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Three-dimensional hydrodynamic focusing with a single sheath flow in a single-layer microfluidic device

机译:单层微流控装置中具有单鞘流的三维流体动力聚焦

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摘要

We report a contraction-expansion array (CEA) microchannel that allows three-dimensional hydrodynamic focusing with a single sheath flow in a single-layer device. The CEA microchannel exploits centrifugal forces acting on fluids travelling along the contraction and expansion regions of the microchannel. Around an entrance of the contraction region, the centrifugal forces induce a secondary flow field where two counter-rotating vortices enable to envelop a sample flow with a sheath flow in three dimensions. We herein describe an underlying principle and a design of the CEA microchannel and demonstrate complete sheathing of a sample fluid (water and human red blood cells) in three dimensions. The focusing characteristics of the CEA microchannel arc investigated in terms of the number of the rectangular structures, flow rate, and flow ratio between sample and sheath flows. This microfluidic channel for three-dimensional hydrodynamic focusing is easy to fabricate in a single-layer fabrication process and simple to operate with a single sheath flow.
机译:我们报告了收缩-扩张阵列(CEA)微通道,该通道允许在单层设备中使用单鞘流进行三维流体动力学聚焦。 CEA微通道利用了作用在沿微通道的收缩和膨胀区域传播的流体上的离心力。在收缩区域的入口周围,离心力产生了一个次级流场,在这里,两个反向旋转的涡流能够将样品流与三维的鞘流包裹在一起。我们在本文中描述了CEA微通道的基本原理和设计,并演示了三维三维示例流体(水和人类红细胞)的完全包裹。 CEA微通道电弧的聚焦特性根据矩形结构的数量,流速以及样品和鞘流之间的流率进行了研究。这种用于三维流体动力聚焦的微流体通道易于在单层制造过程中制造,并且易于通过单鞘流进行操作。

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