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Design of micropillar array for cell capture

机译:用于细胞捕获的微柱阵列设计

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Micropillar based fluidic chip is an attractive platform for cell isolation, capture and detection. This paper is focused on the design of micropillar array. Its flow situation is simulated by using finite element analysis method. The relationships between the geometry and arrangement of micropillars in the array and the distribution of fluid velocity, shear stress, dynamic pressure which have to be accorded to the cell migration and capture are studied. An optimized water drop shape is obtained for micropillar design. In addition, a silicon micropillar array is proposed to be fabricated with surface functionalization for actin capture.
机译:基于微柱的流体芯片是用于细胞分离,捕获和检测的有吸引力的平台。本文着重于微柱阵列的设计。使用有限元分析方法模拟了其流动情况。研究了微柱在阵列中的几何形状和排列与流体速度,剪切应力,动压力的分布之间的关系,这些关系必须符合细胞的迁移和捕获。为微柱设计获得了优化的水滴形状。另外,提出了一种具有表面功能化以捕获肌动蛋白的硅微柱阵列。

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