Mouse atomization device

By designing an isolation tube structure inside the main body of the container, the mouse nebulizer can accommodate multiple mice at the same time and isolate them individually, solving the problem of uneven drug dosage caused by mice gathering during nebulization, and ensuring the accuracy and safety of the experiment.

CN223900873UActive Publication Date: 2026-02-13XIAN MEDICAL UNIV
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Patent Information

Application Number
CN202520185797.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-06
Publication Date
2026-02-13
Estimated Expiration
2035-02-06

AI Technical Summary

Technical Problem

When mice are nebulized, they clump together due to external stimuli, resulting in insufficient drug intake in the central mice, leading to intragroup differences and even suffocation, which affects the accuracy of the experiment.

Method used

Design a mouse nebulization device comprising a container body and a nebulizer. The container body contains multiple isolation tubes, allowing multiple mice to be experimented on simultaneously while each mouse is isolated. The detachable connection between the isolation tubes and the end caps and the transparent material design ensure that each mouse can fully inhale the spray.

Benefits of technology

Ensure that each mouse inhales the spray independently during the nebulization process to avoid aggregation, improve the accuracy and safety of the experiment, and prevent the risk of suffocation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a mouse atomization device which comprises a container main body and an atomizer, and the atomizer is used for conveying spray into the container main body. The container body comprises a barrel, a plurality of isolation barrels are arranged in the barrel and arranged around the axis of the barrel in an annular array mode, one end of the barrel is in threaded connection with an end cover, the isolation barrels are detachably connected with the end cover, the other end of the barrel is in a funnel shape, and the funnel-shaped end of the barrel is connected with the output end of the atomizer. According to the mouse atomization device provided by the utility model, through the structural design of the container main body, a plurality of mice can be simultaneously experimented by the device, and each mouse can be independently isolated, so that the phenomenon that the mice are gathered into a pile after being stimulated by the outside during atomization is avoided; therefore, each mouse can fully inhale the spray to ensure the accuracy of the experiment.
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Description

TECHNICAL FIELD

[0001] The utility model relates to mouse experimental instrument technical field, especially, a mouse atomization device is provided. BACKGROUND

[0002] Atomization to mice is an important means of constructing experimental animal models or drug treatment of experimental animals. Usually, experimental animals are placed in a certain size of glass or plastic container for atomization inhalation.

[0003] However, due to the characteristics of mice gathering into a pile after being stimulated by the outside world during atomization, the insufficient drug intake of mice in the center will lead to intra-group differences, and in severe cases, it will lead to suffocation and death due to insufficient inhalation of air. Therefore, the present application provides a mouse atomization device to solve the technical problems mentioned above and provides a new technical solution. UTILITY MODEL CONTENT

[0004] Therefore, it is necessary to provide a mouse atomization device to solve the above technical problems. Through the structural design of the container body, the device can simultaneously perform experiments on multiple mice, and each mouse can be individually isolated to avoid the characteristics of mice gathering into a pile after being stimulated by the outside world during atomization, thereby ensuring that each mouse can fully inhale the spray and ensuring the accuracy of the experiment.

[0005] In order to solve the above technical problems, the utility model adopts the following technical solutions:

[0006] A mouse atomization device is applied to mouse atomization experiments.

[0007] The mouse atomization device specifically comprises: a container body and an atomizer, wherein the atomizer is used to deliver spray into the container body.

[0008] The container body comprises a cylinder, a plurality of isolation cylinders are arranged inside the cylinder, the plurality of isolation cylinders are arranged in a ring array around the cylinder axis, one end of the cylinder is threadedly connected with an end cover, the isolation cylinder is detachably connected with the end cover, the other end of the cylinder is funnel-shaped, and the end of the cylinder provided with the funnel shape is connected with the output end of the atomizer.

[0009] As a preferred embodiment of the mouse atomization device provided by the utility model, the end cover is fixedly connected with a connecting seat on the side close to the cylinder, the number of connecting seats is the same as the number of isolation cylinders, and the isolation cylinder is threadedly connected with the connecting seat.

[0010] As a preferred embodiment of the mouse atomization device provided by the utility model, a plurality of air exchange grooves are formed in the end of the isolation cylinder away from the end cover, and a protective pad is inserted into the inside of the end of the isolation cylinder close to the end cover.

[0011] As a preferred embodiment of the mouse atomization device provided by the utility model, the inside of the barrel is fixedly connected with a stabilizing frame, the isolation barrel is connected with the stabilizing frame in a plug-in mode, and the stabilizing frame is located at a position close to the air exchange channel after being plugged with the isolation barrel.

[0012] As a preferred embodiment of the mouse atomization device provided by the utility model, the barrel is funnel-shaped, and an air exhaust channel is formed in one end of the barrel.

[0013] As a preferred embodiment of the mouse atomization device provided by the utility model, the barrel and the isolation barrel are both made of transparent material.

[0014] Compared with the prior art, the utility model has the following beneficial effects:

[0015] The mouse atomization device provided by the utility model has the advantages that the structure of the container body is designed so that the device can simultaneously perform experiments on multiple mice, and each mouse can be individually isolated, so that the mice are prevented from gathering into a pile due to external stimulation during atomization, and thus the accuracy of the experiment is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0016] In order to more clearly illustrate the scheme in the utility model, the drawings needed in the following embodiment description will be briefly introduced, and obviously, the drawings in the following description are some embodiments of the utility model, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the drawings.

[0017] Figure 1 The overall structure of the mouse atomization device provided by the utility model is shown in the figure.

[0018] Figure 2 The structure of the container body of the mouse atomization device provided by the utility model is shown in the figure.

[0019] Figure 3 The structure of the mouse atomization device end cover, isolation barrel and stabilizing frame provided by the utility model is shown in the figure.

[0020] The figure mark is explained as follows:

[0021] 1, container body; 2, atomizer; 3, barrel; 4, end cover; 5, isolation barrel; 6, connecting seat; 7, stabilizing frame; 8, air exhaust channel; 9, air exchange channel; 10, protective pad. DETAILED DESCRIPTION

[0022] In order for the person skilled in the art to better understand the technical scheme of the present application, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by the person skilled in the art without creative labor shall belong to the scope of protection of the present application.

[0023] As in the background art, due to the characteristic of mice gathering into a pile after being stimulated by the outside world when being atomized, the insufficient inhalation of the drug by the mouse in the center will cause intra-group differences, and in severe cases, asphyxiation death caused by insufficient inhalation of air.

[0024] In order to solve this technical problem, the present application provides a mouse atomization device which is applied to mouse atomization experiments.

[0025] Specifically, please refer to Figure 1 - Figure 3 The mouse atomization device specifically comprises: a container body 1 and an atomizer 2, and the atomizer 2 is used for delivering spray into the container body 1.

[0026] The container body 1 comprises a cylinder body 3, a plurality of isolation cylinders 5 are arranged inside the cylinder body 3, the plurality of isolation cylinders 5 are arranged in an annular array around the axis of the cylinder body 3, one end of the cylinder body 3 is threadedly connected with an end cover 4, the isolation cylinder 5 is detachably connected with the end cover 4, and the other end of the cylinder body 3 is arranged in a funnel shape, and the end of the cylinder body 3 arranged in the funnel shape is connected with the output end of the atomizer 2.

[0027] The mouse atomization device provided by the present application can simultaneously perform experiments on multiple mice through the structural design of the container body 1, and can individually isolate each mouse, thereby avoiding the characteristic of mice gathering into a pile after being stimulated by the outside world when being atomized, and ensuring that each mouse can fully inhale the spray to ensure the accuracy of the experiment.

[0028] In order for the person skilled in the art to better understand the technical scheme of the present application, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application.

[0029] Embodiment 1:

[0030] Please refer to Figure 1 - Figure 3 A mouse atomization device comprises: a container body 1 and an atomizer 2, and the atomizer 2 is used for delivering spray into the container body 1.

[0031] Specifically, the container body 1 comprises a barrel 3, the inside of the barrel 3 is provided with a plurality of isolation barrels 5, the plurality of isolation barrels 5 are arranged in an annular array around the axis of the barrel 3, one end of the barrel 3 is threadedly connected with an end cover 4, the isolation barrel 5 is detachably connected with the end cover 4, wherein, in order to facilitate the isolation barrel 5 to be conveniently and independently connected or detached with the end cover 4, the side close to the barrel 3 of the end cover 4 is fixedly connected with a connecting seat 6, the number of the connecting seat 6 is the same as that of the isolation barrel 5, the isolation barrel 5 is threadedly connected with the connecting seat 6, the other end of the barrel 3 is provided in a funnel shape, the end of the barrel 3 provided in the funnel shape is connected with the output end of the atomizer 2; wherein, in order to facilitate the discharge of excess spray, the end of the barrel 3 provided in the funnel shape is provided with an exhaust channel 8.

[0032] Further, the end of the isolation barrel 5 away from the end cover 4 is provided with a plurality of air exchange channels 9, the inside of the end of the isolation barrel 5 close to the end cover 4 is inserted with a protective pad 10, the spray entering the end cover 4 can enter the inside of the isolation barrel 5 through the air exchange channel 9, thereby facilitating the mouse to inhale, the mouse can be limited and protected by the protective pad 10.

[0033] Further, the inside of the barrel 3 is fixedly connected with a stabilizing frame 7, the isolation barrel 5 is insertedly connected with the stabilizing frame 7, the stabilizing frame 7 is located at the position close to the air exchange channel 9 after the isolation barrel 5 is insertedly connected with the stabilizing frame 7, the stabilizing frame 7 can support the isolation barrel 5, thereby reducing the shaking phenomenon of the isolation barrel 5 caused by the mouse activity, and the stabilizing frame 7 can realize the separation of the inside of the barrel 3, thereby reducing the area of the back part of the barrel 3 into which the spray enters, and improving the efficiency of the spray entering the inside of the isolation barrel 5.

[0034] It can be known that before the experiment, the mouse can be independently placed into one isolation barrel 5, after the mouse is placed, the protective pad 10 is placed into the inside of the isolation barrel 5 to limit and block the mouse, then the isolation barrel 5 containing the mouse is connected with the end cover 4 through the connecting seat 6, in the connecting process, the tail of the mouse can be prevented from being injured by the protective pad 10; the above steps can be repeated to independently limit a plurality of mice, thereby the end cover 4 containing the isolation barrel 5 is installed with the barrel 3, the atomizer 2 is connected with the barrel 3, thereby starting the atomizer 2 to deliver the spray into the barrel 3 to start the mouse experiment.

[0035] Example 2:

[0036] The mouse atomization device provided in Example 1 is further optimized, specifically, the barrel 3 and the isolation barrel 5 are both transparent materials.

[0037] Through the above structure design, the mouse condition can be more directly viewed during the experiment.

Claims

1. A mouse nebulization device, characterized by, The utility model relates to a container body (1) and atomizer (2) for delivering spray to container body (1) inside, the container body (1) includes cylinder (3), the inside of cylinder (3) is provided with a plurality of isolated cylinder (5), a plurality of isolated cylinder (5) annular array is arranged around cylinder (3) axis, one end of cylinder (3) is threadedly connected with end cover (4), isolated cylinder (5) is detachably connected with end cover (4), the other end of cylinder (3) is arranged as funnel shape, the one end of cylinder (3) arranged as funnel shape is connected with the output end of atomizer (2). The utility model discloses a container body (1) and atomizer (2) for delivering spray to container body (1) inside, the container body (1) includes cylinder (3), the inside of cylinder (3) is provided with a plurality of isolated cylinder (5), a plurality of isolated cylinder (5) annular array is arranged around cylinder (3) axis, one end of cylinder (3) is threadedly connected with end cover (4), isolated cylinder (5) is detachably connected with end cover (4), the other end of cylinder (3) is arranged as funnel shape, the one end of cylinder (3) arranged as funnel shape is connected with the output end of atomizer (2). The utility model discloses a container body (1) and atomizer (2) for delivering spray to container body (1) inside, the container body (1) includes cylinder (3), the inside of cylinder (3) is provided with a plurality of isolated cylinder (5), a plurality of isolated cylinder (5) annular array is arranged around cylinder (3) axis, one end of cylinder (3) is threadedly connected with end cover (4), isolated cylinder (5) is detachably connected with end cover (4), the other end of cylinder (3) is arranged as funnel shape, the one end of cylinder (3) arranged as funnel shape is connected with the output end of atomizer (2).

2. The mouse nebulizer device of claim 1, wherein, The utility model discloses a container body (1) and atomizer (2) for delivering spray to container body (1) inside, the container body (1) includes cylinder (3), the inside of cylinder (3) is provided with a plurality of isolated cylinder (5), a plurality of isolated cylinder (5) annular array is arranged around cylinder (3) axis, one end of cylinder (3) is threadedly connected with end cover (4), isolated cylinder (5) is detachably connected with end cover (4), the other end of cylinder (3) is arranged as funnel shape, the one end of cylinder (3) arranged as funnel shape is connected with the output end of atomizer (2).

3. The mouse nebulizer device of claim 1, wherein, The utility model discloses a container body (1) and atomizer (2) for delivering spray to container body (1) inside, the container body (1) includes cylinder (3), the inside of cylinder (3) is provided with a plurality of isolated cylinder (5), a plurality of isolated cylinder (5) annular array is arranged around cylinder (3) axis, one end of cylinder (3) is threadedly connected with end cover (4), isolated cylinder (5) is detachably connected with end cover (4), the other end of cylinder (3) is arranged as funnel shape, the one end of cylinder (3) arranged as funnel shape is connected with the output end of atomizer (2).

4. The mouse aerosolization device of claim 3, wherein, The utility model discloses a container body (1) and atomizer (2) for delivering spray to container body (1) inside, the container body (1) includes cylinder (3), the inside of cylinder (3) is provided with a plurality of isolated cylinder (5), a plurality of isolated cylinder (5) annular array is arranged around cylinder (3) axis, one end of cylinder (3) is threadedly connected with end cover (4), isolated cylinder (5) is detachably connected with end cover (4), the other end of cylinder (3) is arranged as funnel shape, the one end of cylinder (3) arranged as 5. The mouse nebulizer device of claim 1, wherein, ​ 6. The mouse nebulizer device of claim 1, wherein, ​