on the intelligent touch screen table by the upper fixing screws of the swing hollow shaft guide rail, and the lower side of the swing hollow shaft guide rail is fixed by the guide rail.

[0028] The screws are fixed to the center step of the bottom plate of the inner barrel;

[0029] The inner barrel inclined guide rail is fixed to the bottom plate of the inner barrel by guide rail fixing screws;

[0030] The inner barrel shaking guide rail is fixed to the bottom plate of the inner barrel by guide rail fixing screws;

[0031] The inner barrel stabilizing pin passes through the upper step hole of the inner barrel, and the stabilizing spring is sleeved on the inner barrel stabilizing pin and fixed to the inner wall of the upper step of the inner barrel by a stabilizing pin fixing screw.

[0032] Preferably, the outlet module includes an electric push rod fixing screw, an electric push rod, an electric push rod moving shaft fixing screw, an outlet channel and an outlet channel plug door;

[0033] The electric push rod D is fixed to the upper side of the square hole in the middle and lower part of the outer barrel wall of the outer barrel by the electric push rod D fixing screws, the moving shaft of the electric push rod D is fixed to the outlet channel by the moving shaft fixing screws of the electric push rod D, and the outlet channel plug door is inserted in the gap near the outer end of the outlet channel.

[0034] Preferably, the inlet module includes an electric push rod C fixing screw, an electric push rod C, a fixing screw for the moving shaft of the electric push rod C, an inlet channel and an inlet channel plug door;

[0035] The electric push rod C is fixed to the upper side of the square hole in the lower middle part of the other barrel module end of the outer barrel wall of the outer barrel by the electric push rod C fixing screws, the moving axis of the electric push rod C is fixed to the inlet channel by the moving axis fixing screws of the electric push rod C, and the inlet channel plug door is inserted in the gap near the outer end of the inlet channel.

[0036] The present invention provides an intelligent vibration maze experiment device that can replace the water maze experiment. It has the following beneficial effects:

[0037] 1、The application adopts the mode of simulating the earthquake environment to replace the water maze experiment, avoids the risk of animal drowning, and greatly guarantees the life safety of animals.

[0038] 2、The infrared camera, air conditioning module, humidity adjustment module, air conditioner, temperature adjustment module, noise control module and infrared tracker in the intelligent detection module box can comprehensively monitor, adjust, control and track the activity space of small animals, which helps to accurately grasp the experimental environment and animal state.

[0039] 3、The inner barrel module as the environment of animal experiment and the bearing body of simulated earthquake natural disaster, the intelligent picture display screen can display various sound animation pictures of earthquake environment according to requirements, the intelligent touch screen can output the data such as trajectory, time, stopping point, stopping time, heart rate and speed of animals, so as to provide rich data support for experiments and meet the experimental requirements.

[0040] 4、The outlet module and the inlet module can conveniently control the animals and intelligent robot dogs to enter and exit the inner barrel module through the cooperation of the electric push rod and the channel plug door, and the linkage design of the channel movement and the spring door makes the channel opening and closing operation simple and reliable, so that the smooth progress of the experiment is guaranteed. DETAILED DESCRIPTION

[0041] Figure 1 It is an A-A sectional structure front view of the intelligent vibration maze experiment device which can replace the water maze experiment of the application.

[0042] Figure 2 It is a structural schematic top view of the intelligent vibration maze experiment device which can replace the water maze experiment of the application.

[0043] Figure 3 It is a B-B sectional structure view of the intelligent vibration maze experiment device which can replace the water maze experiment of the application.

[0044] Figure 4 It is a C-C sectional structure view of the intelligent vibration maze experiment device which can replace the water maze experiment of the application.

[0045] Figure 5 It is a A-A sectional structure local front view of the outer barrel device of the intelligent vibration maze experiment device which can replace the water maze experiment of the application.

[0046] Figure 6This is a partial front DD sectional structural diagram of the outer barrel device of the intelligent vibration maze experimental device of the present invention that can replace the water maze experiment;

[0047] Figure 7 This is a partial front view of the AA cross-sectional structure of the outer barrel device of an intelligent vibration maze experiment device that can replace the water maze experiment of the present invention, and an F-direction structural diagram;

[0048] Figure 8 This is a front view schematically showing the structure of an intelligent detection device box of an intelligent vibration maze experiment device that can replace a water maze experiment according to the present invention;

[0049] Figure 9 This is a partial front structural diagram of the AA cross-sectional structure of the inner barrel device of an intelligent vibration maze experiment device that can replace the water maze experiment of the present invention;

[0050] Figure 10 This is a partial front view of the BB cross-sectional structure of the inner barrel device of an intelligent vibration maze experiment device that can replace the water maze experiment of the present invention;

[0051] Figure 11 This is a BB sectional structural diagram and a DD sectional structural diagram of a partial front view of an inner barrel device of an intelligent vibration maze experimental device that can replace a water maze experiment of the present invention;

[0052] Figure 12 This is an enlarged view of a portion G of the outlet device of the AA cross-sectional front view of the intelligent vibration maze experimental device of the present invention that can replace the water maze experiment;

[0053] Figure 13 This is a partial H enlarged view of the inlet device of the AA cross-sectional structure front view of an intelligent vibration maze experimental device of the present invention that can replace the water maze experiment.

[0054] 1. Outer barrel module; 1-1. Rubber trim; 1-2. Outer barrel; 1-3. Cantilever; 1-4. Cantilever fixing screw; 1-5. High-foam rubber seal; 1-6. Cantilever cover side fixing screw; 1-7. Cantilever cover; 1-8. Spring fixing seat fixing screw; 1-9. Upper fixing seat; 1-10. Inner barrel fixing spring; 1-11. Lower fixing seat; 1-12. Support channel steel; 1-13. Embedded bolts; 1-14. Emotion change detection touch screen; 1-15. Safety platform; 1-16. High-foam rubber sleeve; 1-17. Eccentric wheel; 1-18 , roller; 1-19, electric push rod A; 1-20, electric push rod B; 1-21, electric push rod fixing screw; 1-22, motor reducer; 1-23, motor reducer fixing screw; 1-24, safety platform fixing screw; 2, intelligent detection module box; 2-1, instrument cabinet; 2-2, infrared camera; 2-3, air conditioning module; 2-4, humidity control module; 2-5, air conditioner; 2-6, light box; 2-7, temperature control module; 2-8, noise control module; 2-9, infrared tracker; 3, inner barrel module; 3-1, inner barrel cover fixing 3-2, inner barrel cover; 3-3, inner barrel; 3-4, smart screen display fixing screws; 3-5, smart screen display; 3-6, spring door A; 3-7, smart robot dog automatic charging station; 3-8, smart touch screen fixing screws; 3-9, smart touch screen; 3-10, smart touch screen table fixing screws; 3-11, smart touch screen table; 3-12, spring door B; 3-13, swing hollow shaft guide rail upper fixing screws; 3-14, swing hollow shaft guide rail; 3-15, guide rail fixing screws; 3-16, inner barrel tilt guide rail; 3- 17. Inner barrel shaking guide rail; 3-18. Stabilizing pin fixing screw; 3-19. Inner barrel stabilizing pin; 3-20. Stabilizing spring; 4. Export module; 4-1. Electric push rod D fixing screw; 4-2. Electric push rod D; 4-3. Electric push rod D moving axis fixing screw; 4-4. Export channel; 4-5. Export channel plug door; 5. Animal; 6. Import module; 6-1. Electric push rod C fixing screw; 6-2. Electric push rod C; 6-3. Electric push rod C moving axis fixing screw; 6-4. Import channel; 6-5. Import channel plug door; 7. Intelligent robot dog. DETAILED DESCRIPTION

[0055] The following will clearly and completely describe the technical solutions of the present invention in conjunction with the accompanying drawings. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0056] Please see the attached Figure 1 -Attached Figure 4The embodiment of the present invention provides an intelligent vibration maze experiment device that can replace the water maze experiment, including an outer barrel module 1, an intelligent detection module box 2, an inner barrel module 3, an outlet module 4, an animal 5, an inlet module 6, and an intelligent robot dog 7. The inner barrel module 3 is fixed to an upper fixing seat 1-9 on an inner barrel fixing spring 1-10 of an outer barrel 1-2 by spring fixing seat fixing screws 1-8 (there are four inner barrel fixing springs 1-10 and four upper fixing seats 1-9).

[0057] The square hole on the upper part of the inner barrel module 1 is sleeved on the high foam rubber sealing ring 1-5 on the cantilever 1-3 of the outer barrel 1-2;

[0058] The intelligent detection module box 2 is fixed to the cantilever 1-3 on the upper part of the outer barrel 1-2 by screws;

[0059] The inlet module 6 is inserted into the square hole in the middle of the outer barrel 1-2 through the inlet of the outlet module 4. The electric push rod C 6-2 is fixed to the upper side of the square hole in the middle of the outer barrel 1-2 with the electric push rod C fixing screw 6-1;

[0060] The outlet module 4 is inserted into the square hole on the other side of the middle of the outer barrel 1-2 through the outlet of the outlet module 4, and the electric push rod D 4-2 is fixed to the square hole on the other side of the middle of the outer barrel 1-2 with the electric push rod D fixing screw 4-1;

[0061] Animal 5 enters the inner barrel 3-3 space of the inner barrel module 3 through the inlet module 6, and walks out of an intelligent vibration maze experimental device that can replace the water maze experiment through the outlet module 4;

[0062] The intelligent robot dog 7 enters the inner barrel 3-3 space of the inner barrel module 3 through the inlet module 6, and walks to the outside of an intelligent vibration maze experimental device that can replace the water maze experiment through the outlet module 4.

[0063] Specifically, through the coordinated action of the motor reducer, electric push rod A, electric push rod B and other components in the outer barrel module, a variety of different earthquake sources can be created, providing a diverse simulated earthquake environment for the experiment. This can replace the water maze experiment and avoid the risk of drowning that animals may face in the water maze experiment. In addition, the safety platform and emotion change detection touch screen in the outer barrel module can detect the animal's emotion change data when it is on the safety platform, meeting the experimental requirements.

[0064] The present invention has a simple structure and a high degree of automation. It can simulate and display the natural environment in which animals are located and transform other natural environments, especially audio and video functions of various environments related to natural disasters and earthquakes, through an intelligent screen display. The animal's trajectory, time, stop point, stop time, heart rate, and speed data can be output through an intelligent touch screen to meet the requirements of the experiment. The intelligent robot dog can automatically walk to a safe shelter and automatically drive the animal to a designated location. The intelligent robot dog can also be remotely controlled by a staff member. When the power is insufficient, the intelligent robot dog can automatically find an intelligent robot dog automatic charging station for charging. The air conditioning device, humidity control device, air conditioning, temperature control device, noise control device and light box provide a more comfortable experimental environment. The animal's activity space can be monitored and controlled. The automated experiment can be realized through programming, which expands the research scope of the experiment, broadens the research field, and reduces the difficulty of the experiment. The animal's movement trajectory, stop time, emotional changes, and similar experimental results of animal intervention can be accurately calculated and recorded throughout the process. The workload of the experimenter is reduced, the experimental cost is reduced, the intervention of the staff is avoided, the authenticity of the experimental results is improved, the labor intensity of the experimenter is reduced, and the experimental efficiency is improved.

[0065] This method replaces the water maze test with a simulated earthquake environment, eliminating the risk of drowning. During the experiment, the animals remain in the relatively safe environment of the inner barrel module, eliminating the need to struggle for survival in water, significantly protecting their lives. Because there is no water involved, the animals are not at risk of wound infection after submersion, ensuring their health and the accuracy of the experimental results.

[0066] Please see the attached Figure 5 -Attached Figure 7 The outer barrel 1-2 module 1 includes a rubber trim 1-1, an outer barrel 1-2, a cantilever 1-3, cantilever fixing screws 1-4, a high-foam rubber sealing ring 1-5, a cantilever cover side fixing screws 1-6, a cantilever cover 1-7, a spring fixing seat fixing screws 1-8, an upper fixing seat 1-9, an inner barrel fixing spring 1-10, a lower fixing seat 1-11, a supporting channel steel 1-12, embedded bolts 1-13, an emotion change detection touch screen 1-14, a safety platform 1-15, a high-foam rubber sleeve 1-16, an eccentric wheel 1-17, a roller 1-18, an electric push rod A 1-19, an electric push rod B 1-20, an electric push rod fixing screws 1-21, a motor reducer 1-22, a motor reducer fixing screws 1-23, and a safety platform 1-15 fixing screws;

[0067] The rubber strip 1-1 is mounted on the upper edge of the outer barrel 1-2;

[0068] The supporting channel steel 1-12 is welded to the rib plate on the bottom plate of the outer barrel 1-2 and fixed to the ground by embedded bolts 1-13;

[0069] The lower fixing seat 1-11 (a total of 4 pieces) is fixed to the inner bottom plate of the outer barrel 1-2 through the spring fixing seat fixing screw 1-8. The inner barrel 3-3 fixing springs 1-10 (a total of 4 pieces) are respectively put on the small circles of the lower fixing seat 1-11, and the small circles of the upper fixing seat 1-9 (a total of 4 pieces) are respectively inserted into the upper circles of the inner barrel fixing springs 1-10;

[0070] The motor reducer 1-22 is fixed to the inner bottom plate of the outer barrel 1-2 by the motor reducer fixing screw 1-23, the electric push rod A 1-19 with the roller 1-18 (a total of 2 pieces) is fixed to the left arm of the output shaft of the motor reducer 1-22 by the electric push rod fixing screw 1-21, the electric push rod B 1-20 with the roller 1-18 is fixed to the right arm of the output shaft of the motor reducer 1-22 by the electric push rod fixing screw 1-21, the eccentric wheel 1-17 is connected to the upper end of the output shaft of the motor reducer 1-22 by a key, the safety platform 1-15 is fixed to the inner bottom plate of the outer barrel 1-2 by the safety platform 1-15 fixing screw, the emotion change detection touch screen 1-14 is fixed to the plane of the safety platform 1-15 by screws, and the high foam rubber sleeve 1-16 is placed on the edge of the plane of the emotion change detection touch screen 1-14 and the safety platform 1-15;

[0071] Insert the cantilever 1-3 into the square hole on one side of the upper end of the outer barrel 1-2, then into the square hole on the upper part of the inner barrel, then into the square hole opposite to the square hole on the upper part of the inner barrel, and then into the square hole on the other side of the upper end of the outer barrel 1-2, and fix it to the barrel wall on the upper end of the outer barrel 1-2 through the cantilever fixing screws 1-4. Insert the small end face of the cantilever cover plate 1- into the square hole on the other side of the upper end of the outer barrel 1-2, and then insert it into the square hole on the other end of the cantilever 1-3, and fix it to the barrel wall on the other side of the upper end of the outer barrel 1-2 through the cantilever fixing screws 1-4. Connect the high foam rubber sealing ring 1-5 to the periphery of the two ends of the cantilever 1-3 with glue, and put the square hole on the upper part of the inner barrel on the high foam rubber sealing ring 1-5. Fix the bottom plate of the inner barrel to the upper fixing seat 1-9 respectively through the spring fixing seat fixing screws 1-8. Fix the cantilever cover plate 1-7 to the other end of the cantilever 1-3 with the cantilever cover plate side fixing screws 1-6.

[0072] Specifically, the outer barrel module 1 provides the inner barrel module 3 with a natural disaster source simulating an earthquake, and creates multiple different earthquake sources by adjusting the speed of the motor reducer 1-22 and the rise and fall of the electric push rod A 1-19 and the electric push rod B 1-20, and provides a safety platform 1-15. When the animal 5 is on the emotion change detection touch screen 1-14 of the safety platform 1-15, the mood change detection touch screen will output the emotion change detection data of the animal 5 to meet the requirements of the experiment.

[0073] Please see the attached Figure 8 -Attached Figure 11, the intelligent detection module box 2 includes an instrument cabinet 2-1, an infrared camera 2-2, an air conditioning module 2-3, a humidity adjustment module 2-4, an air conditioner 2-5, a light box 2-6, a temperature adjustment module 2-7, a noise control module 2-8 and an infrared tracker 2-9;

[0074] The instrument cabinet 2-1 is a device that respectively installs an infrared camera 2-2, an air conditioning module 2-3, a humidity adjustment module 2-4, an air conditioner 2-5, a light box 2-6, a temperature adjustment module 2-7, a noise control module 2-8 and an infrared tracker 2-9 into the instrument cabinet 2-1 and fixes them to the panel of the instrument cabinet 2-1 with screws, and then fixes the instrument cabinet 2-1 to the cantilever 1-3 of the outer barrel 1-2 module 1 with bolts. The probes of the infrared camera 2-2, the air conditioning module 2-3, the humidity adjustment module 2-4, the air conditioner 2-5, the temperature adjustment module 2-7, the noise control module 2-8 and the infrared tracker 2-9 pass through the bottom of the instrument cabinet 2-1 and are placed in the activity space of the small animal 5, so as to monitor, adjust, control, track and record the activity space of the small animal 5.

[0075] The inner barrel module 3 is composed of an inner barrel cover 3-2, fixing screws 3-1, an inner barrel 3-3 cover 3-2, an inner barrel 3-3, fixing screws 3-4 of a smart screen display 3-5, a smart screen display 3-5, a spring door A 3-6, an intelligent robot dog automatic charging station 3-7, fixing screws 3-8 of a smart touch screen, a smart touch screen 3-9, fixing screws 3-10 of a smart touch screen platform, a smart touch screen platform 3-11, a spring door B 3-12, fixing screws 3-13 of an upper portion of a swing hollow shaft guide rail, a swing hollow shaft guide rail 3-14, guide rail fixing screws 3-15, an inner barrel tilting guide rail 3-16, an inner barrel shaking guide rail 3-17, fixing screws 3-18 of a stabilizing pin, an inner barrel stabilizing pin 3-19, and a stabilizing spring 3-20.

[0076] The inner barrel cover 3-2 is fixed to the upper flange of the inner barrel 3-3 by the inner barrel cover fixing screws 3-1;

[0077] The smart screen display screen 3-5 is fixed to the inner barrel 3-3 wall of the inner barrel 3-3 by the smart screen display screen fixing screws 3-4;

[0078] The spring door armor 3-6 is fixed to the edge of the barrel wall with a square hole in the middle and lower part by screws. The intelligent robot dog automatic charging station 3-7 is installed not far from the spring door armor 3-6;

[0079] The smart touch screen table 3-11 is fixed to the middle and lower flange of the barrel wall by the smart touch screen table fixing screws 3-8;

[0080] The smart touch screen 3-9 is fixed to the smart touch screen table 3-11 by the smart touch screen fixing screws 3-8;

[0081] The spring door B 3-12 is fixed to the side with the square hole in the lower middle part of the other side of the barrel wall by screws;

[0082] The upper side of the swing hollow shaft guide rail 3-14 is fixed to the intelligent touch screen 3-9 table by the upper fixing screw 3-13 of the swing hollow shaft guide rail 3-14, and the lower side of the swing hollow shaft guide rail 3-14 is fixed by the guide rail.

[0083] The screws are fixed on the center step of the bottom plate of the inner barrel 3-3;

[0084] The inner barrel tilt guide rail 3-16 is fixed to the bottom plate of the inner barrel 3-3 by the guide rail fixing screws 3-15;

[0085] The inner barrel shaking guide rail 3-17 is fixed to the bottom plate of the inner barrel 3-3 by the guide rail fixing screws 3-15;

[0086] The inner barrel stabilizing pins 3-19 (4 in total) are passed through the upper step holes of the inner barrel 3-3. The stabilizing springs 3-20 (4 in total) are put on the passed inner barrel stabilizing pins 3-19 and fixed to the inner wall of the upper step of the inner barrel 3-3 with the stabilizing pin fixing screws 3-18.

[0087] Specifically, the inner barrel module 3 is the environment for the animal 5 experiment. The inner barrel module 3 is a natural disaster bearer that simulates an earthquake. The smart screen display 3-5 of the inner barrel module 3 can display audio animation images of various earthquake environments as required. The smart touch screen 3-9 of the inner barrel module 3 can output the trajectory, time, stop point, stop time, heart rate, and speed data of the animal 5 to meet the requirements of the experiment.

[0088] Please see the attached Figure 12 The exit module 4 is composed of an electric push rod fixing screw 4-1, an electric push rod 4-2, an electric push rod moving shaft fixing screw 4-3, an exit channel 4-4 and an exit channel plug door 4-5;

[0089] The electric push rod D 4-2 is fixed to the upper side of the square hole in the lower middle portion of the wall of the outer barrel 1-2 of the outer barrel 1-2 by the electric push rod D fixing screw 4-1. The moving axis of the electric push rod D 4-2 is fixed to the outlet passage 4-4 by the moving axis fixing screw 4-3 of the electric push rod D. The outlet passage plug door 4-5 is inserted into the gap near the outer end of the outlet passage 4-4.

[0090] Specifically, the outlet module 4 is the passage for the animals 5 and the intelligent robot dog 7 to go out of the inner barrel module 3, which is moved by the movement of the moving shaft of the electric push rod D 4-2 to drive the outlet passage 4-4 to move, when the moving shaft of the electric push rod D 4-2 is retracted to drive the outlet passage 4-4 to move inward, the top end of the outlet passage 4-4 opens the spring door B 3-12 of the inner barrel module 3, and then the outlet passage plug 4-5 is lifted upward, at this time the animals 5 and the intelligent robot dog 7 go out through the outlet passage 4-4, when the moving shaft of the electric push rod D 4-2 is pushed out to drive the outlet passage 4-4 to move outward, the spring door B 3-12 of the inner barrel module 3 is automatically closed, and then the outlet passage plug 4-5 is pressed downward, the outlet passage 4-4 is closed.

[0091] Please refer to the attached drawings Figure 13 The inlet module 6 includes an electric push rod C fixed screw 6-1, an electric push rod C 6-2, an electric push rod C moving shaft fixed screw 6-3, an inlet passage 6-4, and an inlet passage plug 6-5.

[0092] The electric push rod C 6-2 is fixed in the upper edge of the square hole in the middle and lower part of the other end of the outer barrel 1-2 wall of the outer barrel 1-2 through the electric push rod C fixed screw 6-1, the moving shaft of the electric push rod C 6-2 is fixed on the inlet passage 6-4 through the electric push rod C moving shaft fixed screw 6-3, and the inlet passage plug 6-5 is inserted into the gap of the inlet passage 6-4 close to the outer end.

[0093] Specifically, the inlet module 6 is the passage for the animals 5 and the intelligent robot dog 7 to go into the inner barrel of the inner barrel module 3, which is moved by the movement of the moving shaft of the electric push rod C 6-2 to drive the inlet passage 6-4 to move, when the moving shaft of the electric push rod C 6-2 is retracted to drive the inlet passage 6-4 to move inward, the top end of the inlet passage 6-4 opens the spring door A 3-6 of the inner barrel module 3, and then the inlet passage plug 6-5 is lifted upward, at this time the animals 5 and the intelligent robot dog 7 go into the inner barrel of the inner barrel module 3 through the inlet passage 6-4, when the moving shaft of the electric push rod C 6-2 is pushed out to drive the inlet passage 6-4 to move outward, the spring door A 3-6 of the inner barrel module 3 is automatically closed, and then the inlet passage plug 6-5 is pressed downward, the inlet passage 6-4 is closed.

[0094] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. An intelligent vibration maze experiment device that can replace the water maze experiment, including an outer barrel module, an intelligent detection module box, an inner barrel module, an outlet module, an inlet module and an intelligent robot dog, characterized in that: The inner barrel module is fixed to the upper fixing seat on the inner barrel fixing spring of the outer barrel by means of spring fixing seat fixing screws; The square hole on the upper part of the inner barrel module is sleeved on the high foam rubber sealing ring on the cantilever of the outer barrel; The intelligent detection module box is fixed to the cantilever on the upper part of the outer barrel by screws; The inlet module is inserted into the square hole in the middle of the outer barrel through the inlet of the inlet module, and the electric push rod C is fixed to the square hole in the middle of the outer barrel with the electric push rod C fixing screw; The outlet module is inserted into the square hole on the other side of the middle of the outer barrel through the outlet of the outlet module, and the electric push rod is fixed to the square hole on the other side of the middle of the outer barrel with the electric push rod fixing screw; The intelligent robot dog enters the inner barrel space of the inner barrel module through the entrance module and walks out of the maze experimental device through the exit module; The outer barrel module includes a rubber strip, an outer barrel, a cantilever, a cantilever fixing screw, a high-foam rubber sealing ring, a cantilever cover side fixing screw, a cantilever cover, a spring fixing seat fixing screw, an upper fixing seat, an inner barrel fixing spring, a lower fixing seat, a supporting channel steel, an embedded bolt, an emotion change detection touch screen, a safety platform, a high-foam rubber sleeve, an eccentric wheel, a roller, an electric push rod A, an electric push rod B, an electric push rod fixing screw, a motor reducer, a motor reducer fixing screw and a safety platform fixing screw; The rubber strip is inlaid on the upper edge of the outer barrel; The supporting channel steel is welded to the rib plate on the bottom plate of the outer barrel and fixed to the ground by embedded bolts; The lower fixing seat is fixed to the inner bottom plate of the outer barrel by the spring fixing seat fixing screws, the inner barrel fixing springs are respectively sleeved on the small circles of the lower fixing seat, and the small circles of the upper fixing seat are respectively inserted into the upper circles of the inner barrel fixing springs; The motor reducer is fixed to the inner bottom plate of the outer barrel by the motor reducer fixing screws, the electric push rod A with a roller is fixed to the left arm on the output shaft of the motor reducer by the electric push rod fixing screws, the electric push rod B with a roller is fixed to the right arm on the output shaft of the motor reducer by the electric push rod fixing screws, the eccentric wheel is connected to the upper end of the output shaft of the motor reducer by a key, the safety platform is fixed to the inner bottom plate of the outer barrel by the safety platform fixing screws, the emotion change detection touch screen is fixed to the plane of the safety platform by screws, the high foam rubber sleeve is installed on the edge of the plane where the emotion change detection touch screen and the safety platform are located, and when the animal is on the emotion change detection touch screen of the safety platform, the emotion change detection touch screen will output animal emotion change detection data; The cantilever is sequentially inserted into the square hole on one side of the upper end of the outer barrel, the square hole on the upper part of the inner barrel, the square hole opposite to the square hole on the upper part of the inner barrel, and the square hole on the other side of the upper end of the outer barrel, and is fixed to the barrel wall on the upper end of the outer barrel by the cantilever fixing screws. The small end face of the cantilever cover plate is inserted into the square hole on the other side of the upper end of the outer barrel, and then inserted into the square hole at the square hole end of the cantilever on the other side of the outer barrel, and is fixed to the barrel wall on the other side of the upper end of the outer barrel by the cantilever fixing screws. The high foam rubber sealing ring is connected to the periphery of the two ends of the cantilever by glue, and the square hole on the upper part of the inner barrel is covered on the high foam rubber sealing ring. The bottom plate of the inner barrel is fixed to the upper fixing seat by the spring fixing seat fixing screws, and the cantilever cover plate is fixed to the other end of the cantilever by the cantilever cover plate side fixing screws. The outer barrel module provides a natural disaster source for simulating earthquakes for the inner barrel module, and a variety of different earthquake sources are produced by adjusting the speed of the motor reducer and the lifting and lowering of the electric push rod A and the electric push rod B.

2. The intelligent vibration maze experimental device that can replace the water maze experiment according to claim 1 is characterized in that: The intelligent detection module box includes an instrument cabinet, an infrared camera, an air conditioning module, a humidity control module, a light box, a temperature control module, a noise control module and an infrared tracker; The infrared camera, air conditioning module, humidity control module, light box, temperature control module, noise control module and infrared tracker are respectively installed in the instrument cabinet and fixed to the panel of the instrument cabinet with screws. The instrument cabinet is fixed to the cantilever of the outer barrel module with bolts. The probes of the infrared camera, air conditioning module, humidity control module, temperature control module, noise control module and infrared tracker pass through the bottom of the instrument cabinet and are placed in the activity space.

3. The intelligent vibration maze experiment device that can replace the water maze experiment according to claim 1 is characterized in that: The inner barrel module includes inner barrel cover fixing screws, inner barrel cover, inner barrel, smart screen display fixing screws, smart screen display, spring door A, smart robot dog automatic charging pile, smart touch screen fixing screws, smart touch screen, smart touch screen table fixing screws, smart touch screen table, spring door B, swing hollow shaft guide rail upper fixing screws, swing hollow shaft guide rail, guide rail fixing screws, inner barrel tilting guide rail, inner barrel shaking guide rail, stabilizing pin fixing screws, inner barrel stabilizing pin and stabilizing spring; The inner barrel cover is fixed to the upper flange of the inner barrel by inner barrel cover fixing screws; The smart screen display is fixed to the inner barrel wall of the inner barrel by means of smart screen display fixing screws; The spring door armor is fixed to the edge of the barrel wall with a square hole in the middle and lower part by screws, and an intelligent robot dog automatic charging pile is installed not far from the spring door armor; The smart touch screen table is fixed to the middle and lower flange of the barrel wall by the smart touch screen table fixing screws; The smart touch screen is fixed to the smart touch screen table by smart touch screen fixing screws; The spring door B is fixed to the side of the barrel wall with a square hole in the lower middle part by screws; The upper side of the swing hollow shaft guide rail is fixed to the intelligent touch screen table by the upper fixing screws of the swing hollow shaft guide rail, and the lower side of the swing hollow shaft guide rail is fixed by the guide rail; The screws are fixed to the center step of the bottom plate of the inner barrel; The inner barrel inclined guide rail is fixed to the bottom plate of the inner barrel by guide rail fixing screws; The inner barrel shaking guide rail is fixed to the bottom plate of the inner barrel by guide rail fixing screws; The inner barrel stabilizing pin passes through the upper step hole of the inner barrel, and the stabilizing spring is sleeved on the inner barrel stabilizing pin and fixed to the inner wall of the upper step of the inner barrel by a stabilizing pin fixing screw.

4. The intelligent vibration maze experiment device that can replace the water maze experiment according to claim 1 is characterized in that: The outlet module includes an electric push rod fixing screw, an electric push rod, an electric push rod moving shaft fixing screw, an outlet channel and an outlet channel plug door; The electric push rod D is fixed to the upper side of the square hole in the middle and lower part of the outer barrel wall of the outer barrel by the electric push rod D fixing screws, the moving axis of the electric push rod D is fixed to the outlet channel by the electric push rod D moving axis fixing screws, and the outlet channel plug door is inserted into the gap near the outer end of the outlet channel.

5. The intelligent vibration maze experiment device that can replace the water maze experiment according to claim 1 is characterized in that: The inlet module includes an electric push rod C fixing screw, an electric push rod C, an electric push rod C moving shaft fixing screw, an inlet channel and an inlet channel plug door; The electric push rod C is fixed to the upper side of the square hole in the lower middle part of the other end of the outer barrel wall of the outer barrel by the electric push rod C fixing screw, the moving axis of the electric push rod C is fixed to the inlet channel by the electric push rod C moving axis fixing screw, and the inlet channel plug door is inserted in the gap near the outer end of the inlet channel.

Citation Information

Patent Citations

  • Multifunctional experimental apparatus for researching evolution of escaping behavior of mice population

    CN109548690A

  • Intelligent blowing type maze device capable of replacing water maze experiment

    CN115399256A