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High-yield blood plasma separation by modulating inertial migration in a contraction-expansion array microchannel

机译:通过调节收缩膨胀阵列微通道中的惯性迁移来高产血浆分离

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We report contraction-expansion array (CEA) microchannels for high-yield blood plasma separation utilizing differential inertial migration. An abrupt change of the cross-sectional area curves fluid streams and accelerates the flow velocity, which induces Dean flow. Utilizing the balance between inertial lift force and Dean drag force, we were able to separate blood plasma from human whole blood with a level of 62.2% yield. The CEA microfluidic device is easy to fabricate in a single layer fabrication process and expected to be useful for a simple blood plasma extraction on a chip with high-yield.
机译:我们报告了利用差分惯性迁移的高产血浆分离的收缩 - 膨胀阵列(CEA)微通道。 横截面积曲线流体流的突然变化并加速流速,诱导院长流动。 利用惯性提升力和院长拖曳力之间的平衡,我们能够将血浆从人体血液中分离,水平为62.2%的产量。 CEA微流体装置易于在单层制造过程中制造,并且预期可用于高产芯片上的简单血浆萃取。

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