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High-throughput micron particle circular sorting and concentrating device and manufacturing method thereof

A technology of micron particles and concentrating devices, applied in chemical instruments and methods, laboratory utensils, laboratory containers, etc., can solve the problem of inability to complete real-time detection in analysis time, increased chip bonding requirements, uneven chip flow, etc. problems, to achieve the effect of increasing safety and stability, simple structure and manufacturing process, and saving time

Active Publication Date: 2017-08-08
SOUTHEAST UNIV
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  • Summary
  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This patented new type of fluidics system uses tiny channels that are arranged like helixes or circles around them instead of rectangular boxes. These small spaces allow fluids to pass more easily without being blocked by other things during their passage. They make it easier to sort large numbers of samples quickly while still maintaining its accuracy level. Overall this design makes processing faster and less expensive than previous systems.

Problems solved by technology

Technics: Current techniques involve analyzing tiny objects like microspheres suspended in liquids called slurry. These techniques suffer limitations due to instabilities associated with particle movement and lack of sufficient accuracy. There is an urgent demand for improved devices capable of efficiently separating minute amounts of materials while maintaining accurate results without causing damages to sensitive areas inside the apparatus itself.

Method used

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  • High-throughput micron particle circular sorting and concentrating device and manufacturing method thereof
  • High-throughput micron particle circular sorting and concentrating device and manufacturing method thereof
  • High-throughput micron particle circular sorting and concentrating device and manufacturing method thereof

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Embodiment Construction

[0044] In order to better understand the present invention, the content of the present invention is further described below in conjunction with the embodiments, but the content of the present invention is not limited to the following embodiments.

[0045] working principle:

[0046] When the circulating high-throughput microparticle sorting and concentration device of the present invention sorts and concentrates the sample, the particle suspension placed in the inner outlet solution collection bottle 8 is introduced into the flow distribution joint 2 through the peristaltic pump 1 at a specific flow rate; The flow distribution joint 2 enters each layer of the multi-layer superimposed microfluidic chip 3 at the same flow rate; the micro-particles 22 in the particle suspension will be subjected to the fluid drag force F in the chip 1 due to the parabolic velocity profile23 of the Boxiao lobe flow in the flow channel, the microparticles will be subjected to shear-induced inertial...

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Abstract

The invention discloses a high-throughput micron particle circular sorting and concentrating device and a manufacturing method thereof. The device is connected with an inner discharging solution collection bottle (8), a one-way valve (9), a peristaltic pump (1), a flow allocating joint (2) and a multilayer overlapped microfluidic chip (3) in sequence, wherein the multilayer overlapped microfluidic chip (3) is provided with an extracellular fluid outlet (16) and an intracellular fluid outlet (17) which are connected with an outer discharging solution collection bottle (7) and the inner discharging solution collection bottle (8); moreover, the components are connected through connection hoses (10 to 14). The manufacturing method comprises the following steps: 1) manufacturing the multilayer overlapped microfluidic chip (3); (3) connecting the components through the connection hoses (10 to 14). The method has the advantages of easiness, stable sorting, high throughput and high concentration efficiency, can be used for realizing sorting and concentration of micron-sized biological particles by using a micro-fluid inertial effect, and can be widely applied to medical diagnosis of blood cells and the like and environmental detection of alga living creatures.

Description

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Claims

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Application Information

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Owner SOUTHEAST UNIV
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