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首页> 外文期刊>Microfluidics and nanofluidics >Hydrodynamic blood plasma separation in microfluidic channels
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Hydrodynamic blood plasma separation in microfluidic channels

机译:微流体通道中的流体动力学血浆分离

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The separation of red blood cells from plasma flowing in microchannels is possible by biophysical effects such as the Zweifach-Fung bifurcation law. In the present study, daughter channels are placed alongside a main channel such that cells and plasma are collected separately. The device is aimed to be a versatile but yet very simple module producing high-speed and high-efficiency plasma separation. The resulting lab-on-a-chip is manufactured using biocompatible materials. Purity efficiency is measured for mussel and human blood suspensions as different parameters, such as flow rate and geometries of the parent and daughter channels are varied. The issues of blood plasma separation at the microscale are discussed in relation to the different regimes of flow. Results are compared with those obtained by other researchers in the field of micro-separation of blood.
机译:通过生物物理效应(例如Zweifach-Fung分叉定律),可以将红细胞与微通道中流动的血浆分离。在本研究中,子通道与主通道并排放置,以便分别收集细胞和血浆。该设备旨在成为一种通用但非常简单的模块,可实现高速和高效的血浆分离。最终的芯片实验室是使用生物相容性材料制造的。测量贻贝和人类血液悬浮液的纯度效率,因为不同的参数(例如,父通道和子通道的流速和几何形状)会发生变化。讨论了与不同流动方式有关的微量血浆分离问题。将结果与血液微分离领域中其他研究人员获得的结果进行比较。

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