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Microfluidic Particle Sorter Employing Flow Splitting and Recombining

机译:利用分流与重组的微流分选机

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This paper describes an improved microfluidic device that enables hydrodynamic particle concentration and size-dependent separation to be carried out in a continuous manner. In our previous study, a method for hydrodynamic filtration and sorting of particles was proposed using a microchannel having multiple branch points and side channels, and it was applied for continuous concentration and separation of polymer particles and cells. In the current study, the efficiency of particle sorting was dramatically improved by geometrically splitting fluid flow from a main stream and recombining. With these operations, particles with diameters larger than a specific value move toward one sidewall in the mainstream. This control of particle positions is followed by the perfect particle alignment onto the sidewall, which increases the selectivity and recovery rates without using a liquid that does not contain particles. In this study, a microchannel having one inlet and five outlets was designed and fabricated. By simply introducing particle suspension into the device, concentrations of 2.1-3.0-(mu)m particles were increased 60-80-fold, and they were collected independently from each outlet. In addition, it was demonstrated that the measured flow rates distributed into each side channel corresponded well to the theoretical values when regarding the microchannel network as a resistive circuit.
机译:本文介绍了一种改进的微流体装置,该装置能够以连续方式进行流体动力颗粒浓缩和尺寸依赖性分离。在我们先前的研究中,提出了一种使用具有多个分支点和侧通道的微通道对颗粒进行流体动力过滤和分选的方法,并将其应用于聚合物颗粒和细胞的连续浓缩和分离。在当前的研究中,通过从主流中分离出几何形状的流体并进行重组,极大地提高了颗粒分类的效率。通过这些操作,直径大于特定值的粒子将向主流中的一个侧壁移动。粒子位置的这种控制之后是在侧壁上的完美粒子对齐,这无需使用不含粒子的液体即可提高选择性和回收率。在这项研究中,设计并制造了具有一个入口和五个出口的微通道。通过将颗粒悬浮液简单地引入装置中,将2.1-3.0-μm颗粒的浓度增加了60-80倍,并且从每个出口独立地收集它们。此外,当将微通道网络视为电阻电路时,已证明分配到每个侧通道的测得流量与理论值非常吻合。

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