Computational and Experimental Investigation of Microfluidic Chamber Designs for DNA Biosensors

S. Psoma, I. Sobianin, A. Tourlidakis
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Abstract

: A critical characteristic for continuous monitoring using DNA biosensors is the design of the microfluidics system used for sample manipulation, effective and rapid reaction and an ultra-low detection limit of the analyte. The selection of the appropriate geometrical design and control of microfluidic parameters are highly important for the optimum performance. In the present study, a number of different shapes of microchambers are designed and computationally assessed using a Multiphysics software. Flow parameters such as pressure drop, and shear rates are compared. Three-dimensional printing was used to construct the designs and an experimental investigation is underway for the validation of the computational results.
DNA生物传感器微流控室设计的计算与实验研究
使用DNA生物传感器进行连续监测的一个关键特征是用于样品操作的微流体系统的设计,有效和快速的反应以及分析物的超低检测限。选择合适的几何设计和控制微流控参数对优化微流控性能至关重要。在本研究中,设计了许多不同形状的微室,并使用Multiphysics软件进行了计算评估。对压降、剪切速率等流动参数进行了比较。采用三维打印技术构建设计,并正在进行实验研究以验证计算结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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