Experimental platform based on laboratory mouse height fear principle
Through an experimental platform based on the experimental rat's terror of heights, transparent platform and visual extension mirrors are used to increase the sense of heights. Combined with adjustable spatial separation and moxibustion device, the problems of death risk and low data reliability of anesthesia mice are solved, and the convenience and data stability of live experiments are achieved.
Patent Information
- Application Number
- CN202510815295.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-18
- Publication Date
- 2025-08-12
AI Technical Summary
In the prior art, when anesthetizing experimental mice, there is a risk of death in the experimental mice, and the physical feedback ability is weakened, resulting in low reliability of experimental data and inconvenient operation.
An experimental platform based on the experimental rat's terrorism principle is designed, including a transparent platform, a visual extension mirror and an adjustable spatial partition. The experimental mice are kept still by using the terrorism reaction, and the experimental process is optimized through an adjustable moxibustion device and temperature monitoring system.
It improves the convenience and data reliability of live experiments, reduces the struggle range and operation complexity of experimental mice, and adapts to experimental mice of different body sizes and heights to achieve flexible experimental control.
Smart Images

Figure CN120458768A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of laboratory mouse experiments, in particular to an experimental platform based on the principle of laboratory mouse fear of heights. Background Art
[0002] Scientific research, especially medical research, often requires live experiments, and in these cases, live laboratory mice are used.
[0003] To prevent lab mice from moving around during experiments, they are typically anesthetized to keep them in a quiet state. However, different doses of anesthetic are required for anesthesia, depending on their size and fitness. This procedure can easily lead to the death of the mice. Furthermore, anesthetized lab mice's ability to respond is weakened, resulting in slower feedback and reduced reliability of experimental data. Therefore, controlling lab mice through anesthesia and other methods is relatively troublesome.
[0004] Therefore, this application proposes an experimental platform based on the principle of laboratory mice's fear of heights, which is used to improve the convenience of conducting live experiments on laboratory mice. Summary of the Invention
[0005] In view of the above-mentioned shortcomings of the prior art, the purpose of the present invention is to provide an experimental platform based on the principle of fear of heights of experimental mice, so as to solve the problem of inconvenience in experimental mice mentioned in the prior art.
[0006] To achieve the above-mentioned and other related purposes, the present invention provides an experimental platform based on the principle of fear of heights of experimental mice, comprising a support platform, on which a support mechanism for experimental mice is provided, and the height of the support mechanism for experimental mice is adjustable;
[0007] A visual extension reflector is provided between the support platform and the experimental mouse support mechanism, and the visual extension reflector is used to reflect light to increase the visual depth of the experimental mouse located on the experimental mouse support mechanism;
[0008] The experimental mouse supporting mechanism comprises a transparent platform, and a space separator with an adjustable installation position is arranged inside the transparent platform.
[0009] Preferably, the four corners of the top of the support platform are each provided with a first telescopic rod, and the upper ends of all the first telescopic rods are respectively connected to the four corners of the bottom of the transparent platform;
[0010] The vision extension reflector is horizontally placed between the four first telescopic rods with the mirror surface facing upward.
[0011] Preferably, a moxibustion device is provided on the upper side of the transparent platform, and the moxibustion device can be used to fix the external moxa stick so that the moxa stick is located inside the transparent platform.
[0012] Preferably, the moxibustion device includes a second telescopic rod, which is fixed to the outer surface of the transparent platform. A horizontal support member is provided at the upper end of the second telescopic rod. Several moxa stick clamps are equidistantly provided on the horizontal support member along the axial direction of the horizontal support member, and the moxa stick clamps are used to clamp external moxa sticks.
[0013] Preferably, the horizontal support member comprises a horizontal bracket, a plurality of fixture installation slots are equidistantly formed on the top of the horizontal bracket, and a locking column is provided at the inner bottom of each fixture installation slot;
[0014] The moxa stick clamp includes an extension rod, the width of the extension rod is adapted to the width of the clamp mounting slot, the extension rod is provided with a plurality of connecting locking holes vertically penetrating the extension rod, the extension rod can be placed in the clamp mounting slot, and the locking column penetrates the connecting locking holes to fix the extension rod;
[0015] An elastic clamp is provided at the end of the extension rod. The elastic clamp has an opening and is elastic and is used for clamping an external moxa stick.
[0016] Preferably, the experimental platform based on the principle of fear of heights of experimental mice also includes one or more of the following technical features:
[0017] a) a temperature sensor is provided inside the transparent platform;
[0018] b) a thermal imaging device is provided at the opening of the transparent platform;
[0019] c) A human-computer interaction device is provided on the support platform, and the first telescopic rod, the second telescopic rod, and the temperature sensor are all connected to the human-computer interaction device.
[0020] Preferably, a mounting clamp is provided on the back of the thermal imaging device, and the mounting clamp is clamped on the mouth of the transparent platform.
[0021] Preferably, a detachable partition cover is provided on the top of the transparent platform, and a plurality of moxibustion holes are opened on the partition cover, and the positions of the moxibustion holes are adapted to the positions of the fixture installation slots;
[0022] An ash basket is provided inside each of the moxibustion holes.
[0023] Preferably, the moxa ash basket includes a support plate, the diameter of the support plate is larger than the inner diameter of the moxibustion hole, the axis of the support plate is provided with a moxa stick passage hole for the external moxa stick to pass through, and the bottom of the support plate is provided with a plurality of damping telescopic rods, and the bottoms of all the damping telescopic rods are commonly connected to an ash collecting hopper;
[0024] The damping telescopic rod and the ash collecting hopper both pass through the moxibustion hole to the interior of the transparent platform.
[0025] Preferably, the experimental platform based on the principle of fear of heights of experimental mice also includes one or more of the following technical features:
[0026] a) A plurality of suspension chutes are equidistantly provided at the bottom of the partition cover plate, and the space divider comprises a space divider plate, a restraining groove is provided at the bottom of the space divider plate, and a connecting slide is provided at the top of the space divider plate, and the connecting slide can be plugged into the interior of the suspension chutes;
[0027] b) The bottom of the transparent platform is provided with a plurality of ventilation holes, and the space divider includes a space divider plate, the bottom of which is provided with a constraint groove, and elastic clips are provided on both sides of the constraint groove at the bottom of the space divider plate. The elastic clips are elastic and can be inserted into the internal ventilation holes to fix the space divider plate.
[0028] As described above, the experimental platform based on the principle of fear of heights of experimental mice of the present invention has the following beneficial effects:
[0029] 1. The present invention supports the experimental mice by providing a transparent platform, so that the experimental mice develop a fear of heights when they are in the air. At the same time, a visual extension reflector is provided at the bottom of the transparent platform. The visual extension reflector reflects light, thereby increasing the sense of spatial depth at the same height, making the visual height higher, and enhancing the experimental mice's fear of heights. Under the psychological effect of fear of heights, the experimental mice will remain motionless, thereby achieving the effect of improving the convenience of live experiments.
[0030] 2. This invention incorporates space dividers within the transparent platform. Changing the space divider's installation position modifies the space within the platform, thereby accommodating lab mice of varying sizes. Furthermore, restraint slots are provided at the bottom of the space divider to secure the lab mouse's head and / or tail, minimizing its struggles during stimulating experiments such as acupuncture.
[0031] 3. The present invention supports the transparent platform by arranging a first telescopic rod on the support platform, so that when conducting experimental research, the height of the transparent platform can be adjusted to adapt to operators of different heights, achieving an effect of easy use.
[0032] 4. The present invention arranges a second telescopic rod on the outside of the transparent platform to pull the horizontal support member for lifting and lowering movement, and at the same time arranges a moxa stick clamp with an adjustable installation position on the horizontal support member. When conducting moxibustion experiments on experimental mice, the distance between the moxa stick and the experimental mouse can be adjusted according to the burning time of the moxa stick, and the installation position of the moxa stick can be adjusted according to the body size of the experimental mouse and the position of moxibustion of the experimental mouse. There is no need to move the experimental mouse to avoid scaring the experimental mouse, which further improves the convenience of the experiment.
[0033] 5. The present invention arranges a temperature sensor inside the transparent platform and a thermal imaging device at the mouth of the transparent platform. The temperature inside the transparent platform and the temperature of the experimental mouse's body surface can be monitored by the temperature sensor, thereby controlling the second telescopic rod to move up and down accordingly to change the distance between the moxa stick and the experimental mouse's body surface. The thermal imaging device can be used to detect the skin sensitization data of the experimental mouse's acupuncture points through thermal imaging.
[0034] 6. The present invention connects the support plate and the ash hopper by setting a damping telescopic rod, so that the distance between the ash hopper and the experimental mouse can be adjusted. When conducting moxibustion experiments, the height of the ash hopper can be adjusted according to the body shape of the experimental mouse and the position of moxibustion, thereby improving the flexibility of the moxibustion experiment.
[0035] Therefore, the present invention effectively overcomes various shortcomings in the prior art and has high industrial utilization value. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] Figure 1 Shown is a schematic structural diagram of the present invention.
[0037] Figure 2 Shown is a side view of the structure of the present invention.
[0038] Figure 3 Shown is a front view of the structure of the present invention.
[0039] Figure 4 Shown is a top view of the structure of the present invention.
[0040] Figure 5 It is a schematic diagram of the structural assembly of the present invention.
[0041] Figure 6 Shown is a schematic structural diagram of the transparent platform of the present invention.
[0042] Figure 7 Shown is a schematic structural diagram of the elastic buckle of the present invention.
[0043] Figure 8 Shown is a structural schematic diagram of the connecting slide bar of the present invention.
[0044] Figure 9 Shown as the present invention Figure 6A magnified schematic diagram of the structure at point A.
[0045] Figure 10 Shown is a schematic structural diagram of the mugwort ash basket of the present invention.
[0046] Component number description:
[0047] 1. Support platform;
[0048] 2. First telescopic rod;
[0049] 3. Laboratory mouse support mechanism; 31. Transparent platform; 32. Space divider; 321. Space divider plate; 322. Constraint slot; 323a. Elastic buckle; 323b. Connecting slide; 33. Temperature sensor; 34. Partition cover; 341. Suspension slide; 35. Moxibustion hole; 36. Moxa ash basket; 361. Support plate; 362. Moxa stick passage hole; 363. Damping telescopic rod; 364. Ash hopper; 37. Ventilation hole;
[0050] 4. Visual extension reflector;
[0051] 5. Moxibustion device; 51. Second telescopic rod; 52. Horizontal support member; 521. Horizontal bracket; 522. Clamp mounting slot; 523. Locking column; 53. Moxa stick clamp; 531. Extension rod; 532. Connecting locking hole; 533. Elastic chuck;
[0052] 6. Human-computer interaction device;
[0053] 7. Thermal imaging device; 71. Install the splint. DETAILED DESCRIPTION
[0054] The following describes the implementation of the present invention through specific embodiments. People skilled in the art can easily understand other advantages and effects of the present invention from the contents disclosed in this specification.
[0055] See also Figures 1 to 10 . It should be noted that the structures, proportions, sizes, etc. illustrated in the drawings of this specification are only used to match the contents disclosed in the specification for people familiar with this technology to understand and read, and are not used to limit the limiting conditions for the implementation of the present invention. Therefore, they have no substantive technical significance. Any modification of the structure, change in the proportional relationship or adjustment of the size should still fall within the scope of the technical content disclosed by the present invention without affecting the efficacy and purpose that can be achieved by the present invention. At the same time, the terms such as "upper", "lower", "left", "right", "middle" and "one" quoted in this specification are only for the convenience of description, and are not used to limit the scope of the implementation of the present invention. Changes or adjustments in their relative relationships should also be regarded as the scope of the implementation of the present invention without substantially changing the technical content.
[0056] like Figure 1-Figure 5 As shown, the present invention provides an experimental platform based on the principle of experimental mouse fear of heights, including a support platform 1, on which is disposed an experimental mouse support mechanism 3. The experimental mouse support mechanism 3 is made of a highly transparent material, allowing unobstructed vision through the experimental mouse support mechanism 3. The experimental mouse support mechanism 3 is height-adjustable to accommodate users of different heights and the different actual heights of rats and mice.
[0057] A vision-extending reflector 4 is positioned between the support platform 1 and the laboratory mouse support mechanism 3. Its inner wall is a highly reflective mirror. This mirror enhances the sense of depth by reflecting light between the mirrors. This serves to increase the visual depth of the laboratory mouse positioned on the laboratory mouse support mechanism 3, thereby further enhancing the laboratory mouse's fear of heights.
[0058] The experimental mouse support mechanism 3 includes an open transparent platform 31 with a support. A space divider 32 with an adjustable installation position is provided inside the transparent platform 31. By adjusting the installation position of the space divider 32, the space inside the transparent platform 31 can be changed to accommodate experimental mice of different sizes. This makes the experimental mice feel spatial oppression during the process of fear of heights, further reducing their desire to move. The specific principle is: the narrow environment triggers the excessive activation of the animal's hypothalamic-pituitary-adrenal axis (HPA axis), and stress hormones such as cortisol continue to rise, directly inhibiting the excitability of motor nerves. In response to the continuous pressure of spatial oppression, animals will actively reduce their metabolic rate and reduce their activity to conserve energy and maintain survival "self-suppression" behavior.
[0059] like Figure 1-Figure 3 As shown, in some embodiments, a first telescopic rod 2 is provided at each of the four corners of the top of the support platform 1 of the present invention. The first telescopic rod 2 can be selected according to the needs of the preparer, and can be a structure with a telescopic function such as an electric push rod, a hydraulic push rod or a pneumatic push rod. The upper ends of all the first telescopic rods 2 are respectively connected to the four corners of the bottom of the transparent platform 31, so that the height of the transparent platform 31 can be changed by driving the first telescopic rod 2. And the first telescopic rod 2 can also be expanded to automatic control by connecting to an external control device, thereby improving the convenience of use. The visual extension reflector 4 is horizontally placed between the four first telescopic rods 2 with the mirror facing upward, and the height of the visual extension reflector 4 does not exceed the height of the first section of the cylinder of the first telescopic rod 2 to avoid obstructing the descent of the transparent platform 31.
[0060] like Figures 1-4 As shown, in order to cooperate with moxibustion experiments, in some embodiments of the present invention, a moxibustion device 5 is provided above the transparent platform 31. The moxibustion device 5 can be used to fix an external moxa stick so that the moxa stick is located inside the transparent platform 31 to perform moxibustion on the experimental mouse, thereby obtaining moxibustion status information of the experimental mouse.
[0061] like Figure 2 As shown, in some embodiments, the moxibustion device 5 of the present invention includes a second telescopic rod 51. This second telescopic rod 51 is similar to the first telescopic rod 2, and its specific model and type can be configured as needed. The second telescopic rod 51 is fixed to the outer surface of the transparent platform 31, allowing it to rise and fall in response to the rise and fall of the transparent platform 31. A horizontal support member 52 is provided at the upper end of the second telescopic rod 51, and the height of the horizontal support member 52 can be adjusted according to the extension and retraction of the second telescopic rod 51. Several moxa stick clamps 53 are equidistantly arranged along the axial direction of the horizontal support member 52 to hold an external moxa stick. During moxibustion, the moxa stick can be clamped in different positions on the moxa stick clamps 53 to accommodate experimental mice of different sizes, and the position of the moxa stick can also be adjusted according to the different moxibustion locations. Furthermore, the second telescopic rod 51 adjusts the height of the horizontal support member 52 according to the size of the experimental mouse, ensuring an appropriate distance between the lower end of the moxa stick and the mouse. When the second telescopic rod 51 is connected to the controller, during the moxibustion process, the horizontal support member 52 can be controlled to slowly fall according to the burning speed of the moxa stick, so that a suitable distance is maintained between the burning end of the moxa stick and the experimental mouse.
[0062] like Figure 5 、 Figure 6 and Figure 9 As shown, in some embodiments, the horizontal support member 52 of the present invention includes a horizontal bracket 521. The horizontal bracket 521 is elongated and its length is equal to the length of the transparent platform 31. The top of the horizontal bracket 521 is provided with a plurality of fixture mounting slots 522 at equal intervals. The inner bottom of each fixture mounting slot 522 is provided with a locking post 523. The locking post 523 is mainly a metal rod, and the upper end of the metal rod is provided with a ball with a diameter larger than the diameter of the metal rod.
[0063] The moxa stick clamp 53 includes an extension rod 531, which is also in the shape of an elongated strip. The width of the extension rod 531 is adapted to the width of the clamp mounting slot 522. The extension rod 531 is provided with a plurality of connecting and locking holes 532 that vertically penetrate the extension rod 531. When fixed, the extension rod 531 can be placed in the clamp mounting slot 522, and the locking column 523 penetrates the connecting and locking holes 532 to fix the extension rod 531. When in use, the clamp mounting slot 522 can be selected according to the size of the experimental mouse to install the extension rod 531, and the connecting and locking hole 532 that is plugged into the locking column 523 can be selected according to the position of moxibustion and the size of the experimental mouse. The end of the extension rod 531 is provided with an elastic clamp 533, which has an opening and elasticity for clamping the external moxa stick, so that the moxa stick can be easily fixed.
[0064] like Figure 1 As shown, in some embodiments, the present invention further includes one or more of the following technical features:
[0065] a) A temperature sensor 33 is provided inside the transparent platform 31 . The temperature sensor 33 is used to detect the temperature inside the transparent platform 31 and to generate an alarm by setting a high temperature threshold.
[0066] b) A thermal imaging device 7 is installed at the opening of the transparent platform 31. This device is a medical infrared thermal imaging device that captures subtle temperature differences of 0.05°C on the body surface, enabling objective visual detection of acupoint pain and heat sensitivity. When acupoints become heat-sensitive, abnormalities in local blood circulation and metabolism can cause temperature changes. The infrared thermal imager uses a high-sensitivity detector (with a thermal sensitivity of 0.01–0.05°C) to receive infrared signals (mainly with a wavelength of 8–14 μm) radiated from the body surface, generating a pseudo-color thermal image. For example, heat-sensitive acupoints often exhibit abnormally high temperatures. For example, when moxibustion is applied to the Fengmen acupoint, the sensation of heat and swelling is transmitted to the shoulder. Chronic pain in pain-sensitive areas or areas of nerve compression often manifest as cold ischemia (cold-toned patches), while acute inflammation manifests as hot congestion.
[0067] c) A human-machine interaction device 6 is provided on the support platform 1. The human-machine interaction device 6 is equipped with buttons for parameter setting and a display screen for information display. The first telescopic rod 2, the second telescopic rod 51, and the temperature sensor 33 are all connected to the human-machine interaction device 6. The human-machine interaction device 6 can control the raising and lowering of the first telescopic rod 2 and the second telescopic rod 51 and set the temperature threshold monitored by the temperature sensor 33. When the temperature monitored by the temperature sensor 33 exceeds the threshold, the temperature sensor 33 will send a warning message to the human-machine interaction device 6 and control the raising of the second telescopic rod 51 through the human-machine interaction device 6, so that the burning moxa stick rises or leaves the interior of the transparent platform 31. The human-machine interaction device 6 includes a control module or controller such as an ARM Advanced RICS controller, an FPGA Field Programmable Gate Array controller, a SoC System on Chip controller, a DSP Digital Signal Processing controller, or an MCU Microcontroller Unit controller. It also includes a memory, a storage controller, and one or more processing units (CPUs) for storing logic programs.
[0068] like Figure 5 As shown, in some embodiments, the back of the thermal imaging device 7 of the present invention is provided with a resilient mounting plate 71, which is clamped to the opening of the transparent platform 31. This allows the thermal imaging device 7 to be disassembled and installed as needed, allowing it to be installed in different locations according to monitoring requirements. Disassembling the thermal imaging device 7 can also prevent interference with the placement of experimental mice.
[0069] like Figure 1 and Figure 5 As shown, in some embodiments, a detachable partition cover 34 is provided on the top of the transparent platform 31 of the present invention, and the partition cover 34 is installed as needed. After removing the partition cover 34, the experimental mice can be conveniently placed and operated. After installing the partition cover 34, the sense of oppression of the experimental mice can be further increased. A number of straight-slot-shaped moxibustion holes 35 are provided on the partition cover 34. The positions of the moxibustion holes 35 are adapted to the positions of the clamp mounting slots 522, so that the clamped moxa sticks can pass through the moxibustion holes 35 into the interior of the transparent platform 31. An ash basket 36 is provided inside each moxibustion hole 35 for collecting the ash produced by the burning of the moxa stick to prevent the ash from falling and scalding the experimental mice.
[0070] like Figure 10 As shown, in some embodiments, the moxa ash basket 36 of the present invention includes a support plate 361. The diameter of the support plate 361 is larger than the inner diameter of the moxa hole 35, allowing it to be placed on top of the partition cover 34 without falling into the moxa hole 35. A moxa stick passage hole 362 is defined at the axis of the support plate 361 for external moxa sticks to pass through. The bottom of the support plate 361 is provided with multiple damping telescopic rods 363. The bottoms of all the damping telescopic rods 363 are connected to an ash hopper 364. The ash hopper 364 has fine ventilation holes at its bottom and / or periphery, allowing smoke to pass through and act on the experimental mice, while the moxa ash is collected in the ash hopper 364. Both the damping telescopic rods 363 and the ash hopper 364 extend through the moxa hole 35 to the interior of the transparent platform 31. By retracting and retracting the damping telescopic rods 363, the height of the ash hopper 364 can be adjusted, thereby maintaining an appropriate distance between the bottom of the ash hopper 364 and the experimental mice.
[0071] like Figure 5 、 Figure 7 and Figure 8 As shown, in some embodiments, the present invention further includes one or more of the following technical features:
[0072] a) Several suspension chutes 341 are equidistantly arranged at the bottom of the partition cover 34. The space divider 32 includes a space divider 321 for dividing the space in the transparent platform 31 to accommodate the body shape of the experimental mouse. A restraint groove 322 is provided at the bottom of the space divider 321. When the experimental mouse needs to be restrained, the restraint groove 322 can be used to restrain the experimental mouse. A connecting slide 323b is provided at the top of the space divider 321. The connecting slide 323b can be plugged into the interior of the suspension chute 341 to fix the position of the space divider 321. The interior of the transparent platform 31 can be divided into spaces of different sizes by inserting the suspension chutes 341 into different positions according to different needs.
[0073] b) The bottom of the transparent platform 31 is provided with a plurality of ventilation holes 37. The space divider 32 includes a space divider plate 321, the bottom of which is provided with a restraining groove 322. Both sides of the restraining groove 322 at the bottom of the space divider plate 321 are provided with elastic clips 323a. The elastic clips 323a are elastic and can be inserted into the interior of the ventilation holes 37 to fix the space divider 321. When the partition cover 34 is not installed, the ventilation holes 37 and the elastic clips 323a can cooperate to separate the space in the transparent platform 31. At the same time, the ventilation holes 37 can also improve the air permeability of the transparent platform 31 and restrain the legs of the experimental mice.
[0074] In summary, the experimental platform of the present invention, which is based on the principle of fear of heights in experimental mice, supports the experimental mice by providing a transparent platform 31, so that the experimental mice develop a fear of heights when they are in the air. At the same time, a visual extension reflector 4 is provided at the bottom of the transparent platform 31. The visual extension reflector 4 reflects light, thereby increasing the sense of spatial depth at the same height, making the visual height higher, and enhancing the fear of heights reaction of the experimental mice. Under the psychological effect of fear of heights, the experimental mice will remain motionless, thereby achieving the effect of improving the convenience of living experiments.
[0075] The present invention incorporates space dividers 32 within the transparent platform 31. Changing the installation position of the space dividers 32 modifies the space within the transparent platform 31, thereby accommodating lab rats of varying sizes. Furthermore, a restraining groove 322 is provided at the bottom of the space divider 321 to secure the head and / or tail of the lab rat, thereby minimizing its struggle during stimulating experiments such as acupuncture.
[0076] The present invention supports the transparent platform 31 by arranging the first telescopic rod 2 on the support platform 1, so that when conducting experimental research, the height of the transparent platform 31 can be adjusted to adapt to operators of different heights, achieving the effect of easy use.
[0077] The present invention arranges a second telescopic rod 51 on the outside of the transparent platform 31 to pull the horizontal support member 52 for lifting movement, and at the same time arranges a moxa stick clamp 53 with an adjustable installation position on the horizontal support member 52. When conducting moxibustion experiments on experimental mice, the distance between the moxa stick and the experimental mouse can be adjusted according to the burning time of the moxa stick, and the installation position of the moxa stick can be adjusted according to the body size of the experimental mouse and the position of moxibustion of the experimental mouse. There is no need to move the experimental mouse to avoid scaring the experimental mouse, which further improves the convenience of the experiment.
[0078] The present invention sets a temperature sensor 33 inside the transparent platform 31 and a thermal imaging device 7 at the mouth of the transparent platform 31. The temperature sensor 33 can monitor the temperature inside the transparent platform 31 and the temperature of the experimental mouse's body surface, thereby controlling the second telescopic rod 51 to perform corresponding lifting and lowering to change the distance between the moxa stick and the experimental mouse's body surface. The set thermal imaging device 7 can be used to detect the skin sensitization data of the experimental mouse's acupuncture points, such as pain sensitivity and heat sensitivity, through thermal imaging.
[0079] The present invention connects the support plate 361 and the ash hopper 364 by providing a damping telescopic rod 363, so that the distance between the ash hopper 364 and the experimental mouse can be adjusted. When conducting a moxibustion experiment, the height of the ash hopper 364 can be adjusted according to the body shape of the experimental mouse and the position of moxibustion, thereby improving the flexibility of the moxibustion experiment.
[0080] Therefore, the present invention effectively overcomes various shortcomings in the prior art and has high industrial utilization value.
[0081] The above embodiments are merely illustrative of the principles and effects of the present invention and are not intended to limit the present invention. Anyone skilled in the art may modify or alter the above embodiments without departing from the spirit and scope of the present invention. Therefore, all equivalent modifications or alterations made by one of ordinary skill in the art without departing from the spirit and technical principles disclosed herein are intended to be covered by the claims of the present invention.
Claims
1. An experimental platform based on the principle of fear of heights of experimental mice, characterized by: The invention comprises a support platform (1), wherein an experimental mouse support mechanism (3) is provided on the support platform (1), and the experimental mouse support mechanism (3) is height-adjustable; A visual extension reflector (4) is provided between the support platform (1) and the experimental mouse support mechanism (3), and the visual extension reflector (4) is used to reflect light to increase the visual depth of the experimental mouse located on the experimental mouse support mechanism (3); The experimental mouse support mechanism (3) comprises a transparent platform (31), and a space separator (32) with an adjustable installation position is provided inside the transparent platform (31).
2. The experimental platform based on the principle of fear of heights of experimental mice according to claim 1, characterized in that: The four corners of the top of the support platform (1) are each provided with a first telescopic rod (2), and the upper ends of all the first telescopic rods (2) are respectively connected to the four corners of the bottom of the transparent platform (31); The visual extension reflector (4) is horizontally placed between the four first telescopic rods (2) with the mirror surface facing upwards.
3. The experimental platform based on the principle of fear of heights of experimental mice according to claim 2, characterized in that: A moxibustion device (5) is provided above the transparent platform (31), and the moxibustion device (5) is used to fix an external moxa stick so that the moxa stick is located inside the transparent platform (31).
4. The experimental platform based on the principle of fear of heights of experimental mice according to claim 3, characterized in that: The moxibustion device (5) includes a second telescopic rod (51), which is fixed to the outer surface of the transparent platform (31). A horizontal support member (52) is provided at the upper end of the second telescopic rod (51). A plurality of moxa stick clamps (53) are equidistantly provided on the horizontal support member (52) along the axial direction of the horizontal support member (52). The moxa stick clamps (53) are used to clamp external moxa sticks.
5. The experimental platform based on the principle of fear of heights of experimental mice according to claim 4, characterized in that: The horizontal support member (52) includes a horizontal bracket (521), a plurality of fixture installation slots (522) are equidistantly provided on the top of the horizontal bracket (521), and a locking column (523) is provided at the inner bottom of each fixture installation slot (522); The moxa stick clamp (53) includes an extension rod (531), the width of the extension rod (531) is adapted to the width of the clamp installation slot (522), the extension rod (531) is provided with a plurality of connecting locking holes (532) vertically penetrating the extension rod (531), the extension rod (531) can be placed in the clamp installation slot (522), and the locking column (523) penetrates the connecting locking holes (532) to fix the extension rod (531); An elastic clamp (533) is provided at the end of the extension rod (531), and the elastic clamp (533) has an opening and elasticity for clamping an external moxa stick.
6. The experimental platform based on the principle of fear of heights of experimental mice according to claim 5, characterized in that: It also includes one or more of the following technical features: a) a temperature sensor (33) is provided inside the transparent platform (31); b) a thermal imaging device (7) is provided at the opening of the transparent platform (31); c) A human-machine interaction device (6) is provided on the support platform (1), and the first telescopic rod (2), the second telescopic rod (51), and the temperature sensor (33) are all connected to the human-machine interaction device (6).
7. The experimental platform based on the fear of heights of experimental mice according to claim 6, characterized in that: A mounting clamp (71) is provided on the back of the thermal imaging device (7), and the mounting clamp (71) is clamped on the mouth of the transparent platform (31).
8. The experimental platform based on the principle of fear of heights of experimental mice according to claim 7, characterized in that: A detachable partition cover (34) is provided on the top of the transparent platform (31), and a plurality of moxibustion holes (35) are provided on the partition cover (34), and the positions of the moxibustion holes (35) are adapted to the positions of the fixture mounting slots (522); An ash basket (36) is provided inside each of the moxibustion holes (35).
9. The experimental platform based on the principle of fear of heights of experimental mice according to claim 8, characterized in that: The moxa ash basket (36) includes a support plate (361), the diameter of the support plate (361) is larger than the inner diameter of the moxa hole (35), the axis of the support plate (361) is provided with a moxa stick passage hole (362) for external moxa sticks to pass through, and the bottom of the support plate (361) is provided with a plurality of damping telescopic rods (363), and the bottoms of all the damping telescopic rods (363) are commonly connected to an ash collecting hopper (364); The damping telescopic rod (363) and the ash collecting hopper (364) both pass through the moxibustion hole (35) to the interior of the transparent platform (31).
10. The experimental platform based on the principle of fear of heights of experimental mice according to claim 8 or 9, characterized in that: It also includes one or more of the following technical features: a) a plurality of suspension chutes (341) are equidistantly arranged at the bottom of the partition cover (34); the space divider (32) comprises a space divider plate (321); a constraint groove (322) is provided at the bottom of the space divider plate (321); a connecting slide bar (323b) is provided at the top of the space divider plate (321); the connecting slide bar (323b) can be plugged into the interior of the suspension chutes (341); b) The bottom of the transparent platform (31) is provided with a plurality of ventilation holes (37); the space separator (32) comprises a space separator plate (321); a constraint groove (322) is provided at the bottom of the space separator plate (321); elastic buckles (323a) are provided on both sides of the constraint groove (322) at the bottom of the space separator plate (321); the elastic buckles (323a) are elastic and can be plugged into the interior of the ventilation holes (37) to fix the space separator plate (321).