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A Numerical Simulation of Cell Separation by Simplified Asymmetric Pinched Flow Fractionation

机译:简化的非对称收缩流分离分离细胞的数值模拟

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摘要

As a typical microfluidic cell sorting technique, the size-dependent cell sorting has attracted much interest in recent years. In this paper, a size-dependent cell sorting scheme is presented based on a controllable asymmetric pinched flow by employing an immersed boundary-lattice Boltzmann method (IB-LBM). The geometry of channels consists of 2 upstream branches, 1 transitional channel, and 4 downstream branches (D-branches). Simulations are conducted by varying inlet flow ratio, the cell size, and the ratio of flux of outlet 4 to the total flux. It is found that, after being randomly released in one upstream branch, the cells are aligned in a line close to one sidewall of the transitional channel due to the hydrodynamic forces of the asymmetric pinched flow. Cells with different sizes can be fed into different downstream D-branches just by regulating the flux of one D-branch. A principle governing D-branch choice of a cell is obtained, with which a series of numerical cases are performed to sort the cell mixture involving two, three, or four classes of diameters. Results show that, for each case, an adaptive regulating flux can be determined to sort the cell mixture effectively.
机译:作为一种典型的微流体细胞分选技术,近年来,尺寸依赖性细胞分选引起了人们的极大兴趣。在本文中,提出了一种基于尺寸依赖性的细胞分选方案,该方案基于可控的不对称收缩流,采用浸没边界格子玻尔兹曼方法(IB-LBM)。通道的几何结构包括2个上游分支,1个过渡通道和4个下游分支(D分支)。通过改变入口流量比,孔的大小以及出口4的通量与总通量之比来进行模拟。已发现,由于不对称收缩流的流体动力,细胞在一个上游分支中随机释放后,在靠近过渡通道一个侧壁的直线上排列。只需调节一个D分支的通量,即可将大小不同的细胞供入不同的下游D分支。获得了控制单元格的D分支选择的原理,利用该原理执行一系列的数值案例来对涉及两种,三种或四种直径类别的单元格混合物进行分类。结果表明,对于每种情况,可以确定自适应调节通量以有效地分选细胞混合物。

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