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High-Throughput Particle Manipulation Based on Hydrodynamic Effects in Microchannels

机译:基于微通道水动力效应的高通量粒子操纵

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摘要

Microfluidic techniques are effective tools for precise manipulation of particles and cells, whose enrichment and separation is crucial for a wide range of applications in biology, medicine, and chemistry. Recently, lateral particle migration induced by the intrinsic hydrodynamic effects in microchannels, such as inertia and elasticity, has shown its promise for high-throughput and label-free particle manipulation. The particle migration can be engineered to realize the controllable focusing and separation of particles based on a difference in size. The widespread use of inertial and viscoelastic microfluidics depends on the understanding of hydrodynamic effects on particle motion. This review will summarize the progress in the fundamental mechanisms and key applications of inertial and viscoelastic particle manipulation.
机译:微流体技术是精确控制颗粒和细胞的有效工具,其富集和分离对于生物学,医学和化学领域的广泛应用至关重要。最近,由微通道内在的流体动力学效应(例如惯性和弹性)引起的横向颗粒迁移已显示出其对高通量和无标记颗粒操纵的希望。可以设计粒子迁移,以基于大小差异实现可控的粒子聚焦和分离。惯性和粘弹性微流体的广泛使用取决于对流体动力学对粒子运动的影响的理解。这篇综述将总结惯性和粘弹性粒子操纵的基本机理和关键应用的进展。

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