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Simulation of an integrated microfluidic device for bioparticle wash, separation and concentration

机译:用于生物颗粒洗涤,分离和浓缩的集成微流控设备的仿真

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摘要

Washing, separation and concentration of bioparticles are key operations for many biological and chemical analyses. In this study, the simulation of an integrated microfluidic device is studied. The proposed device has the capability to wash the bioparticles (transferring the bioparticles from one buffer solution to another), to separate the particles based on their dielectric properties and to concentrate the bioparticles. Washing and concentration of bioparticles are performed by acoustophoresis and the separation is performed by dielectrophoresis. For simulating the flow within the microchannel, a computational fluid dynamics model using COMSOL Multiphysics software is implemented. In order to simulate the particle trajectories under ultrasonic and electric field, point-particle assumption is chosen using MATLAB software. To account for the size variation of the bioparticles, particles with normal size distributions are used in-side the microchannel. The effect of the key design parameters such as flow rate, applied voltage etc. on the performance of the device is discussed. Copyright © 2013 by ASME.
机译:生物颗粒的洗涤,分离和浓缩是许多生物学和化学分析的关键操作。在这项研究中,研究了集成的微流控设备的仿真。所提出的装置具有洗涤生物颗粒(将生物颗粒从一种缓冲溶液转移到另一种缓冲溶液中),基于其介电性质分离颗粒以及浓缩生物颗粒的能力。通过声电泳进行生物粒子的洗涤和浓缩,并且通过介电泳进行分离。为了模拟微通道内的流动,使用COMSOL Multiphysics软件实现了计算流体动力学模型。为了模拟超声和电场下的粒子轨迹,使用MATLAB软件选择了点粒子假设。为了解决生物颗粒的尺寸变化,在微通道内部使用具有正常尺寸分布的颗粒。讨论了关键设计参数(例如流量,施加的电压等)对设备性能的影响。 ASME版权所有©2013。

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