用于高通量分析的微米级颗粒的片上高速分选。

D Holmes, M E Sandison, N G Green, H Morgan
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引用次数: 52

摘要

提出了一种新的颗粒分选芯片设计方案。该装置采用介电栅,使粒子高速偏转到两个微流体通道中的一个。该装置的工作原理是利用介电泳聚焦将颗粒聚焦到主要流动通道的中心流线中。在分选接点(T型或y型接点),两组电极产生一个小的介电泳力,推动颗粒进入一个或另一个出口通道,在压力驱动的流体流动下,颗粒被带到出口。对于40微米宽高的通道,表明6微米直径的颗粒可以以300/s的速率偏转。全自动分选装置的原理是通过分离荧光和非荧光乳胶珠来证明的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On-chip high-speed sorting of micron-sized particles for high-throughput analysis.

A new design of particle sorting chip is presented. The device employs a dielectrophoretic gate that deflects particles into one of two microfluidic channels at high speed. The device operates by focussing particles into the central streamline of the main flow channel using dielectrophoretic focussing. At the sorting junction (T- or Y-junction) two sets of electrodes produce a small dielectrophoretic force that pushes the particle into one or other of the outlet channels, where they are carried under the pressure-driven fluid flow to the outlet. For a 40 microm wide and high channel, it is shown that 6 microm diameter particles can be deflected at a rate of 300/s. The principle of a fully automated sorting device is demonstrated by separating fluorescent from non-fluorescent latex beads.

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