用于血液制备的一体化生物医学装置

M. Kersaudy-Kerhoas, D. Kavanagh, Xiangdong Xue, M. Patel, C. Bailey, R. Dhariwal, M. Desmulliez
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引用次数: 6

摘要

红细胞与血浆在微通道中的分离是通过生物物理效应如轴向迁移效应和茨威法赫-冯分岔定律实现的。在本研究中,子通道放置在主通道旁边,分别收集细胞和血浆。在主微通道中增加的收缩产生了局部高剪切力区域,迫使细胞向通道中心迁移和集中。由此产生的芯片实验室是用生物相容性材料制造的。考察了贻贝和人血混悬液在流速和母、子通道几何形状等参数变化时的纯度效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrated biomedical device for blood preparation
The separation of red blood cells from plasma flowing in microchannels is possible by bio-physical effects such as an axial migration effect and Zweifach-Fung bifurcation law. In the present study, subchannels are placed alongside a main channel to collect cells and plasma separately. The addition of a constriction in the main microchannel creates a local high shear force region, forcing the cells to migrate and concentrate towards the centre of the channel. The resulting lab-on-a-chip was manufactured using biocompatible materials. Purity efficiency was measured for mussel and human blood suspensions as different parameters including flow rate and geometries of parent and daughter channels were varied.
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