Experimental animal anatomy radiation shielding device
By designing an adjustable shielding cover and operating port for experimental animal dissection radiation shielding, the problem of fixed space in traditional devices has been solved, providing flexible operation and observation space and ensuring the safety of operators.
Patent Information
- Application Number
- CN202520275272.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-02-20
AI Technical Summary
Traditional shielding and protection devices are spatially fixed during dissection, making operation and observation inflexible and inconvenient.
A radiation shielding device for laboratory animal dissection was designed, comprising a support frame, operating table, shielding cover, suction cups, and a permeable plate. The adjustable shielding cover and operating hole provide a flexible operating and observation space, and the suction cups and magnetic strips ensure the stability and convenience of the device.
It provides a flexible operating and observation space, improves the convenience and safety of dissection procedures, and protects the safety of operators.
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Figure CN223757274U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of animal experiment, more specifically, it is an experimental animal dissection radiation shielding device. BACKGROUND
[0002] In the research of radiation biological effect, radio pharmaceutical toxicity, radionuclide internal irradiation and drug metabolism, the experimental animal becomes a radiation source after being given radioactive substances. During the dissection process, the experimental personnel may be affected by radiation. Therefore, appropriate radiation shielding measures must be taken to protect the safety of the experimental personnel.
[0003] In the prior art, a shielding protection device is used to complete the dissection operation during the dissection of the experimental animal, thereby achieving the effect of protecting the personal safety of the operator. However, the space in the traditional shielding protection device is fixed, and the operation and observation space cannot be flexibly changed, which has limitations and brings inconvenience to the actual operation. UTILITY MODEL CONTENT
[0004] The utility model provides an experimental animal dissection radiation shielding device, which has the beneficial effect of facilitating the observation of the operator and bringing convenience to the subsequent dissection operation.
[0005] An experimental animal dissection radiation shielding device comprises a support frame, an operation table connected to the support frame, an operation plate detachably connected to the operation table through bolts, a shielding cover slidingly connected to the operation table, two transparent plates provided on the shielding cover, and two operation holes provided on the shielding cover.
[0006] The experimental animal dissection radiation shielding device further comprises two suction cups slidingly connected to the shielding cover.
[0007] A compression spring is fixedly connected between each suction cup and the shielding cover.
[0008] Two handles are fixedly connected to the shielding cover.
[0009] A connecting thread hole is formed in the shielding cover.
[0010] A magnet strip is fixedly connected to the operation plate, a rectangular groove is arranged on the lower side of the operation table, and the magnet strip can be attracted to the rectangular groove. DRAWINGS
[0011] The utility model will be further described in detail in combination with the drawings and specific implementation methods.
[0012] Figure 1 And Figure 2 It is a structural schematic view of an experimental animal dissection radiation shielding device.
[0013] Figure 3 It is a structural schematic view of an operation table.
[0014] Figure 4 A structural schematic view of the operation plate;
[0015] Figure 5 A structural schematic view of the shielding cover;
[0016] Figure 6 A structural schematic view of the suction cup. DETAILED DESCRIPTION
[0017] As shown in Figures 1-6 :
[0018] The support frame 102 is connected with the operation table 101, the operation table 101 is detachably connected with the operation plate 201 through bolts, the shielding cover 301 is slidingly connected on the operation table 101, the shielding cover 301 is provided with two transparent plates 302, the shielding cover 301 is provided with two operation holes 303, each operation hole 303 is sleeved with a radiation-proof glove, the radiation-proof glove is made of lead rubber material, which can prevent radiation during the dissection operation.
[0019] The animal to be dissected is fixed on the operation plate 201, and the dissection tools needed in the subsequent operation process are placed on the operation plate 201, then the operation plate 201 is connected to the operation table 101 by screwing the bolts into the operation plate 201, during the dissection operation, the operator puts his hands through the two operation holes 303 and wears the two gloves, then uses the tools placed on the operation plate 201 to dissect the fixed animal, in this process, the shielding cover 301 can shield the radiation generated during the dissection of the experimental animal, thereby protecting the operator and the surrounding environment, and the two transparent plates 302 can facilitate the operator to observe, which brings convenience for the subsequent dissection operation.
[0020] During the dissection operation, the operator can slide the shielding cover 301 on the operation table 101 according to the observation or operation requirements, thereby adjusting the position of the shielding cover 301 on the operation table 101, so that the positions of the two operation holes 303 and the two transparent plates 302 can be adjusted, thereby providing more flexible operation and observation space for the subsequent dissection operation, which brings convenience for the dissection operation.
[0021] As shown in Figure 5 :
[0022] The two suction cups 306 are slidingly connected on the shielding cover 301.
[0023] In actual use, the operator can press the two suction cups 306 against the operating table 101 after sliding the two shielding covers 301, thereby fixing the shielding cover 301 after sliding, so that the shielding cover 301 can be stably positioned at the appropriate position according to the actual needs of the operator, thereby providing stable protection for subsequent dissection operations.
[0024] As shown in Figure 5 :
[0025] Each of the suction cups 306 is fixedly connected with the shielding cover 301.
[0026] The two compression springs 305 are arranged to provide elastic force to ensure that the two suction cups 306 are in a suspended state in the normal state without pressing the two suction cups 306, thereby facilitating subsequent sliding shielding cover 301 operations.
[0027] As shown in Figure 5 :
[0028] The shielding cover 301 is fixedly connected with two handles 304.
[0029] The two handles 304 are arranged to enable the operator to hold the two handles 304 to pull or push the shielding cover 301 when the shielding cover 301 needs to be slid, thereby facilitating the movement of the shielding cover 301.
[0030] As shown in Figure 5 :
[0031] The shielding cover 301 is provided with a connecting threaded hole 307.
[0032] In actual use, if the position of the shielding cover 301 does not need to be changed for a long time, the shielding cover 301 can be fixed in the position by screwing a bolt into the connecting threaded hole 307, thereby further ensuring the stability of the shielding cover 301.
[0033] As shown in Figures 3-4 :
[0034] The operating plate 201 is fixedly connected with a magnet strip 202, and the lower side of the operating table 101 is provided with a rectangular groove, and the magnet strip 202 can be attracted to the rectangular groove.
[0035] When installing the operating plate 201, the magnet strip 202 can be inserted into the rectangular groove on the lower side of the operating table 101, and the magnet strip 202 can be attracted to the rectangular groove at this time, and then a bolt is screwed into the operating plate 201 to fix the operating plate 201, thereby facilitating subsequent dissection operations.
[0036] As shown in Figure 3 :
[0037] The operation table 101 is slidingly connected to the support frame 102.
[0038] When installing or dismounting the operation board 201 or performing actual dissection operation, the operator can adjust the vertical height of the operation table 101 by sliding the operation table 101 on the support frame 102, thereby providing convenience for installation, dismounting or actual dissection operation.
[0039] As shown in Figure 3
[0040] The sliding connection part of the operation table 101 and the support frame 102 is provided with a rubber strip.
[0041] The rubber strip can increase the sliding friction of the operation table 101, so that the operation table 101 can be simply fixed after being slid to any position on the support frame 102, thereby bringing convenience to actual use.
[0042] As shown in Figure 3
[0043] A plurality of fixed threaded holes are formed in the support frame 102.
[0044] The operation table 101 after sliding can be fixed by screwing bolts into the plurality of fixed threaded holes, so that the operation table 101 can be stably fixed on the support frame 102, and the friction provided by the rubber strip makes the operation of tightening the bolts easier.
[0045] As shown in Figure 5
[0046] The two handles 304 are wrapped with rubber layers.
[0047] The rubber layers can protect the hands of the user and avoid the two handles 304 from cutting the hands of the operator.
Claims
1. An experimental animal dissection radiation shielding device, characterized by, Including support frame (102), support frame (102) is connected with operation table (101), operation table (101) is detachably connected with operation board (201) by bolt, operation table (101) is slidably connected with shield cover (301), shield cover (301) is equipped with two transparent plates (302), shield cover (301) is equipped with two operation holes (303).
2. An experimental animal anatomical radiation shielding device according to claim 1, wherein, It also includes two suction cups (306) slidably connected to the shield cover (301).
3. An experimental animal dissection radiation shielding device according to claim 2, wherein Each of the suction cups (306) is fixedly connected with a compression spring (305) between the shield cover (301).
4. An experimental animal dissection radiation shielding device according to claim 3, wherein The shield cover (301) is fixedly connected with two handles (304).
5. An experimental animal dissection radiation shielding device according to claim 4, wherein The shield cover (301) is provided with a connecting threaded hole (307).
6. An experimental animal anatomical radiation shielding device according to claim 5, wherein, The operation board (201) is fixedly connected with a magnet strip (202), and the lower side of the operation table (101) is provided with a rectangular groove, and the magnet strip (202) can be adsorbed in the rectangular groove.
7. An anatomical radiation shielding device for laboratory animals according to claim 1, wherein, The operation table (101) is slidably connected to the support frame (102).
8. An experimental animal dissection radiation shielding device according to claim 7, wherein The operation table (101) and the support frame (102) are provided with rubber strips at the sliding connection.
9. An anatomical radiation shielding device for laboratory animals according to claim 8, wherein, The support frame (102) is provided with a plurality of fixed threaded holes.
10. An experimental animal dissection radiation shielding device according to claim 4, wherein The two handles (304) are wrapped with a rubber layer.