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A novel, compact and efficient microchannel arrangement with multiple hydrodynamic effects for blood plasma separation

机译:一种新颖,紧凑,高效的微通道装置,具有多种流体动力学作用,可用于血浆分离

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摘要

Separating plasma from blood using a microfluidic platform is favored and beneficial in point-of-care diagnostics. This paper presents a microdevice enabling blood plasma separation. In the present work, the microfluidic channel was innovatively designed in such a way that a combination of effects such as Fahraeus effect, bifurcation law, cell-free region, centrifugal action, and constriction-expansion is utilized together for skimming plasma from human blood. Microdevices were designed and fabricated using PDMS (poly-di-methyl siloxane), which is a bio-compatible material. The results obtained are extremely encouraging in terms of separation efficiency. Separation efficiency of almost 100 % has been achieved at moderate hematocrit contents of around 20 %. The separation efficiency for undiluted blood (hematocrit of 45 %) is around 80 %. This microdevice is free from clogging issues that are usually encountered in blood plasma separation devices.
机译:使用微流控平台从血液中分离血浆在即时诊断中是有利的,也是有益的。本文介绍了一种能够实现血浆分离的微型设备。在当前的工作中,微流控通道的创新设计是将费氏效应,分叉定律,无细胞区域,离心作用和收缩-扩张等效应组合在一起用于从人血中提取血浆。使用PDMS(聚二甲基硅氧烷)设计和制造微设备,PDMS是一种生物相容性材料。就分离效率而言,所获得的结果令人鼓舞。在中度血细胞比容约为20%的情况下,分离效率几乎达到100%。未稀释血液(血细胞比容为45%)的分离效率约为80%。该微型设备没有血浆分离设备通常遇到的堵塞问题。

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