CN218121997U - Container is with interior post of anti-bubble, container, biochemical analysis appearance that are used for immunodetection - Google Patents

Container is with interior post of anti-bubble, container, biochemical analysis appearance that are used for immunodetection Download PDF

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Publication number
CN218121997U
CN218121997U CN202122976605.2U CN202122976605U CN218121997U CN 218121997 U CN218121997 U CN 218121997U CN 202122976605 U CN202122976605 U CN 202122976605U CN 218121997 U CN218121997 U CN 218121997U
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China
Prior art keywords
container
liquid
column
inner column
vent
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CN202122976605.2U
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林佳慧
黄维雷
陈盼
张玲
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Suzhou Guoke Junhao Biotechnology Co ltd
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Suzhou Guoke Junhao Biotechnology Co ltd
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Abstract

The utility model relates to a container is with inner prop of anti-bubble, inner prop include a hollow cylinder, and the both ends of cylinder are equipped with an opening respectively, and wherein, an at least open-ended border is equipped with the breach to make the liquid in the container pass through the breach and get into the cylinder. The utility model discloses still relate to a container, biochemical analysis appearance for immunodetection. By arranging the anti-bubble inner column for the container, the phenomenon that the machine stops running due to bubbles generated when the container operates is avoided.

Description

Container is with interior post of anti-bubble, container, biochemical analysis appearance that are used for immunodetection
[ technical field ] A
The utility model relates to a biology and analytical chemistry and medical science detect technical field, concretely relates to container is with inner prop of anti-bubble, be used for immunodetection's container, biochemical analysis appearance.
[ background ] A method for producing a semiconductor device
The container for immunoassay that uses at present when high rotatory, easy bubble that produces can lead to equipment warning reagent bottle empty when the bubble is adsorbed by the reagent needle, and the machine stops the operation.
Accordingly, there is a need for improvements in the art that overcome the deficiencies in the prior art.
[ Utility model ] A method for manufacturing a semiconductor device
To prior art's weak point, the utility model aims to provide a container is with interior post of anti-bubble, interior post includes a hollow cylinder, the both ends of cylinder are equipped with an opening respectively, and wherein, an at least open-ended border is equipped with the breach to make the liquid in the container pass through the breach gets into the cylinder.
Preferably, the body comprises: the bottle mouth is used for forming an inlet for communicating the container body with the outside;
the container also comprises the anti-bubble inner column for the container, wherein the inner column is sleeved in the bottleneck and abutted against the bottom surface of the container body so as to form a channel for external liquid to enter the container body;
after the liquid in the column body is transferred, the liquid in the device body enters from one end of the column body through the notch at one end of the column body, and air enters from the other end of the column body through the opening at the other end of the column body; so that the liquid level in the column is consistent with the liquid level in the device body.
Preferably, a notch is provided near each of the openings.
Preferably, the notch is provided near an edge of the body.
Preferably, the mouth extends along an edge of the body away from the centre of the body.
The utility model also relates to a container for immunoassay, which comprises a container body for bearing liquid; the device body includes:
the bottle mouth is used for forming an inlet for communicating the container body with the outside;
the inner column is sleeved in the bottleneck and abutted against the bottom surface of the device body so as to form a channel for external liquid to enter the device body;
the two ends of the inner column are respectively provided with an air vent and a liquid supplementing port, when the liquid in the inner column is transferred, the liquid in the device body enters from one end of the inner column through the liquid supplementing port, and the air enters from the other end of the inner column through the air vent; so that the liquid level in the inner column is consistent with the liquid level in the device body.
Preferably, the fluid infusion port abuts against the bottom surface of the device body.
Preferably, the vent is provided at a rim of the inner post.
Preferably, the caliber of the inner column close to the vent is smaller than the caliber of the inner column close to the fluid infusion port.
The utility model discloses still relate to a biochemical analyzer, including the analysis appearance body, still include as above a container for immunodetection, the ware body is arranged in this internal in order to detect, the analysis of analysis appearance.
Compared with the prior art, the beneficial effects of the utility model reside in that:
the utility model relates to a container is with inner prop of anti-bubble, inner prop include a hollow cylinder, and the both ends of cylinder are equipped with an opening respectively, and wherein, an at least open-ended border is equipped with the breach to make the liquid in the container pass through the breach and get into the cylinder. The utility model discloses still relate to a container, biochemical analysis appearance for immunodetection. By arranging the anti-bubble inner column for the container, the phenomenon that the machine stops running due to bubbles generated when the container is operated is avoided.
The above description is only an outline of the technical solution of the present invention, and in order to make the technical means of the present invention more clearly understood and to be implemented in accordance with the content of the specification, the following detailed description will be given of preferred embodiments of the present invention in conjunction with the accompanying drawings. The detailed description of the present invention is given by the following examples and the accompanying drawings.
[ description of the drawings ]
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the invention and together with the description serve to explain the invention and do not constitute a limitation on the invention. In the drawings:
FIG. 1 is a schematic structural view of a container for immunoassay including an inner column according to the present invention;
FIG. 2 is a schematic structural view of the container for immunoassay according to the present invention;
fig. 3 is a schematic structural view of the inner column of the present invention.
Description of reference numerals:
100. a main body; 101. a bottle body; 102. a bottle mouth; 1021. an extension portion; 1022. a thread;
200. a cylinder; 201. a vent; 202. a fluid infusion port.
[ detailed description ] A
The foregoing and other objects, features, aspects and advantages of the present invention will become more apparent to those skilled in the art from the following detailed description, which, taken in conjunction with the annexed drawings, discloses a more detailed description of the present invention, which will enable those skilled in the art to make and use the present invention. In the drawings, the shape and size may be exaggerated for clarity, and the same reference numerals will be used throughout the drawings to designate the same or similar components. In the following description, terms such as center, thickness, height, length, front, back, rear, left, right, top, bottom, upper, lower, and the like are used based on the orientation or positional relationship shown in the drawings. In particular, "height" corresponds to the dimension from top to bottom, "width" corresponds to the dimension from left to right, and "depth" corresponds to the dimension from front to back. These relative terms are for convenience of description and are not generally intended to require a particular orientation. Terms concerning attachments, coupling and the like (e.g., "connected" and "attached") refer to a relationship wherein structures are secured or attached, either directly or indirectly, to one another through intervening structures, as well as both movable or rigid attachments or relationships, unless expressly described otherwise.
The present invention will be further described with reference to the accompanying drawings and the detailed description, and it should be noted that the embodiments or technical features described below can be arbitrarily combined to form a new embodiment without conflict. It will be understood that terms such as "having," "including," and "comprising," as used herein, do not preclude the presence or addition of one or more other elements or groups thereof.
Example one
The utility model relates to an anti-bubble inner column for a container, which comprises a hollow column body 200, wherein the column body 200 extends freely, liquid flows through the hollow part of the inner column, and two ends of the column body 200 are respectively provided with an opening so that the liquid enters the hollow part of the inner column through the openings; wherein the edge of at least one opening is provided with a notch, so that the liquid in the container enters the column body 200 through the notch. The inner column is generally matched with a container for detection, namely, the inner column is inserted into the container, so that the liquid in the container is prevented from generating bubbles due to shaking, and the normal detection is prevented from being influenced.
The rim of at least one opening is provided with a notch, in some embodiments, the opening of the cylinder 200 in the container is provided with a notch, namely a fluid infusion port 202, and after the cylinder 200 is inserted into the container, the fluid in the container enters the cylinder through the fluid infusion port 202 (at this time, the ventilation enters directly from the opening at one end of the cylinder, namely, the opening at one end of the cylinder is directly used as a ventilation port). In other embodiments, openings at both ends of the cylinder 200 are provided with notches, specifically, as shown in fig. 1-3, openings of the cylinder 200 are respectively provided with a vent 201 (i.e., an air pressure balancing notch, air is replenished from the vent 201), and a fluid replenishing port 202 (fluid is introduced into the cylinder 200 from the fluid replenishing port 202), after the fluid in the cylinder 200 is transferred, the fluid in the container body 100 (the bottle body 101) enters from one end of the cylinder 200 through the fluid replenishing port 202, at this time, in order to prevent the internal air pressure from decreasing due to the decrease of the volume of the fluid in the container body 100 (the bottle body 101), the air enters from the other end of the cylinder 200 through the vent 201; so that the liquid level in the column 200 is consistent with the liquid level in the device body 100 (bottle body 101), and finally the liquid in the column 200 is kept at a certain liquid level for detection.
The utility model also relates to a container for immunity detection, which comprises a container body 100 for bearing liquid; the device body includes: a bottle mouth 102 for forming an inlet of the body 100 to the outside; the bottle body 101 is used for containing liquid;
the container also comprises an anti-bubble inner column for the container, wherein the inner column is sleeved in the bottle mouth 102 and is abutted against the bottom surface of the container body 100 to form a passage for external liquid to enter the container body 100;
after the liquid in the cylinder 200 is transferred, the liquid in the device body 100 enters from one end of the cylinder 200 through the notch at one end of the cylinder 200, and the air enters from the other end of the cylinder 200 through the opening at the other end; so that the liquid level in the column 200 is consistent with the liquid level in the device body 100, and finally the liquid in the column 200 is maintained at a certain level for detection.
In some embodiments, a gap is provided near each opening, and specifically, as shown in fig. 1-3, a vent 201 (i.e., a gap for balancing air pressure, air is supplied from the vent 201) and a fluid infusion port 202 (fluid is supplied into the cylinder 200 from the fluid infusion port 202) are provided at the opening of the cylinder 200.
In some embodiments, the notch is disposed near the edge of the container body 100, i.e., the vent 201 and/or the fluid infusion port 202 is disposed near the edge of the container body, so as to facilitate fluid infusion and air infusion.
In some embodiments, the mouth 102 extends along the edge of the container body 100 away from the center of the container body 100, that is, as shown in fig. 1 and 2, in some embodiments, the mouth 102 protrudes from the container body 101 to form an extension 1021, which can facilitate the pouring of liquid and/or air; in addition, the extension portion 1021 can prevent the external environment from affecting the inside of the bottle body 101.
Example two
The utility model relates to a container for immunity detection, which comprises a container body 100 for bearing liquid, wherein the liquid can be reagent, sample or mixture of the reagent and the sample; the device body 100 includes:
a bottle mouth 102 for forming an inlet of the body 100 to the outside; i.e., liquid and/or air enters the body 100 through the mouth 102;
an inner column, which is sleeved in the bottle mouth 102 and is abutted against the bottom surface of the container body 100, for forming a passage for external liquid to enter the container body 100; an inner column is plugged into the bottle mouth 102, so that the liquid space in the inner column (the column body 200) is prevented from generating bubbles due to shaking;
the two ends of the inner column are respectively provided with an air vent 201 (namely, an air pressure balance gap, air is supplied from the air vent 201) and a liquid supplementing port 202 (liquid enters the column body 200 from the liquid supplementing port 202), when the liquid in the column body 200 is transferred, the liquid in the bottle body 101 enters from one end of the column body 200 through the liquid supplementing port 202, and at the moment, in order to prevent the liquid volume in the bottle body 101 from being reduced and the internal air pressure from being reduced, the air enters from the other end of the column body 200 through the air vent 201; so that the liquid level in the column 200 is consistent with the liquid level in the bottle body 101, and finally the liquid in the column 200 is kept at a certain liquid level for detection.
It should be understood that the vent 201 is a notch provided near the opening on the cylinder 200 as shown in fig. 3; when the vent 201 is a notch arranged near the opening of the main body 200, the air supply operation is more convenient to implement.
It should be understood that the fluid infusion port 202 at the end of the cylinder 200 extending into the body 100 is a notch provided near the opening of the main body 200 to facilitate fluid inflow, since the inner column abuts the bottom of the body 100.
In some embodiments, the spout 102 is disposed proximate an edge of the body 100; by arranging the bottle mouth 102 at the edge, liquid supplementing and gas filling are facilitated.
In some embodiments, the mouth 102 extends along the edge of the body 101 away from the center of the body 101, that is, as shown in fig. 1 and 2, in some embodiments, the mouth 102 protrudes from the body 101 to form an extension 1021, which can facilitate the pouring of liquid and/or air; in addition, the extension portion 1021 can prevent the external environment from affecting the inside of the main body 100.
In some embodiments, the portion of the bottle mouth 102 extending out of the body 100 further includes a plurality of threads, i.e. the extension 1021 is further provided with a plurality of threads 1022, so as to cooperate with other sealing devices to seal the body 100, so as to ensure the sealing performance of the body 100 and prevent the body 100 from being contaminated.
The size, shape and/or number of the inlets of the vent 201 and the fluid infusion port 202 can be set to any value/any shape. In some embodiments, vent 201 is the same size as the inlet of fluid infusion port 202, and it should be understood that the same size of inlet means that the vent inlet area of the vent is the same as the fluid infusion inlet area of the fluid infusion port (i.e., only limited area, without limitation to shape, contour, etc.) to ensure that the venting and fluid infusion are maintained at substantially synchronous rates to maintain as proportional a fluid level in the inner column to a fluid level in the container body 100 as possible. The fluid infusion port 202 can be arranged at any position of the inner column close to the bottom surface of the device body 100; in some embodiments, fluid infusion port 202 abuts the bottom surface of body 100 to reduce the restriction on the amount of fluid in body 100, ensuring that fluid can flow into the interior of the inner column whenever fluid is present in body 100.
The vent 201 is arranged at any position of the inner column far away from the bottom surface of the device body 100; in some embodiments, the vent 201 is disposed at the edge of the inner column to facilitate the supply of air to the interior of the inner column.
The vent 201 and the fluid infusion port 202 can be arranged on the same straight line; in some embodiments, the vent 201 and the fluid infusion port 202 are located on two parallel straight lines to minimize interference between the vent 201 and the fluid infusion port 202, i.e. the interference between the vent 201 and the fluid infusion port is small when the vent and the fluid infusion are performed.
The inner column can be set to any shape, and for convenience of processing and reduction of influence of shape and the like on ventilation and fluid infusion of the inner column, the inner column can be set to be a column body 200. When the inner column is a cylinder, the inner column can be set to be a cylinder 200 with uniform size, or the inner column can be set to be a cylinder 200 with non-uniform caliber; for example, in some embodiments, the diameter of the inner column near the vent 201 is smaller than the diameter of the inner column near the fluid infusion port 202, i.e., the vent rate is controlled by a small-diameter vent inlet to slowly adjust the height of the fluid level in the inner column and the fluid level in the bottle body 101.
The utility model discloses still relate to a biochemical analyzer, including the analysis appearance body, still include the container that is used for immunodetection in embodiment one, embodiment two, this ware body 100 is arranged in the analysis appearance body in order to detect, the analysis.
The embodiments in the present specification are described in a progressive manner, and the same and similar parts among the embodiments are referred to each other, and each embodiment focuses on the differences from the other embodiments. In particular, for the system embodiment, since it is substantially similar to the method embodiment, the description is simple, and for the relevant points, reference may be made to the partial description of the method embodiment.

Claims (10)

1. The bubble-proof inner column for the container is characterized by comprising a hollow column body, wherein two ends of the column body are respectively provided with an opening, and the edge of at least one opening is provided with a notch so that liquid in the container can enter the column body through the notch.
2. A container for immunoassay, comprising a body for carrying a liquid; characterized in that, the ware body includes: the bottle mouth is used for forming an inlet for communicating the container body with the outside;
the container further comprises an inner column which is used for preventing bubbles and used for the container as claimed in claim 1, wherein the inner column is sleeved in the bottleneck and abuts against the bottom surface of the container body so as to form a passage for external liquid to enter the container body;
after the liquid in the column body is transferred, the liquid in the device body enters from one end of the column body through the notch at one end of the column body, and air enters from the other end of the column body through the opening at the other end of the column body; so that the liquid level in the column is the same as the liquid level in the vessel body.
3. The container for immunoassay of claim 2, wherein a notch is provided adjacent each of said openings.
4. A container for immunoassay according to claim 2 or 3, wherein said notch is provided near the edge of said body.
5. The container for immunoassay according to claim 2 or 3, wherein said mouth extends along an edge of said body away from a center of said body.
6. A container for immunoassay, comprising a body for carrying a liquid; characterized in that, the ware body includes:
the bottle mouth is used for forming an inlet for communicating the container body with the outside;
the inner column is sleeved in the bottleneck and abutted against the bottom surface of the device body so as to form a channel for external liquid to enter the device body;
the two ends of the inner column are respectively provided with an air vent and a liquid supplementing port, when the liquid in the inner column is transferred, the liquid in the device body enters from one end of the inner column through the liquid supplementing port, and air enters from the other end of the inner column through the air vent; so that the liquid level in the inner column is consistent with the liquid level in the device body.
7. The container for immunoassay according to claim 6, wherein said fluid infusion port abuts against a bottom surface of said container body.
8. The container for immunoassay of claim 6, wherein said vent is disposed at a rim of said inner column.
9. The container for immunoassay according to claim 6, wherein a diameter of said inner column on a side close to said vent port is smaller than a diameter of said inner column on a side close to said fluid replacement port.
10. A biochemical analyzer comprising an analyzer body, characterized by further comprising the container for immunoassay according to any one of claims 2 to 5 and 6 to 9, the analyzer body being disposed in the analyzer body for detection and analysis.
CN202122976605.2U 2021-11-30 2021-11-30 Container is with interior post of anti-bubble, container, biochemical analysis appearance that are used for immunodetection Active CN218121997U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122976605.2U CN218121997U (en) 2021-11-30 2021-11-30 Container is with interior post of anti-bubble, container, biochemical analysis appearance that are used for immunodetection

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122976605.2U CN218121997U (en) 2021-11-30 2021-11-30 Container is with interior post of anti-bubble, container, biochemical analysis appearance that are used for immunodetection

Publications (1)

Publication Number Publication Date
CN218121997U true CN218121997U (en) 2022-12-23

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CN202122976605.2U Active CN218121997U (en) 2021-11-30 2021-11-30 Container is with interior post of anti-bubble, container, biochemical analysis appearance that are used for immunodetection

Country Status (1)

Country Link
CN (1) CN218121997U (en)

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