CN211740658U - Freezing section cabinet - Google Patents

Freezing section cabinet Download PDF

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Publication number
CN211740658U
CN211740658U CN201921393423.9U CN201921393423U CN211740658U CN 211740658 U CN211740658 U CN 211740658U CN 201921393423 U CN201921393423 U CN 201921393423U CN 211740658 U CN211740658 U CN 211740658U
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CN
China
Prior art keywords
outer shell
slicing
movable plate
cabinet
material taking
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CN201921393423.9U
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Chinese (zh)
Inventor
刘炳宪
谢菊元
桂坤
操家庆
范麒峰
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Hangzhou Zhituan Information Technology Co ltd
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Hangzhou Zhituan Information Technology Co ltd
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Abstract

The utility model provides a frozen section cabinet, include: the outer shell is provided with a material taking port, and a dustproof baffle is arranged behind the material taking port; the slideway is obliquely arranged on the inner side of the outer shell; the first movable plate is connected with the inner surface shaft of the outer shell, the first movable plate and the slide way can be arranged in a sealing mode to form a first freezing box, and the first freezing box is arranged on the inner side of the material taking port; the slicing device is arranged on the upper side of the first freezing box, and the tail end of the slicing device is lower than the upper surface of the slide way; the slicing moving device is arranged on the outer shell and is connected with the slicing device; the second cooling box is arranged above the inner part of the outer shell, a material pushing device is arranged in the second cooling box, a second movable plate is arranged at the bottom of the second cooling box, and a discharging device is arranged below the second movable plate; and the controller is arranged above the outer shell and is respectively connected with the first movable plate and the second movable plate. The beneficial effects of the utility model reside in that: improve the slicing precision and the automatic slicing.

Description

Freezing section cabinet
Technical Field
The utility model relates to the technical field of medical equipment, especially, relate to a frozen section cabinet.
Background
The frozen section cabinet is an instrument for pathological diagnosis of fresh tissue, and is mainly used for quickly freezing the fresh tissue and accurately sectioning the fresh tissue to quickly diagnose the pathology of the section, determine the nature of pathological changes, whether tumors have metastasis or not and whether pathological changes exist at the excision stump, provide reliable basis for treatment, determine a correct diagnosis scheme and relieve the pain of patients. In the prior art, in order to ensure that high-quality slices can be cut, the anti-rolling plate needs to be used during slicing, and meanwhile, the angle position of the cutting edge and the anti-rolling plate is continuously adjusted, so that more ideal slices can be obtained by experience people, the slicing work consumes time and labor, and the cost of pathological diagnosis is greatly increased.
SUMMERY OF THE UTILITY MODEL
Aiming at the problems in the prior art, the frozen slice cabinet aims at improving slice precision and automatically slicing.
The specific technical scheme is as follows:
a frozen slice cabinet comprising:
the device comprises an outer shell, a material taking port is arranged in the outer shell, and a dustproof baffle is arranged behind the material taking port;
the slideway is obliquely arranged on the inner side of the outer shell and is arranged below the material taking port;
the first movable plate is connected with the inner surface shaft of the outer shell, the first movable plate and the slide way can be arranged in a sealing mode to form a first freezing box, and the first freezing box is arranged on the inner side of the material taking port;
the mobile equipment is arranged on the inner side of the outer shell and is connected with the upper surface of the first movable plate;
the slicing device is arranged on the upper side of the first freezing box, and the tail end of the slicing device is lower than the upper surface of the slide way;
the image pickup device is arranged on the upper side of the slicing device;
the display device is arranged on the outer side of the outer shell and is connected with the camera device;
the slicing moving device is arranged on the outer shell and is connected with the slicing device;
the second cooling box is arranged above the inner part of the outer shell, a material pushing device is arranged in the second cooling box, a second movable plate is arranged at the bottom of the second cooling box, and a discharging device is arranged below the second movable plate;
the controller is arranged above the outer shell and is respectively connected with the first movable plate and the second movable plate;
the bottom in the shell body is provided with a condenser, and the condenser is respectively connected with the first freezing box and the second cooling box.
Preferably, the frozen slice cabinet, wherein the lower surface of the shaft connecting part of the first movable plate and the outer shell is provided with a first stop block.
Preferably, the slice cabinet is frozen, wherein the bottom of the outer shell is fixedly provided with a movable wheel.
Preferably, the microtome cabinet, wherein the slicing apparatus comprises a slicing knife and a chute, the slicing knife being movably disposed in the chute.
Preferably, the freezer section cabinet, wherein the slicing knife includes a blade and a knife holder, the blade is fixed on the knife holder, and the knife holder is movably disposed in the chute.
Preferably, the slice cabinet freezes, wherein, dustproof baffle is connected with the surface hub connection of shell body, and dustproof baffle's area is greater than the area of getting the material mouth.
Preferably, the frozen slice cabinet, wherein, dustproof baffle is provided with first adsorption equipment towards the lower edge of the outer surface of getting the material mouth.
Preferably, the ice slicer cabinet is provided, wherein a second adsorption device matched with the first adsorption device is arranged at the position of the outer shell corresponding to the first adsorption device.
Preferably, the microtome cabinet is a freezer microtome cabinet, wherein the sensor is an infrared sensor.
Preferably, the microtome cabinet is provided with a filter on the rear side wall of the outer housing.
The technical scheme has the following advantages or beneficial effects:
firstly, realizing automatic slicing operation on an object to be sliced;
secondly, observing the object to be sliced through the display device and the camera device, and accurately slicing by adjusting the position of the slicing device so as to improve slicing precision;
and thirdly, the sliced tissue slices are refrigerated through the first freezing box, so that the research of operators is facilitated.
Drawings
Embodiments of the present invention will now be described more fully hereinafter with reference to the accompanying drawings. The drawings are, however, to be regarded as illustrative and explanatory only and are not restrictive of the scope of the invention.
FIG. 1 is a cross-sectional view of an embodiment of the ice slicer cabinet of the present invention;
FIG. 2 is a front view of an embodiment of the ice slicer cabinet of the present invention;
FIG. 3 is a side view of an embodiment of the ice slicer cabinet of the present invention;
fig. 4 is a schematic structural view of a sliding chute of an embodiment of the ice slicer of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person of ordinary skill in the art without creative efforts belong to the protection scope of the present invention.
It should be noted that, in the present invention, the embodiments and features of the embodiments may be combined with each other without conflict.
The present invention will be further described with reference to the accompanying drawings and specific embodiments, but the present invention is not limited thereto.
The utility model relates to a frozen section cabinet, as shown in fig. 1-3, include:
the device comprises an outer shell 1, wherein a material taking port 2 is arranged in the outer shell 1, and a dustproof baffle 3 is arranged behind the material taking port 2;
the slide way 10 is obliquely arranged on the inner side of the outer shell 1 and is arranged below the material taking port 2;
the first movable plate 4 is connected with the inner surface shaft of the outer shell 1, the first movable plate 4 and the slide way 10 can be arranged in a sealing mode to form a first freezing box 5, and the first freezing box 5 is arranged on the inner side of the material taking port 2;
a moving device 6 disposed inside the outer case 1 and connected to an upper surface of the first movable plate 4;
a slicing device 7 arranged on the upper side of the first freezing box 5, wherein the tail end of the slicing device 7 is lower than the upper surface of the slide way 10;
an imaging device 8 provided on the upper side of the slicing device 7;
a display device 9 disposed outside the outer case 1 and connected to the imaging device 8;
the slicing moving device is arranged on the outer shell 1 and is connected with the slicing device 7;
the second cooling box 11 is arranged above the inner part of the outer shell 1, the material pushing device 12 is arranged inside the second cooling box 11, the second movable plate 13 is arranged at the bottom of the second cooling box 11, and the discharging device 14 is arranged below the second movable plate 13;
a controller 15 disposed above the outer case 1 and connected to the first flap 4 and the second flap 13, respectively;
a condenser 16 is provided at the bottom in the outer casing 1, and the condenser 16 is connected to the first freezing tank 5 and the second cooling tank 11, respectively.
In the above embodiment, the operator places the object to be sliced on the second movable plate 13 of the second cooling box 11, then closes the second cooling box 11, and then the operator opens the freezing slicing cabinet and sets the freezing time and the freezing temperature of the object to be sliced; after the arrangement is finished, the condenser 16 generates cold air to enter the second cooling box 11 for freezing the object to be sliced, and the condenser 16 stops generating the cold air to the second cooling box 11 until the freezing is finished; then, the discharging device 14 and the mobile device 6 are started, so that the discharging device 14 drives the second movable plate 13 to incline downwards by a certain angle, the mobile device 6 can drive the first movable plate 4 to incline upwards by a certain angle, the image of the object to be sliced is shot by the camera device 8 and displayed on the display device 9 in real time, so that an operator can conveniently check the image, the operator adjusts the position of the slicing device 7 through the slicing moving device according to the shape of the object to be sliced to determine the slicing position, then, the pushing device 12 is started, so that the slicing device 7 slices the object to be sliced, sliced tissues slide into the opened first freezing box 5 through the slide way 10, then, the mobile device 6 drives the first movable plate 4 to seal the first freezing box 5, and finally, the operator can take out the slices after opening the dustproof baffle 3 for convenient research.
In the above embodiment, the condenser 16 can generate cold air into the second cooling compartment 11 and simultaneously supply the cold air into the first freezing compartment 5, and the condenser 16 stops working when the operator takes out the sliced tissue, so that the sliced tissue can be frozen and preserved in the first freezing compartment 5.
The time for starting the discharging device 14 and the moving device 6 can be set automatically as long as the sliced tissue can smoothly slide into the first freezing box 5 through the slide way 10;
for example, the discharge device 14 and the mobile apparatus 6 can be activated simultaneously;
for example, the discharging device 14 and the moving apparatus 6 may be sequentially activated within a preset time range.
Further, as a preferred embodiment, the condenser 16 may be connected to the first freezer compartment 5 and the second freezer compartment 11 through pipes, and the condenser 16 may be electrically connected to the controller 15.
Further, the pushing device 12 may preferably be a pushing cylinder, and the discharging device 14 may also preferably be a discharging cylinder.
Further, in the above embodiment, the lower surface of the shaft connection of the first flap 4 and the outer case 1 is provided with the first stopper 17.
Can make mobile device 6 remove first fly leaf 4 to fixed position through first dog 17 to realize the end of first fly leaf 4 and slide 10 upper surface in close contact with, thereby make first freezer 5 can seal the setting, and then realize that the section tissue can freeze the save in first freezer 5, and avoid because the freezing effect that cold air revealed to cause is invalid.
Further, in the above embodiment, the moving wheel 18 is fixedly arranged at the bottom of the outer casing 1.
Further, as a preferred embodiment, the moving wheel 18 may be fixedly disposed at the bottom of the outer case 1 by means of bolts, screws, or the like.
Further, in the above-described embodiment, as shown in fig. 4, the slicing device 7 includes the slicing blade 19 and the chute 20, and the slicing blade 19 is movably disposed in the chute 20.
The slicing knife 19 includes a blade and a knife holder, the blade is fixed on the knife holder, and the knife holder is movably disposed in the chute 20.
In the above embodiment, the discharging device 14 is electrically connected to the controller 15, the final position of the second movable plate 13 is perpendicular to the slicing device 7, the pushing device 12 is rotatably fixed inside the second cooling box 11 by screws, the pushing device 12 is connected to the controller 15, and the final position of the pushing cylinder is perpendicular to the slicing device 7.
Further, as a preferred embodiment, when the second movable plate 13 is in the final position, the end of the second movable plate 13 is in contact with the second stopper;
the second stopper may be a boss provided at the end of the slide way 10.
Further, in the above embodiment, the dustproof baffle 3 is connected to the outer surface shaft of the outer shell 1, and the area of the dustproof baffle 3 is larger than that of the material taking port 2.
Further, in the above embodiment, the lower edge of the outer surface of the dustproof baffle 3 facing the material taking port 2 is provided with the first adsorption device.
Further, in the above embodiment, the outer case 1 is provided with the second suction means adapted to the first suction means at a position corresponding to the first suction means.
Further, as a preferred embodiment, the first and second suction devices may be adapted magnets or magic tapes.
Further, in the above embodiment, the filter 21 is provided on the rear side wall of the outer case 1.
The condenser 16 is connected to the filter 21 by a pipe.
The above description is only an example of the preferred embodiment of the present invention, and not intended to limit the scope of the present invention, and those skilled in the art should be able to realize the equivalent alternatives and obvious variations of the present invention.

Claims (9)

1. A frozen slice cabinet, comprising:
the device comprises an outer shell, a material taking port is arranged in the outer shell, and a dustproof baffle is arranged behind the material taking port;
the slideway is obliquely arranged on the inner side of the outer shell and is arranged below the material taking port;
the first movable plate is connected with the inner surface shaft of the outer shell, the first movable plate and the slide way can be arranged in a sealing mode to form a first freezing box, and the first freezing box is arranged on the inner side of the material taking port;
the mobile equipment is arranged on the inner side of the outer shell and is connected with the upper surface of the first movable plate;
the slicing device is arranged on the upper side of the first freezing box, and the tail end of the slicing device is lower than the upper surface of the slide way;
an imaging device disposed above the slicing device;
the display device is arranged on the outer side of the outer shell and is connected with the camera device;
the slicing moving device is arranged on the outer shell and is connected with the slicing device;
the second cooling box is arranged above the inner part of the outer shell, a material pushing device is arranged in the second cooling box, a second movable plate is arranged at the bottom of the second cooling box, and a discharging device is arranged below the second movable plate;
the controller is arranged above the outer shell and is respectively connected with the first movable plate and the second movable plate;
the bottom is provided with the condenser in the shell body, the condenser respectively with first freezer with the second cooling tank is connected.
2. A microtome cabinet as claimed in claim 1, wherein a first stop is provided on the lower surface of the first movable panel at the point of connection with the shaft of the outer shell.
3. A frozen slice cabinet as claimed in claim 1 wherein the outer shell has a moving wheel fixed to the bottom.
4. A frozen slicer cabinet as claimed in claim 1 wherein the slicing means comprises a slicing blade and a chute, the slicing blade being movably disposed in the chute.
5. A cabinet for frozen sections according to claim 4 wherein the slicing knife comprises a blade and a holder, the blade being fixed to the holder, the holder being movably disposed in the chute.
6. The cabinet for frozen sections as claimed in claim 1, wherein the dust-proof shield is connected to the outer surface of the outer shell by a shaft, and the area of the dust-proof shield is larger than that of the material taking port.
7. The cabinet for frozen slices of claim 1, wherein the dust-proof baffle is provided with a first adsorption device at the lower edge of the outer surface facing the material taking port.
8. A cabinet for frozen slices as claimed in claim 7 wherein the outer shell is provided with a second suction device corresponding to the first suction device.
9. A microtome cabinet as claimed in claim 1 wherein a filter is provided on the rear side wall of the outer housing.
CN201921393423.9U 2019-08-26 2019-08-26 Freezing section cabinet Active CN211740658U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921393423.9U CN211740658U (en) 2019-08-26 2019-08-26 Freezing section cabinet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921393423.9U CN211740658U (en) 2019-08-26 2019-08-26 Freezing section cabinet

Publications (1)

Publication Number Publication Date
CN211740658U true CN211740658U (en) 2020-10-23

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ID=72848956

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921393423.9U Active CN211740658U (en) 2019-08-26 2019-08-26 Freezing section cabinet

Country Status (1)

Country Link
CN (1) CN211740658U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113776908A (en) * 2021-09-09 2021-12-10 湛江中心人民医院 Slicing device for laboratory biological research

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113776908A (en) * 2021-09-09 2021-12-10 湛江中心人民医院 Slicing device for laboratory biological research
CN113776908B (en) * 2021-09-09 2022-04-05 湛江中心人民医院 Slicing device for laboratory biological research

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