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Simple density-based particle separation in a microfluidic chip

机译:微流控芯片中基于密度的简单粒子分离

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We investigate the behaviour of a simple microfluidic device designed to separate particles based on density. The device consists of a separation-channel with three inlet and two outlet channels. The particle samples were loaded in the middle of the main channel. The results of separation experiments using model particles provide clear evidence that this approach can be used to achieve good separation of particles of close density populations. Particle separation was found more favourable with low flow rates. Forces exerted on particles were modelled by Stokes' law and found to be consistent with experimental results. One advantage of this microfluidic system is low exposure of the sample to hydrodynamic shear stresses compared with conventional methods. This device may be adopted to precisely handle single cells and easily interface with other tools and separation techniques.
机译:我们研究了一种简单的微流控设备的行为,该设备旨在根据密度分离颗粒。该设备由一个带有三个入口通道和两个出口通道的分离通道组成。颗粒样品被装载在主通道的中间。使用模型颗粒进行分离实验的结果提供了明确的证据,表明该方法可用于良好分离密度较高的种群的颗粒。发现在低流速下颗粒分离更有利。斯托克斯定律对施加在粒子上的力进行了建模,发现与实验结果一致。与常规方法相比,这种微流体系统的一个优点是样品对流体动力剪切应力的暴露较低。该设备可用于精确处理单个细胞,并轻松与其他工具和分离技术对接。

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