CN210815363U - Mouse dissection experiment operating table - Google Patents
Mouse dissection experiment operating table Download PDFInfo
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- CN210815363U CN210815363U CN201921653669.5U CN201921653669U CN210815363U CN 210815363 U CN210815363 U CN 210815363U CN 201921653669 U CN201921653669 U CN 201921653669U CN 210815363 U CN210815363 U CN 210815363U
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Abstract
The utility model provides an experiment operation panel is dissected to mouse relates to mouse and dissects experiment technical field, include: the mouse rack comprises a platform for placing mice, wherein a plurality of supporting rods are vertically arranged on two sides of the platform, a first sliding block which can slide up and down along the supporting rods and rotate around the supporting rods is sleeved on the supporting rods, a first locking element is arranged on the first sliding block, when the first locking element is in a first state, the first sliding block can slide along the supporting rods and rotate around the supporting rods, and when the first locking element is in a second state, the first sliding block is fixedly connected with the supporting rods; the first slider is gone up portable setting and is used for hooking the drag hook and the second locking component of mouse body, and when the second locking component was in the third state, the drag hook can be followed and slided with branch vertically direction on first slider, and when the second locking component was in the fourth state, drag hook and first slider fixed connection. The operation is performed after the mouse bodies are fixed by the plurality of draw hooks through the supporting rods, an assistant is not needed, the experiment operation can be independently completed by one person, and the operation is simple, convenient and reliable.
Description
Technical Field
The utility model belongs to the technical field of the experiment technique is dissected to the mouse and specifically relates to an experiment operation panel is dissected to mouse is related to.
Background
In the teaching and research of the subjects of physiology, medicine, pharmacy and the like, the mouse is taken as the most common experimental object, and the experimental mouse is called a white mouse and has the characteristics of pleochromism, wild property, omnivory, poor adaptability, strong fecundity and the like.
At present when dissecting the experiment to the experiment mouse, often need the assistant to use the fixed mouse truck of drag hook, then operate to the mouse by the operator, can't accomplish independently and experiment, cause the waste of manpower.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an experiment operation panel is dissected to mouse carries out the operation through fixing behind the fixed mouse body of a plurality of drag hooks of branch, need not the assistant, and alone can independently accomplish experimental operation, and easy and simple to handle reliably, has higher practical value.
In order to achieve the above purpose, the utility model provides a following technical scheme:
the utility model provides a pair of experiment operation panel is dissected to mouse, include: the mouse rack comprises a platform for placing a mouse, wherein a plurality of supporting rods are vertically arranged on two sides of the platform, a first sliding block which can slide up and down along the supporting rods and rotate around the supporting rods is sleeved on the supporting rods, a first locking element is arranged on the first sliding block, the first sliding block can slide along the supporting rods and rotate around the supporting rods when the first locking element is in a first state, and the first sliding block is fixedly connected with the supporting rods when the first locking element is in a second state; but movable setting is used for hooking the drag hook and the second locking component of mouse body on the first slider, when second locking component is in the third state, the drag hook can be in on the first slider along with branch vertically direction slides, when second locking component is in the fourth state, the drag hook with first slider fixed connection.
Preferably, the first locking element is a screw, the supporting rod is cylindrical, a cylindrical first through hole is formed in the first sliding block, the first sliding block is sleeved on the supporting rod, a first threaded hole communicated with the first through hole is formed in the side wall of the first sliding block, and the first locking element is arranged in the first threaded hole.
Preferably, the second locking element is a screw, a second through hole perpendicular to the support rod is further formed in the side wall of the first sliding block, the draw hook is inserted into the second through hole, a second threaded hole communicated with the second through hole is formed in the end face of the first sliding block, and the second locking element is arranged in the second threaded hole.
Preferably, the up end slidable of platform is provided with four fixation clamps and the third locking component that are used for fixed mouse four limbs, when the third locking component is in the fifth state, the fixation clamp can the up end of platform slides, when the third locking component is in the sixth state, the fixation clamp with the up end fixed connection of platform.
Preferably, the third locking element is a screw, a slide rail is arranged on the upper end surface of the platform, a second slide block is sleeved on the slide rail, the fixing clamp is fixed on the second slide block, a threaded through hole perpendicular to the platform is formed in the upper end surface of the second slide block, and the threaded through hole is provided with the third locking element.
Preferably, a thermostatic plate is arranged below the platform, and a temperature display and a thermostatic plate switch are arranged on the side wall of the thermostatic plate.
Preferably, the platform is provided with a tail fixing device for fixing a mouse tail, and the tail fixing device comprises: the supply the arch card strip that the mouse tail put into and the set screw that is used for fixed mouse tail, arch card strip top set up with platform vertically third screw thread through-hole, set up in the third screw thread through-hole set screw.
Preferably, a blood collection tank is arranged on the platform side wall, and the blood collection tank surrounds the platform side wall in a circle.
Preferably, a spotlight is arranged on the platform and connected with the platform through a gooseneck.
Preferably, a magnifying glass is arranged on the platform and connected with the platform through a gooseneck.
The utility model provides a technical scheme can include following beneficial effect:
at present when dissecting the experiment to the experiment mouse, often need the assistant to use the fixed mouse truck of drag hook, then operate to the mouse by the operator, can't accomplish independently and experiment, cause the waste of manpower. The utility model provides a pair of experiment operation panel is dissected to mouse carries out the operation after fixing the mouse body through a plurality of drag hooks of branch, need not the assistant, and alone can independently accomplish the experiment operation, and easy and simple to handle reliably, has higher practical value.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the application.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a schematic structural view of an experimental operating table for mouse dissection according to an embodiment of the present invention;
FIG. 2 is a schematic view of a support rod structure of a rat dissection experiment operating table according to an embodiment of the present invention;
FIG. 3 is a schematic view of a fixing clip of the operating table for rat dissection experiment according to the embodiment of the present invention;
fig. 4 is a schematic structural view of a tail fixing device of a rat dissection experiment operating table according to an embodiment of the present invention.
In the figure: 1. a platform; 2. a magnifying glass; 3. a strut; 4. a first slider; 5. a first locking element; 6. pulling a hook; 7. a second locking member; 8. a first through hole; 9. a first threaded hole; 10. a second through hole; 11. a second threaded hole; 12. a fixing clip; 13. a third locking element; 14. a slide rail; 15. a second slider; 16. a threaded through hole; 17. a thermostatic plate; 18. a temperature display; 19. a thermostatic board switch; 20. a tail securing device; 2001. an arch-shaped clamping strip; 2002. a set screw; 21. a blood collection tank; 22. a spotlight.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention clearer, the technical solutions of the present invention will be described in detail below. It is to be understood that the embodiments described are only some embodiments of the invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
The specific embodiment of the utility model provides an experiment operation panel is dissected to mouse, as shown in fig. 1-4, its characterized in that includes: the mouse-placing platform comprises a platform 1 for placing a mouse, wherein a plurality of supporting rods 3 are vertically arranged on two sides of the platform 1, a first sliding block 4 is sleeved on each supporting rod 3, so that the first sliding block 4 can slide up and down along each supporting rod 3 and rotate around each supporting rod 3, a first locking element 5 is arranged on each first sliding block 4, when each first locking element 5 is in a first state, each first sliding block 4 can slide along each supporting rod 3 and rotate around each supporting rod 3, and when each first locking element 5 is in a second state, each first sliding block 4 is fixedly connected with each supporting rod 3; movably set up drag hook 6 and the second locking component 7 that are used for hooking the mouse body on first slider 4, when second locking component 7 is in the third state, drag hook 6 can be along sliding with 3 vertically directions of branch on first slider 4, and when second locking component 7 is in the fourth state, drag hook 6 and first slider 4 fixed connection.
When using, at first place the mouse anesthesia on platform 1, open the mouse back of thorax, be in first state with first locking element 5, along 3 first sliders 4 that slide from top to bottom of branch, drive drag hook 6 to mouse body height, rotate first slider 4 around branch 3 and drive drag hook 6 and be used in on the mouse body, be in the second state with first locking element 5 this moment for first slider 4 and 3 fixed connection of branch. Then be in the third state with second locking component 7, remove drag hook 6 along first slider 4 for drag hook 6 hooks the mouse body and pulls open, pull open to suitable operation's position after, be in the fourth state with second locking component 7, make drag hook 6 and first slider 4 fixed connection. So set gradually first slider 4 and drag hook 6 on a plurality of branches 3, utilize a plurality of drag hooks 6 to pull open the mouse body. Therefore, the experimental operation can be independently completed by one person without an assistant, and the operation is simple, convenient and reliable.
Wherein, the same number of struts 3, namely the same number of drag hooks 6, should be arranged on both sides of the platform 1 respectively to keep balance.
As an optional implementation manner, in the embodiment of the present invention, as shown in fig. 1 to 4, the first locking element 5 is a screw, the supporting rod 3 is cylindrical, a first cylindrical through hole 8 is disposed on the first slider 4, the first slider 4 is sleeved on the supporting rod 3 through the first through hole 8, an inner wall of the first through hole 8 abuts against an outer wall of the supporting rod 3, a first threaded hole 9 is disposed on a side wall of the first slider 4, and the first threaded hole 9 is communicated with the first through hole 8. The first locking element 5 is arranged in the first threaded hole 9, i.e. the first locking element 5 is screwed into the first threaded hole 9. The arrangement is such that screwing the first locking element 5 brings the first locking element 5 against the strut 3, with the first locking element 5 being in the second state and the first slider 4 being fixedly connected to the strut 3. The first locking element 5 is screwed so that the first locking element 5 is not in contact with the strut 3, and the first locking element 5 is in the first state, and the first slider 4 can slide along the strut 3 and rotate around the strut 3. The switching of the first locking element 5 between the first state and the second state is facilitated.
As an alternative embodiment, in the embodiment of the present invention, as shown in fig. 1 to 4, the second locking element 7 is a screw, a second through hole 10 perpendicular to the support rod 3 is provided on the side wall of the first slider 4, the draw hook 6 is inserted into the second through hole 10, a second threaded hole 11 is provided on the end surface of the first slider 4, the second threaded hole 11 is communicated with the second through hole 10, and the second locking element 7 is provided in the second threaded hole 11, that is, the second locking element 7 is screwed into the second threaded hole 11. So set up, twist second locking component 7, make second locking component 7 support drag hook 6, second locking component 7 is in the fourth state promptly this moment, drag hook 6 and first slider 4 fixed connection. The first locking element 5 is screwed so that the second locking element 7 is not in contact with the pull hook 6, the second locking element 7 is in the third state, and the pull hook 6 can slide on the first slide 4 in a direction perpendicular to the strut 3. The switching of the second locking element 7 between the third state and the fourth state is facilitated.
As an optional implementation manner, in the embodiment of the present invention, as shown in fig. 1-4, four fixing clips 12 and a third locking element 13 for fixing the mouse limb are slidably disposed on the upper end surface of the platform 1, when the third locking element 13 is in the fifth state, the fixing clips 12 can slide on the upper end surface of the platform 1, and when the third locking element 13 is in the sixth state, the fixing clips 12 are fixedly connected to the upper end surface of the platform 1.
When using, be in the fifth state with third locking component 13, along platform 1's up end slip fixation clamp 12, make fixation clamp 12 slide to the four limbs position of mouse, clip mouse four limbs with fixation clamp 12, then along platform 1's up end slip fixation clamp 12, make the four limbs of fixation clamp 12 with the mouse taut, be in the fifth state with third locking component 13 this moment, the up end fixed connection of fixation clamp 12 and platform 1 this moment, thereby make fixation clamp 12 fix the four limbs of mouse, so set up, avoid anesthesia effect not good, make the mouse influence experiment of disturbing.
As an alternative embodiment, in the embodiment of the present invention, as shown in fig. 1-4, the third locking element 13 is a screw, a slide rail 14 is disposed on the upper end surface of the platform 1, a second slide block 15 is sleeved on the slide rail 14, the fixing clip 12 is fixed on the second slide block 15, a through-hole 16 perpendicular to the platform 1 is disposed on the upper end surface of the second slide block 15, and the third locking element 13 is disposed in the through-hole 16, that is, the third locking element 13 is screwed into the through-hole 16. The third locking element 13 is screwed in such a way that the third locking element 13 abuts against the platform 1, and the third locking element 13 is in the sixth state, and the second slider 15 is fixedly connected with the platform 1. The third locking element 13 is screwed so that the third locking element 13 is not in contact with the platform 1, and the third locking element 13 is in the fifth state, and the first slider 4 can slide on the slide rail 14 on the platform 1. The switching of the third locking element 13 between the fifth state and the sixth state is facilitated.
As an optional implementation manner, in the embodiment of the present invention, as shown in fig. 1 to 4, a thermostatic board 17 is disposed under the platform 1, the thermostatic board 17 may be a YS-300S thermostatic board, and a temperature display 18 and a thermostatic board switch 19 are disposed on a side wall of the thermostatic board 17. So set up, when doing the experiment, use thermostatic plate 17 to be in suitable temperature with the platform invariant, reduce the misery of mouse, weaken the mouse struggle and influence the experiment effect.
As an optional embodiment, in the embodiment of the present invention, as shown in fig. 1 to 4, a tail fixing device 20 for fixing a mouse tail is provided on the platform 1, and the tail fixing device 20 includes: the mouse tail fixing device comprises an arched clamping strip 2001 for placing the mouse tail and a fixing screw 2002 for fixing the mouse tail, wherein a third threaded through hole perpendicular to the platform 1 is formed in the top end of the arched clamping strip 2001, and the fixing screw 2002 is arranged in the third threaded through hole. Arch card strip 2001 is fixed set up on platform 1 and with platform 1 between form an arch space, third screw through-hole and arch space intercommunication place the mouse tail in arch space, twist set screw 2002 soon to support the mouse tail, can fix the mouse tail, prevent that the mouse tail from touching the influence experiment effect.
As an optional implementation manner, in the embodiment of the present invention, as shown in fig. 1 to fig. 4, a blood collection tank 21 is disposed on the side wall of the platform 1, the blood collection tank 21 surrounds the side wall of the platform 1 for a circle and is fixedly disposed on the side wall of the platform 1, when blood flows down on the side wall of the platform 1, the blood flows into the blood collection tank 21, the blood collection tank 21 is provided with a through hole, and blood in the blood collection tank 21 is guided out and collected, so that the blood collection tank is clean and convenient for cleaning after an experiment.
As an alternative embodiment, in the embodiment of the present invention, as shown in fig. 1 to 4, a spotlight 22 is disposed on the platform 1, and the spotlight 22 is connected to the platform 1 through a gooseneck. The gooseneck is also called a coil pipe, and the metal shaping hose is a metal piece which can be bent at will and determines the direction. So set up, when doing the experiment, the experimental environment is brighter, and the gooseneck can make spotlight 22 rotate to arbitrary direction, can supply the user to adjust according to the condition.
As an optional implementation manner, in the embodiment of the present invention, as shown in fig. 1 to 4, a magnifying glass 2 is disposed on the platform 1, and the magnifying glass 2 is connected to the platform 1 through a gooseneck. With the arrangement, a user can conveniently perform fine operation, and the gooseneck can enable the magnifier 2 to rotate in any direction, so that the user can adjust the magnifier according to the situation.
The above description is only for the specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art can easily think of the changes or substitutions within the technical scope of the present invention, and all should be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.
Claims (10)
1. A rat anatomy experiment operating table, comprising: the mouse rack comprises a platform (1) for placing a mouse, wherein a plurality of supporting rods (3) are vertically arranged on two sides of the platform (1), a first sliding block (4) capable of sliding up and down along the supporting rods (3) and rotating around the supporting rods (3) is sleeved on each supporting rod (3), a first locking element (5) is arranged on each first sliding block (4), when each first locking element (5) is in a first state, each first sliding block (4) can slide along the corresponding supporting rod (3) and rotate around the corresponding supporting rod (3), and when each first locking element (5) is in a second state, each first sliding block (4) is fixedly connected with the corresponding supporting rod (3); but movable setting is used for hooking drag hook (6) and second locking component (7) of mouse body on first slider (4), when second locking component (7) are in the third state, drag hook (6) can first slider (4) go up along with branch (3) vertically direction slides, when second locking component (7) are in the fourth state, drag hook (6) with first slider (4) fixed connection.
2. The rat dissection experiment operating table according to claim 1, wherein the first locking element (5) is a screw, the support rod (3) is cylindrical, a first cylindrical through hole (8) is formed in the first slider (4) and sleeved on the support rod (3), a first threaded hole (9) communicated with the first through hole (8) is formed in a side wall of the first slider (4), and the first locking element (5) is arranged in the first threaded hole (9).
3. The rat dissection experiment operating table according to claim 2, wherein the second locking element (7) is a screw, a second through hole (10) perpendicular to the supporting rod (3) is further formed in the side wall of the first sliding block (4), the draw hook (6) is inserted into the second through hole (10), a second threaded hole (11) communicated with the second through hole (10) is formed in the end face of the first sliding block (4), and the second locking element (7) is arranged in the second threaded hole (11).
4. The rat anatomy experiment operating table according to claim 1, wherein four fixing clips (12) for fixing four limbs of a rat and a third locking element (13) are slidably disposed on the upper end surface of the platform (1), when the third locking element (13) is in a fifth state, the fixing clips (12) can slide on the upper end surface of the platform (1), and when the third locking element (13) is in a sixth state, the fixing clips (12) are fixedly connected with the upper end surface of the platform (1).
5. A mouse dissection experimental operating table according to claim 4, wherein the third locking element (13) is a screw, a slide rail (14) is arranged on the upper end face of the platform (1), a second slide block (15) is sleeved on the slide rail (14), the fixing clamp (12) is fixed on the second slide block (15), a threaded through hole (16) perpendicular to the platform (1) is arranged on the upper end face of the second slide block (15), and the third locking element (13) is arranged in the threaded through hole (16).
6. The rat dissection experiment operating table according to claim 1, wherein a thermostatic board (17) is arranged below the platform (1), and a temperature display (18) and a thermostatic board switch (19) are arranged on the side wall of the thermostatic board (17).
7. A rat anatomy experiment operating table according to claim 1, wherein a tail fixing device (20) for fixing a rat tail is provided on the platform (1), the tail fixing device (20) comprising: the mouse tail fixing device comprises an arched clamping strip (2001) for placing a mouse tail and a fixing screw (2002) for fixing the mouse tail, wherein a third threaded through hole perpendicular to the platform (1) is formed in the top end of the arched clamping strip (2001), and the fixing screw (2002) is arranged in the third threaded through hole.
8. The rat dissection experimental operating table according to claim 1, wherein a blood collection tank (21) is arranged around the side wall of the platform (1).
9. A rat dissection laboratory operating table according to claim 1, characterized in that a spotlight (22) is arranged on the platform (1), the spotlight (22) being connected with the platform (1) by a gooseneck.
10. The rat dissection experiment operating table according to claim 1, wherein a magnifying glass (2) is arranged on the platform (1), and the magnifying glass (2) is connected with the platform (1) through a gooseneck.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921653669.5U CN210815363U (en) | 2019-09-30 | 2019-09-30 | Mouse dissection experiment operating table |
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CN201921653669.5U CN210815363U (en) | 2019-09-30 | 2019-09-30 | Mouse dissection experiment operating table |
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CN210815363U true CN210815363U (en) | 2020-06-23 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112914781A (en) * | 2021-03-18 | 2021-06-08 | 吉林大学第一医院 | Operating table for animal experiments |
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2019
- 2019-09-30 CN CN201921653669.5U patent/CN210815363U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112914781A (en) * | 2021-03-18 | 2021-06-08 | 吉林大学第一医院 | Operating table for animal experiments |
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