微流控
筛子(范畴论)
格子Boltzmann方法
半径
入口
俘获
格子(音乐)
存水弯(水管)
物理
纳米技术
材料科学
化学
机械
组合数学
计算机科学
数学
生物
工程类
机械工程
气象学
计算机安全
声学
生态学
作者
Jingtao Ma,Wenhong Zu,Xiaoying Tang,Yuanqing Xu
标识
DOI:10.1177/0954406220946062
摘要
The capture of cells in a microfluidic device based on U-shaped sieves is numerically investigated by the immersed boundary-lattice Boltzmann method (IB-LBM). The effects of the width of the inlet ( h), the radius of sieves ([Formula: see text]), and the radius of posts ([Formula: see text]) on the efficiency of the device on trapping cells are studied. It is found that a narrower inlet improves the capability of the device to capture cells and promotes the uniform trapping of cells. In addition, the device is not sufficiently efficient in capturing cells when the radius [Formula: see text] is small. By increasing [Formula: see text] gradually, the cells trapped in the device are found to grow up first and then decrease. This can be explained as an optimal size of apertures between posts to induce the cells to enter the sieve, and then the cells can plug up these apertures. Finally, the effects of the post size on the cell-capturing are studied. It is found that more cells can be captured as [Formula: see text] experiences a slight increase, while the capturing efficiency will not improve if continuing to increase [Formula: see text].
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