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PNAS Plus: Broken flow symmetry explains the dynamics of small particles in deterministic lateral displacement arrays

机译:PNAS Plus:破碎的流动对称性解释了确定性横向位移阵列中小颗粒的动力学

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摘要

Deterministic lateral displacement (DLD) is a technique for size fractionation of particles in continuous flow that has shown great potential for biological applications. Several theoretical models have been proposed, but experimental evidence has demonstrated that a rich class of intermediate migration behavior exists, which is not predicted. We present a unified theoretical framework to infer the path of particles in the whole array on the basis of trajectories in a unit cell. This framework explains many of the unexpected particle trajectories reported and can be used to design arrays for even nanoscale particle fractionation. We performed experiments that verify these predictions and used our model to develop a condenser array that achieves full particle separation with a single fluidic input.
机译:确定性侧向位移(DLD)是一种用于连续流动中的颗粒尺寸分级分离的技术,已显示出巨大的生物应用潜力。已经提出了几种理论模型,但是实验证据表明存在大量的中间迁移行为,这是无法预测的。我们提出了一个统一的理论框架,根据单位晶格中的轨迹来推断整个阵列中粒子的路径。该框架解释了许多意外的颗粒轨迹,可用于甚至纳米级颗粒分离的阵列设计。我们进行了验证这些预测的实验,并使用我们的模型开发了一种冷凝器阵列,该冷凝器阵列可通过单个流体输入实现完全的颗粒分离。

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