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Design, realisation and validation of microfluidic stochastic mixers integrable in bioanalytical systems using CFD modeling

机译:使用CFD建模可集成到生物分析系统中的微流随机混合器的设计,实现和验证

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In this work we present the design aspects of special microfluidic structures applicable to dilute and transport analyte solutions (such as whole blood) to the sensing area of biosensors. Our goal is to design and realise a reliable microfluidic system which is applicable for effective sample transport and can accomplish simple sample preparation functions such as mixing to ensure homogeneous concentration distribution of the species along the fluidic channel. The behaviour of different chaotic mixers were analysed by numerical modeling and experimentally to determine their efficiency. At first we used the concentration distribution method, however because of numerical diffusion this required higher mesh resolutions. Using the particle tracing method is more efficient according to the experimental results and requires lower computational effort. The microstructures were realised by micro-fabrication in polydimethylsiloxane (PDMS) and integrated into a real microfluidic transport system. The functional performance was verified by biological analyte.
机译:在这项工作中,我们介绍了适用于将分析物溶液(例如全血)稀释和运输到生物传感器传感区域的特殊微流体结构的设计方面。我们的目标是设计和实现可靠的微流体系统,该系统适用于有效的样品传输,并且可以完成简单的样品制备功能,例如混合,以确保沿流体通道的物质浓度分布均匀。通过数值建模分析不同混沌混合器的行为,并通过实验确定其效率。最初,我们使用浓度分布方法,但是由于数值扩散,因此需要更高的网格分辨率。根据实验结果,使用粒子跟踪方法更有效,并且需要较少的计算量。通过在聚二甲基硅氧烷(PDMS)中进行微制造来实现微结构,并将其集成到实际的微流体传输系统中。通过生物分析物验证了功能性能。

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