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High-Density Microfluidic Particle-Cluster-Array Device for Parallel and Dynamic Study of Interaction between Engineered Particles

机译:高密度微流控粒子簇阵列装置,用于工程粒子间相互作用的并行和动态研究

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摘要

A high-density and high-performance microfluidic particle-cluster-array device utilizing a novel hydrodynamically tunable pneumatic valve (HTPV) is reported for parallel and dynamic monitoring of the interactions taking place in particle clusters. The key concept involves passive operation of the HTPV through elastic deformation of a thin membrane using only the hydrodynamic force inherent in microchannel flows. This unique feature allows the discrete and high-density (approximate to 30 HTPVs mm(-2)) arrangement of numerous HTPVs in a microfluidic channel without any pneumatic connection. In addition, the HTPV achieves high-performance clustering (approximate to 92%) of three different particles in an array format through the optimization of key design and operating parameters. Finally, a contamination-free, parallel, and dynamic biochemical analysis strategy is proposed, which employs a simple one-inlet-one-outlet device operated by the effective combination of several techniques, including particle clustering, the interactions between engineered particles, two-phase partitioning and dehydration control of aqueous plugs, and shape/colorbased particle identification.
机译:报道了一种利用新型流体动力可调气动阀(HTPV)的高密度,高性能微流控粒子簇阵列设备,用于并行和动态监控粒子簇中发生的相互作用。关键概念涉及通过仅使用微通道流中固有的流体动力通过薄膜的弹性变形来使HTPV被动运行。这种独特的功能允许在微流体通道中将多个HTPV离散且高密度(大约30 HTPVs mm(-2))排列,而无需任何气动连接。此外,HTPV通过优化关键设计和操作参数,以阵列形式实现了三种不同颗粒的高性能聚类(大约92%)。最后,提出了一种无污染,并行且动态的生化分析策略,该策略采用一种简单的“一进一出”设备,该设备通过多种技术的有效组合进行操作,包括颗粒聚类,工程颗粒之间的相互作用,两水溶液塞的相分配和脱水控制,以及基于形状/颜色的颗粒识别。

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