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Development of a Novel Micro-Manipulation Device and Its Simulation Using COMSOL

机译:新型微操纵装置的开发及其在COMSOL中的仿真

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The manipulation of particles in fluids using microfluidic devices is a fundamental task in Lab-on-a-Chip applications. Grooved structures have been widely studied in particle handling and fluid mixing in microfluidic channel systems. In this study, we report use of patterning flows produced by a series of grooved surfaces with different geometrical setups integrated into a microfluidic device, to continuously manipulate the flowing particles, ranging from 6 to 20 μm in diameters, of comparable sizes to the depth of the channel. COMSOL, a multiphysics modeling software that can help predict engineering trends, is used to systematically quantify the following parameters: 1) channel depth, 2) groove width, 3) groove depth, 4) groove angle, and 5) flow speed, which may affect the performance of separation for flowing particles inside the channel. The device is fabricated using softlithographic techniques and is composed of inlets, microfluidic channels, and outlets for loading, manipulating and retrieving cell suspensions, respectively. Experimental results indicated that the particles were evenly distributed in the entrance of the microchannel and illustrate patterns of enriching, focusing, or size-selective profiles after passing through the grooved area. The preliminary simulation results also demonstrated that particles tend to bias towards the sidewall after flowing through the grooves.
机译:使用微流控设备处理流体中的颗粒是芯片实验室应用中的一项基本任务。在微流体通道系统中的颗粒处理和流体混合方面,对沟槽结构进行了广泛的研究。在这项研究中,我们报告了使用由一系列具有不同几何设置的沟槽表面产生的图案流,这些沟槽表面被集成到微流体设备中,以连续操纵直径从6到20μm范围不等的流动粒子,其尺寸与这个频道。 COMSOL是一种多物理场建模软件,可以帮助预测工程趋势,用于系统地量化以下参数:1)通道深度,2)凹槽宽度,3)凹槽深度,4)凹槽角度和5)流速,这些参数可能影响通道内流动粒子的分离性能。该设备是使用软光刻技术制造的,由分别用于装载,操纵和回收细胞悬液的进口,微流体通道和出口组成。实验结果表明,颗粒均匀地分布在微通道的入口,并显示了经过开槽区域后的富集,聚焦或尺寸选择轮廓的模式。初步的模拟结果还表明,颗粒在流过凹槽后趋向于偏向侧壁。

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