CN219409687U - Culture dish frame convenient to experimental operation on ice - Google Patents

Culture dish frame convenient to experimental operation on ice Download PDF

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Publication number
CN219409687U
CN219409687U CN202320645668.6U CN202320645668U CN219409687U CN 219409687 U CN219409687 U CN 219409687U CN 202320645668 U CN202320645668 U CN 202320645668U CN 219409687 U CN219409687 U CN 219409687U
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China
Prior art keywords
culture dish
ice
pillar
grooves
support
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CN202320645668.6U
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Chinese (zh)
Inventor
潘连红
孙厚良
罗娇
庞毅
熊书
张滔
唐加峰
李柔
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Chongqing Three Gorges Medical College
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Chongqing Three Gorges Medical College
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Abstract

The utility model relates to the technical field of biological medicine, in particular to a culture dish rack convenient for experimental operation on ice, which comprises: the main body is provided with a plurality of first culture dish tanks and second culture dish tanks; the main part below is equipped with first pillar, but first pillar below telescopic connection has the second pillar. The utility model can keep low temperature and stabilize the culture dish in the molecular biological experiment process, reduces the experiment pollution risk, is convenient for experiment operation, improves the experiment success rate, and solves the technical problem that the existing culture dish rack is not suitable for being used on ice.

Description

Culture dish frame convenient to experimental operation on ice
Technical Field
The utility model relates to the technical field of biological medicines, in particular to a culture dish rack convenient for experimental operation on ice.
Background
In molecular biology experiments, 10cm culture dishes and 6cm culture dishes are commonly used experimental consumables, and are mainly used for culturing cells, microorganisms and the like. When RNA extraction or protein extraction experiments are required, the culture dish is usually placed on ice to perform experimental operations, various enzymes and substrates can be kept on the ice without inactivation, and meanwhile, the activity of the enzymes is reduced, however, the ice surface is always uneven, and after the ice begins to melt, the ice surface is very hard, so that the placement of the culture dish is not facilitated, the culture dish easily slides back and forth on the ice, the operation is not facilitated, and meanwhile, the ice cubes can be wrongly put into the culture dish, so that the RNA is polluted or the activity of the protein is influenced, and the experiment is greatly adversely affected. The culture dish rack sold in the market at present is usually used for storing a large number of culture dishes or used in cell culture, is not favorable for placing the culture dishes, can not prevent the culture dishes from sliding back and forth on ice, and is not suitable for being used on ice.
Disclosure of Invention
The utility model provides a culture dish rack convenient for experimental operation on ice, which aims to solve the technical problem that the existing culture dish rack is not suitable for being used on ice.
The basic scheme provided by the utility model is as follows: a culture dish rack convenient for experimental operation on ice, comprising: the main body is provided with a plurality of first culture dish tanks and second culture dish tanks; the main part below is equipped with first pillar, but first pillar below telescopic connection has the second pillar.
The working principle and the advantages of the utility model are as follows: in this scheme, culture dish frame mainly contains main part and first pillar, the second pillar, the main part is equipped with a plurality of first culture dish grooves and second culture dish grooves, can place the culture dish of different models and play fixed action, prevent that the culture dish from making a round trip to slide, because first pillar, the second pillar is located the main part bottom, can insert in the ice, play fixed and supporting role to the main part, when carrying out experimental operation on culture dish frame, can realize that the culture dish is fixed to be placed and reduce experimental sample pollution risk on ice, in order to improve experimental success rate, meanwhile, because first pillar, second pillar telescopic connection, the total length of first pillar and second pillar can be adjusted, insert in the ice of different degree of depth when the second pillar, the ice of different degree of depth melts the time and also is different, thereby can satisfy the demand of different experimental time.
The utility model can keep low temperature and stabilize the culture dish in the molecular biological experiment process, reduces the experiment pollution risk, is convenient for experiment operation, improves the experiment success rate, and solves the technical problem that the existing culture dish rack is not suitable for being used on ice.
Further, the first support is provided with a first through hole along the vertical axis direction, the second support is hollow, the second support is provided with a second through hole along the vertical axis direction, a short rod is arranged in the second through hole, and the short rod is in threaded connection with the second support.
The beneficial effects are that: the first support column is inserted into the hollow of the second support column, when the height of the culture dish needs to be adjusted, the first support column is moved up and down, and then the short rod is rotated to enable the short rod to penetrate through the first through hole and the second through hole at the same time, so that the first support column and the second support column are fixed, and the culture dish is convenient to adjust.
Further, the first culture dish groove and the second culture dish groove are arranged in an array.
The beneficial effects are that: the first culture dish groove and the second culture dish groove are evenly distributed in the main body, so that the first culture dish groove and the second culture dish groove with more numbers can be arranged in the main body, and meanwhile, the culture dish is convenient for workers to take in the form of an array.
Further, the number of the first support posts and the second support posts is four, and the first support posts are located right below four corners of the main body.
The beneficial effects are that: the stability of the first and second struts supporting the main body is ensured.
Further, the first culture dish groove and the second culture dish groove are round, and the diameters of the first culture dish groove and the second culture dish groove are 6cm and 10cm respectively.
The beneficial effects are that: since 10cm dishes and 6cm dishes are the most commonly used, this can improve the efficiency of use.
Further, the number of the first culture dish groove and the second culture dish groove is 12 and 8 respectively, the number of columns of the first culture dish groove and the second culture dish groove is 2, and the number of each column of the first culture dish groove and the second culture dish groove is 6 and 4 respectively.
The beneficial effects are that: meets the experimental requirements as much as possible.
Drawings
FIG. 1 is a schematic diagram of an embodiment of a dish rack for facilitating experimental operations on ice according to the present utility model.
FIG. 2 is a schematic diagram of the structures of the first and second struts of the present utility model.
Detailed Description
The following is a further detailed description of the embodiments:
the labels in the drawings of this specification include: a main body 1, a first culture dish tank 2, a second culture dish tank 3, a first support column 4, a second support column 5, a short rod 6 and a handle 7.
An embodiment is shown in fig. 1, a culture dish rack for facilitating experimental operation on ice, comprising: the culture dish comprises a main body 1, wherein a plurality of first culture dish grooves 2 and second culture dish grooves 3 are formed in the main body 1; the first culture dish groove 2 and the second culture dish groove 3 are circular, the diameters of the first culture dish groove 2 and the second culture dish groove 3 are respectively 6cm and 10cm, the number of the first culture dish groove 2 and the number of the second culture dish groove 3 are respectively 12 and 8, the use efficiency can be improved because the 10cm culture dish and the 6cm culture dish are most commonly used, the first culture dish groove 2 and the second culture dish groove 3 are arranged in an array manner, the first culture dish groove 2 and the second culture dish groove 3 are uniformly distributed on the main body 1, more first culture dish grooves 2 and the second culture dish groove 3 can be arranged on the main body 1, meanwhile, the array form is convenient for staff to take the culture dishes, for example, the number of the first culture dish groove 2 and the second culture dish groove 3 is respectively 2 columns, the number of each column of the first culture dish groove 2 and the second culture dish groove 3 is respectively 6 and 4, and the experiment requirement is met as far as possible;
a first support column 4 is arranged below the main body 1, a second support column 5 is telescopically connected below the first support column 4, the number of the first support column 4 and the second support column 5 is four, the first support column 4 is positioned right below four corners of the main body 1, and stability of the main body 1 supported by the first support column 4 and the second support column 5 is ensured; as shown in fig. 2, the first support 4 and the second support 5 are both cylindrical, the first support 4 is provided with a first through hole along the vertical axis direction, the second support 5 is hollow, the first support 4 is solid, the diameter of the first support 4 is the same as the inner diameter of the second support 5, the second support 5 is provided with a second through hole along the vertical axis direction, a short rod 6 is arranged in the second through hole, one end of the short rod 6 far away from the second support 5 is provided with a handle 7, the short rod 6 is in threaded connection with the second support 5, the first support 4 is inserted into the hollow of the second support 5, when the height of the culture dish needs to be adjusted, the first support 4 is moved up and down, and then the short rod 6 is rotated to penetrate through the first through hole and the second through hole at the same time, so that the first support 4 and the second support 5 are fixed, and thus the culture dish is convenient to adjust.
In this embodiment, culture dish frame mainly contains main part 1 and first pillar 4, second pillar 5, main part 1 is equipped with a plurality of first culture dish grooves 2 and second culture dish groove 3, can place the culture dish of different models and play the fixed action, prevent that the culture dish from making a round trip to slide, because first pillar 4, second pillar 5 are located main part 1 bottom, can insert in the ice, play fixed and supporting role to main part 1, when carrying out experimental operation on the culture dish frame, can realize that the culture dish is fixed to be placed and reduce experimental sample pollution risk on ice, in order to improve experimental success rate, meanwhile, because first pillar 4, the scalable connection of second pillar 5, first pillar 4 can be adjusted with the total length of second pillar 5, in the ice of different degree of depth is inserted to second pillar 5, the ice of different degree of depth melts the time and also is different, thereby can satisfy the demand of different experimental time.
The foregoing is merely an embodiment of the present utility model, and a specific structure and characteristics of common knowledge in the art, which are well known in the scheme, are not described herein, so that a person of ordinary skill in the art knows all the prior art in the application day or before the priority date of the present utility model, and can know all the prior art in the field, and have the capability of applying the conventional experimental means before the date, so that a person of ordinary skill in the art can complete and implement the present embodiment in combination with his own capability in the light of the present application, and some typical known structures or known methods should not be an obstacle for a person of ordinary skill in the art to implement the present application. It should be noted that modifications and improvements can be made by those skilled in the art without departing from the structure of the present utility model, and these should also be considered as the scope of the present utility model, which does not affect the effect of the implementation of the present utility model and the utility of the patent. The protection scope of the present application shall be subject to the content of the claims, and the description of the specific embodiments and the like in the specification can be used for explaining the content of the claims.

Claims (6)

1. Culture dish frame convenient to experimental operation on ice, its characterized in that includes: the main body is provided with a plurality of first culture dish tanks and second culture dish tanks; the main part below is equipped with first pillar, but first pillar below telescopic connection has the second pillar.
2. The culture dish rack for facilitating experimental operation on ice according to claim 1, wherein the first support column is provided with a first through hole along the vertical axis direction, the second support column is hollow, the second support column is provided with a second through hole along the vertical axis direction, a short rod is arranged in the second through hole, and the short rod is in threaded connection with the second support column.
3. The culture dish rack for facilitating experimental operations on ice according to claim 2, wherein the first culture dish tank and the second culture dish tank are arranged in an array.
4. A dish rack for facilitating experimental operations on ice as claimed in claim 3, wherein the number of said first and second support posts is four, said first support post being located directly under the four corners of the main body.
5. The dish rack for facilitating experimental operations on ice as claimed in claim 4, wherein the first and second dish grooves are circular, and the diameters of the first and second dish grooves are 6cm and 10cm, respectively.
6. The culture dish rack for facilitating experimental operation on ice according to claim 5, wherein the number of the first culture dish grooves and the second culture dish grooves is 12 and 8 respectively, the number of columns of the first culture dish grooves and the second culture dish grooves is 2, and the number of each column of the first culture dish grooves and the second culture dish grooves is 6 and 4 respectively.
CN202320645668.6U 2023-03-28 2023-03-28 Culture dish frame convenient to experimental operation on ice Active CN219409687U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320645668.6U CN219409687U (en) 2023-03-28 2023-03-28 Culture dish frame convenient to experimental operation on ice

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320645668.6U CN219409687U (en) 2023-03-28 2023-03-28 Culture dish frame convenient to experimental operation on ice

Publications (1)

Publication Number Publication Date
CN219409687U true CN219409687U (en) 2023-07-25

Family

ID=87233098

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320645668.6U Active CN219409687U (en) 2023-03-28 2023-03-28 Culture dish frame convenient to experimental operation on ice

Country Status (1)

Country Link
CN (1) CN219409687U (en)

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