三维微泡流流中大小相关的粒子迁移和捕获

Andreas Volk, M. Rossi, Bhargav Rallabandi, C. Kaehler, S. Hilgenfeldt, A. Marin
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引用次数: 4

摘要

声学驱动的无基气泡可以作为操纵微粒子、囊泡和细胞的工具。在这项工作中,我们通过声学驱动的无柄半圆柱形微泡,实验证明了有限尺寸的微粒子在三维空间中以高再现性向特定空间位置进行尺寸敏感迁移和捕获。粒子轨迹通过粒子在稳定的三维流场中的被动平流成功地再现,并在限制边界上增加了体积排除。对于不同粒径的颗粒,这种体积排斥机制导致了三种性质不同的迁移行为,这表明在三维空间中颗粒的分离、捕获和分选的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Size-dependent particle migration and trapping in three-dimensional microbubble streaming flows
Acoustically actuated sessile bubbles can be used as a tool to manipulate microparticles, vesicles and cells. In this work, using acoustically actuated sessile semi-cylindrical microbubbles, we demonstrate experimentally that finite-sized microparticles undergo size-sensitive migration and trapping towards specific spatial positions in three dimensions with high reproducibility. The particle trajectories are successfully reproduced by passive advection of the particles in a steady three-dimensional streaming flow field augmented with volume exclusion from the confining boundaries. For different particle sizes, this volume exclusion mechanism leads to three regimes of qualitatively different migratory behavior, suggesting applications for separating, trapping, and sorting of particles in three dimensions.
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