Moxibustion device for mouse

By designing a moxibustion device for mice, the problems of complex operation and distance control in existing technologies have been solved, achieving mouse posture fixation and precise control of moxibustion sticks, thus improving treatment efficiency.

CN223555193UActive Publication Date: 2025-11-18EYE HOSPITAL CHINA ACAD OF CHINESE MEDICAL SCI
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Patent Information

Application Number
CN202422541077.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-11-18
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

In existing technologies, the operation is complex and it is difficult to precisely control the distance between the moxibustion stick and the mouse's body surface, making it impossible to treat multiple mice simultaneously.

Method used

A moxibustion device for mice was designed, including a restraint cover and a capture clamp. The restraint cover is connected by a hinge, the capture clamp holds the mouse, a push plate and a screw in the placement slot drive the movement of the moxibustion stick, and a bracket provides stability, thereby achieving the fixation of the mouse and precise control of the moxibustion stick.

Benefits of technology

The procedure simplifies the mouse posture fixation process, allows for precise control of the distance between the moxibustion stick and the mouse's body surface, improves treatment efficiency, and is suitable for simultaneous treatment of multiple mice.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a moxibustion device for a mouse, which belongs to the field of medical instruments and comprises a restraining cover, the restraining cover comprises a first cover body and a second cover body which are hinged with each other, a restraining cavity is formed in the restraining cover when the first cover body and the second cover body are folded, and two exposure holes are symmetrically formed in the restraining cover; the capturing clamp comprises two clamping arms hinged to each other and an elastic part, the elastic part is connected with the two clamping arms, the elastic part drives the clamping arms to clamp each other, a connecting line is arranged on the capturing clamp, and the connecting line is connected with the restraining cover; the number of the placement grooves is two, the two placement grooves are symmetrically connected to the two sides of the second cover body, each placement groove is provided with a release end, the release ends face the exposure hole, and the release ends are provided with a plurality of through holes in a penetrating mode in the axial direction of the placement grooves; a push plate is connected into the containing groove in a sleeved mode and can do reciprocating motion in the axial direction of the containing groove. By means of the arrangement, constant-temperature moxibustion can be conducted on the belly and back sides of a mouse under the condition that breathing of the mouse is not affected.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of medical apparatus and instruments, and particularly relates to a moxa cautery device for mice. BACKGROUND

[0002] In the research of tinnitus treatment methods, the noise-induced tinnitus mice are treated and tested through acupoint moxa cautery diagnosis and treatment methods, and the results of behavior detection such as gap pre-inhibition sound startle reflex and gap pre-pulse inhibition hearing startle of the noise-induced tinnitus mice after moxa cautery treatment all show that the tinnitus symptoms are alleviated, and the number of zonal synapses in each part of the cochlea of the tinnitus mice is restored.

[0003] When treating tinnitus mice, the back and abdomen of the mice need to be moxa cautery treated respectively, and the posture of the mice is fixed through winding and other methods during operation, which is relatively complex, and the distance between the burning end of the moxa cautery stick and the surface of the mouse needs to be controlled by hand during operation, so the distance between the moxa cautery stick and the surface of the mouse cannot be accurately controlled, and multiple mice cannot be treated at the same time due to the uncontrollable slight shaking of the hand and the upper limit of the number of moxa cautery sticks held by hand.

[0004] Therefore, a device capable of simultaneously or separately moxa cautery treating the back and abdomen of mice is designed, and the device is specifically a moxa cautery device for mice. CONTENT OF THE UTILITY MODEL

[0005] In order to overcome the problems in the background art, the utility model adopts the following technical solutions:

[0006] A moxa cautery device for mice, comprising: a restraint cover, the restraint cover specifically comprising a cover body one and a cover body two hingedly connected to each other, the inside of the restraint cover having a restraint cavity when the cover body one and the cover body two are folded, and at least four exposed holes are arranged on the restraint cover, two of which are used for mouse breathing, and the other two are used for releasing the release end of the placement groove; a capture clamp, comprising two hingedly connected clamp arms and an elastic part, the elastic part being connected to the two clamp arms respectively, the elastic part driving the clamp arms to clamp each other, a connecting line being arranged on the capture clamp and connected to the restraint cover; a placement groove, the number of which is two, the two placement grooves being symmetrically connected to the two sides of the cover body two, the placement groove having a release end, the release end facing the restraint cover, and a plurality of through holes being arranged in the release end along the axial direction of the placement groove; a push plate being sleeved in the placement groove, the push plate being capable of reciprocating along the axial direction of the placement groove. The push plate can move to a starting position and a final position in the placement groove, and the final position is located between the starting position and the release end.

[0007] Further, the outer wall of the cover body one is provided with a sliding groove along the central axis of the constraint cavity, the sliding groove is communicated with the constraint cavity; each of the clamping arms comprises a holding segment and an arc segment, the two holding segments can be opened and closed by rotation when the clamping arms are hinged, the two holding segments can pass through the sliding groove along the radial direction of the constraint cavity when the two holding segments are rotated to the parallel state, and the arc segment is left in the constraint cavity; the cover body one is provided with a hinge one, the cover body two is provided with a hinge two, and the hinge one and the hinge two form a hinge group.

[0008] Further, the constraint cover is provided with a circular arc groove, the circular arc groove is communicated with the sliding groove when the cover body one and the cover body two are closed, the clamping arm can move along the central axis of the constraint cavity and escape from the constraint cavity through the circular arc groove when the sliding groove is communicated with the circular arc groove, so that the captured clamps can be directly taken out from the constraint cavity when the constraint cavity is closed, and the mouse can be prevented from escaping from the constraint cavity when the captured clamps are removed.

[0009] Further, the push plate is provided with a threaded hole penetrating through, the placing groove is provided with a screw rod, the central axis of the screw rod is parallel to and does not intersect with the central axis of the placing groove, the screw rod is matched with the threaded hole, and the push plate is connected with the screw rod in a sleeved manner through the threaded hole, the screw rod drives the push plate to reciprocate along the axial direction of the screw rod when the screw rod rotates around its central axis, so that the one-way rotation of the screw rod is converted into the one-way linear motion of the push plate, and then the incense stick can be pushed in one direction.

[0010] Further, the placing groove further has a driving end opposite to the releasing end along the central axis of the placing groove, the driving end is provided with a driving wheel and a driven wheel, the driving wheel is engaged with the driven wheel, the driven wheel is connected with the screw rod, and the driven wheel is coaxial with the screw rod; the driving wheel is connected with a motor, the motor drives the driving wheel to rotate and drives the screw rod to rotate, and the push plate is pushed.

[0011] Further, the driving end is further provided with a protective shell, and the driving wheel and the driven wheel are accommodated in the protective shell.

[0012] Further, a support is further included, the support comprises a supporting part and supporting legs, and the supporting part is connected with the cover body two; the end faces of each of the supporting legs away from the supporting part are coplanar, the end faces of the supporting legs away from the supporting part are parallel to the central axis of the constraint cavity when the supporting part is connected with the cover body two, so that the mouse is always in the state of being placed in the constraint cavity, and the stability of the support is improved.

[0013] Further, the supporting legs comprise front supporting legs and rear supporting legs, the number of the front supporting legs is at least two, and the number of the rear supporting legs is at least two; the front supporting legs are provided with pin shafts, the rear supporting legs are provided with pin holes, the central axis of the pin shafts is parallel to the central axis of the pin holes, and the pin shafts are matched with the pin holes.

[0014] Further, two adjacent supports can be connected with each other through the supporting legs, and the front support of one support is connected with the rear support of the other support through a pin shaft and a pin hole.

[0015] Further, a discharge port is arranged on the upper side of the placing groove in a radial direction, and the number of the discharge ports on each placing groove is at least one.

[0016] The utility model discloses beneficial effect:

[0017] 1. through setting up the cover body one and cover body two of hinge connection, the constraint cover of being able to open and close is formed, can restrain mouse activity range, still have the capture clamp through the connecting wire and be connected on the constraint cover, and the capture clamp can hold mouse and fix the attitude of mouse, the slide groove that allows the holding segment of capture clamp to pass through is arranged on the constraint cover, makes the constraint cover still can normally close after the capture clamp of captureing mouse clamps mouse and enters the constraint cavity, and the elastic part between the two clamp arms of capture clamp, this makes the arc segment of capture clamp have the tendency of clamping when not receiving external force, thereby can more firmly fix the state of pitch of mouse. Still be provided with several exposure holes on the constraint cover, can supply the docking of placing groove and constraint cover while satisfying the breathing of mouse, and the structure of constraint cover and capture clamp is relatively simple and can be in the multi-attitude restriction of cooperation and be received in the constraint cavity in mouse, can effectively simplify the fixed operation of mouse attitude, has excellent practical effect.

[0018] 2. through setting up the placing groove that can be inserted on the constraint cover, can provide the channel for moxa stick to slowly move to the constraint cavity, by setting up the push plate that can move along the axial motion of placing groove and the release end that separates the constraint cavity and placing groove in placing groove, can prevent the burning end of moxa stick from entering the constraint cavity through the release end while constantly pushing the burning end of moxa stick to the constraint cavity, thereby accurately control the distance of moxa stick and mouse. At the same time, without the need for user hand-held operation, can improve the work efficiency of user. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will be to the drawing needed to be used in the embodiment description simple introduction, obviously, the following description in the drawing is only some embodiments of the utility model, for the ordinary skilled person in the art comes, under the premise of not paying the creative labor intensity, still can obtain other drawings according to these drawings. Wherein:

[0020] Figure 1 It is an overall structure schematic view of the constraint cover, the capture clamp and the two placing grooves after assembly.

[0021] Figure 2An overall structure schematic diagram of the constraint cover, the capture clamp and the two placing grooves after being assembled;

[0022] Figure 3 An overall structure schematic diagram of the constraint cover and the capture clamp after being assembled;

[0023] Figure 4 An overall structure schematic diagram of the constraint cover and the capture clamp after being assembled;

[0024] Figure 5 An overall structure schematic diagram of the capture clamp;

[0025] Figure 6 An overall structure schematic diagram of the placing groove;

[0026] Figure 7 An overall structure schematic diagram of the placing groove;

[0027] Figure 8 An overall structure schematic diagram of the placing groove;

[0028] Figure 9 An overall structure schematic diagram of the utility model;

[0029] Figure 10 An overall structure schematic diagram of the bracket;

[0030] In the figure, 1, constraint cover; 11, cover body one; 111, exposure hole; 112, sliding groove; 12, cover body two; 13, constraint cavity; 14, hinge group; 141, hinge one; 142, hinge two; 15, circular arc groove; 2, capture clamp; 21, clamp arm; 211, holding section; 212, arc section; 22, elastic part; 23, connecting line; 3, placing groove; 31, release end; 311, through hole; 32, push plate; 321, screw hole; 33, screw rod; 34, driving end; 341, protective shell; 342, driving wheel; 343, driven wheel; 344, motor; 35, discharge port; 4, bracket; 41, support part; 42, support leg; 421, front support; 4211, pin shaft; 422, rear support; 4221, pin hole. DETAILED DESCRIPTION

[0031] The technical solutions of this utility model are clearly and completely described below through specific embodiments. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model can also be implemented or applied through other different specific embodiments. In the absence of conflict, the following embodiments and features in the embodiments can be combined with each other. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0032] A moxibustion device for rats, such as Figures 1-10 As shown, it includes: a restraint cover 1, specifically comprising a cover body 11 and a cover body 12 hinged together, the interior of the restraint cover 1 having a restraint cavity 13 when the cover body 11 and the cover body 12 are closed, and the restraint cover 1 having at least four exposure holes 111, two of which are for mouse breathing and the other two are for docking with the release end 31 of the placement slot 3; and a capture clamp 2, comprising two clamping arms 21 hinged together and an elastic part 22, the elastic part 22 being connected to the two clamping arms respectively. The clamping arms 21 are connected by a 21-section elastic part 22, which drives the clamping arms 21 to clamp each other. A connecting line 23 is provided on the capture clamp 2, and the connecting line 23 is connected to the constraint cover 1. There are two placement slots 3, which are symmetrically connected on both sides of the cover 12. Each placement slot 3 has a release end 31 facing the exposure hole 111. Multiple through holes 311 are provided through the release end 31 along the axial direction of the placement slot 3. A push plate 32 is sleeved inside the placement slot 3. The push plate 32 can reciprocate along the axial direction of the placement slot 3. The push plate 32 can move to a starting position and a final position in the placement slot 3. The final position is located between the starting position and the release end 31. In use, the push plate 32 is first placed in the starting position, and the ignited mugwort mixture is placed in the placement slot 3. The ignited mugwort mixture moves towards the release end 31 under the push of the push plate 32. When the release end 31 comes into contact with the mugwort, it intercepts the ash after combustion. The ash passes through the outlet 35 and leaves the placement slot 3 under the action of gravity, thus ensuring that the burning part of the mugwort mixture can always maintain a relatively constant distance from the mouse's ear. By setting the release end 31 with a through hole 311, it is possible to ensure that the combustion heat is evenly transferred to the mouse's ear while preventing the mouse from being burned. The restraint cover 1 is provided with a magnetic suction or elastic buckle at the end opposite to the hinge group 14, which can keep the restraint cover 1 in a closed state when the cover body 11 and the cover body 2 12 are closed, preventing the restraint cover 1 from being opened when the mouse moves.

[0033] In some embodiments of this application, such as Figures 1-10As shown, the outer wall of the cover body 11 is provided with a sliding groove 112 along the central axis of the constraint cavity 13, and the sliding groove 112 is in communication with the constraint cavity 13; each clamping arm 21 comprises a holding segment 211 and an arc-shaped segment 212, and the two holding segments 211 can be opened and closed by rotating, and when the two holding segments 211 are in a parallel state, they can pass through the sliding groove 112 along the radial direction of the constraint cavity 13 and make the arc-shaped segment 212 stay in the constraint cavity 13; the cover body 11 is provided with a hinge 1 141, and the cover body 2 12 is provided with a hinge 2 142, and the hinge 1 141 and the hinge 2 142 form a hinge set 14.

[0034] In some embodiments of the present application, as shown in Figures 1-10 As shown, the constraint cover 1 is provided with a circular arc groove 15, and the circular arc groove 15 is in communication with the sliding groove 112 when the cover body 1 11 and the cover body 2 12 are closed. When the sliding groove 112 is in communication with the circular arc groove 15, the clamping arm 21 can move along the central axis of the constraint cavity 13 and escape from the constraint cavity 13 through the circular arc groove 15, so that the captured clamp 2 can be directly taken out of the constraint cavity 13 when the constraint cavity 13 is closed, thereby preventing the mouse from escaping from the constraint cavity 13 when the captured clamp 2 is removed.

[0035] In some embodiments of the present application, as shown in Figures 1-10 As shown, the push plate 32 is provided with a threaded hole 321 penetrating through the push plate 32, and the placing groove 3 is provided with a screw rod 33, the central axis of the screw rod 33 is parallel to and does not intersect with the central axis of the placing groove 3, the screw rod 33 is matched with the threaded hole 321, and the push plate 32 is connected with the screw rod 33 through the threaded hole 321. When the screw rod 33 rotates around its central axis, it drives the push plate 32 to reciprocate along the axial direction of the screw rod 33, so that the one-way rotation of the screw rod 33 is converted into the one-way linear motion of the push plate 32, and then the incense stick can be pushed in one direction.

[0036] In some embodiments of the present application, as shown in Figures 1-10 As shown, the placing groove 3 further comprises a driving end 34, the driving end 34 is opposite to the releasing end 31 along the central axis of the placing groove 3, the driving end 34 is provided with a driving wheel 342 and a driven wheel 343, the driving wheel 342 is engaged with the driven wheel 343, the driven wheel 343 is connected with the screw rod 33, and the driven wheel 343 is coaxial with the screw rod 33; the driving wheel 342 is connected with a motor 344, the motor 344 drives the driving wheel 342 to rotate and drives the screw rod 33 to rotate, thereby indirectly driving the push plate 32. The driving end 34 is further provided with a protective shell 341, and the driving wheel 342 and the driven wheel 343 are accommodated in the protective shell 341.

[0037] In other embodiments of this application, unlike the aforementioned drive of the push plate 32 using threaded and gear transmission, the drive of the push plate 32 is achieved in another way: a spring or other elastic element capable of expanding outward along the constraint cavity 13 is provided between the push plate 32 and the end of the constraint cavity 13 opposite to the release end 31, so that the moxa stick is always pushed towards the release end 31 when it is placed between the push plate 32 and the release end 31. When the moxa stick is not lit, it can remain stationary in the placement groove 3. After the moxa stick is lit, the ash portion of the burning end detaches from the moxa stick under the dual compression of the push plate 32 and the release end 31 and exits the placement groove 3 through the discharge port 35.

[0038] In some embodiments of this application, such as Figures 1-10 As shown, it also includes a support 4, which includes a support part 41 and legs 42. The support part 41 is connected to the cover 12. The end face of each leg 42 facing away from the support part 41 is coplanar. When the support part 41 is connected to the cover 12, the end face of the leg 42 facing away from the support part 41 is parallel to the central axis of the constraint cavity 13, thereby ensuring that the mouse is always in the state when it is placed in the constraint cavity 13 and improving the stability of the support.

[0039] In some embodiments of this application, such as Figures 1-10 As shown, the support legs 42 include front supports 421 and rear supports 422. There are at least two front supports 421 and at least two rear supports 422. A pin 4211 is provided on the front support 421, and a pin hole 4221 is provided on the rear support 422. The central axis of the pin 4211 is parallel to the central axis of the pin hole 4221, and the pin 4211 and pin hole 4221 are fitted together. Two adjacent supports 4 can be connected to each other via the support legs 42. When connected, the front support 421 of one support 4 and the rear support 422 of the other support 4 are connected via the pin 4211 and pin hole 4221. A discharge port 35 is provided radially on the placement groove 3, and each placement groove 3 has at least one discharge port 35.

Claims

1. A moxa device for mice, characterized by, The application relates to a constraint cover, a capture clamp and a placing groove. The constraint cover comprises a cover body I and a cover body II which are hingedly connected with each other, and the inside of the constraint cover has a constraint cavity when the cover body I and the cover body II are closed; the cover body I is provided with at least two exposed holes. The capture clamp comprises two hingedly connected clamp arms and elastic parts which are connected with the two clamp arms respectively, and the elastic parts drive the clamp arms to clamp each other; the capture clamp is provided with a connecting line which is connected with the constraint cover. The placing groove is provided with a releasing end which faces the constraint cover, and the releasing end is provided with a plurality of through holes along the axial direction of the placing groove; a push plate is sleeved in the placing groove, and the push plate can reciprocate along the axial direction of the placing groove.

2. The moxa device for mice according to claim 1, wherein The outer wall of the cover body I is provided with a sliding groove along the central axis of the constraint cavity, and the sliding groove is communicated with the constraint cavity; each clamp arm comprises a holding section and an arc section, and the two holding sections can be opened and closed by rotating when the clamp arms are hingedly connected; when the two holding sections are rotated to a parallel state, the two holding sections can pass through the sliding groove along the radial direction of the constraint cavity and make the arc sections stay in the constraint cavity.

3. A moxa device for mice according to claim 2, wherein The constraint cover is provided with a circular arc groove, the circular arc groove is communicated with the sliding groove when the cover body I and the cover body II are closed, and the clamp arms can move along the central axis of the constraint cavity and pass through the circular arc groove to leave the constraint cavity when the sliding groove is communicated with the circular arc groove.

4. The moxa device for mice according to claim 1, wherein The push plate is provided with a threaded hole, the placing groove is provided with a screw rod, the central axis of the screw rod is parallel to the central axis of the placing groove and does not intersect with the central axis of the placing groove, the screw rod is matched with the threaded hole, the push plate is connected with the screw rod through the threaded hole, and the screw rod drives the push plate to reciprocate along the axial direction of the screw rod when the screw rod rotates around the central axis of the screw rod.

5. A moxa device for mice according to claim 4, wherein The placing groove is further provided with a driving end which is opposite to the releasing end along the central axis of the placing groove, the driving end is provided with a driving wheel and a driven wheel, the driving wheel is engaged with the driven wheel, the driven wheel is connected with the screw rod, and the driven wheel is coaxial with the screw rod.

6. A moxa device for mice according to claim 5, wherein The driving end is further provided with a protective shell, and the driving wheel and the driven wheel are contained in the protective shell.

7. The mouse moxibustion device according to claim 1, wherein The application further relates to a support which comprises a supporting part and supporting legs, and the supporting part is connected with the cover body II; the end faces of the supporting legs which are away from the supporting part are coplanar, and the end faces of the supporting legs which are away from the supporting part are parallel to the central axis of the constraint cavity when the supporting part is connected with the cover body II.

8. A moxa device for mice according to claim 7, wherein The supporting legs comprise front supporting legs and rear supporting legs, the number of the front supporting legs is at least two, and the number of the rear supporting legs is at least two; the front supporting legs are provided with pin shafts, the rear supporting legs are provided with pin holes, and the central axes of the pin shafts are parallel to the central axes of the pin holes and the pin shafts are matched with the pin holes.

9. A moxa device for mice according to claim 8, wherein Two adjacent supports can be connected with each other through the supporting legs, and the front supporting legs of one support are connected with the rear supporting legs of another support through the pin shafts and the pin holes when the two supports are connected.

10. The moxa device for mice according to claim 1, wherein The placing groove is provided with a discharge port along the radial direction, and the number of the discharge ports on each placing groove is at least one.