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SU-8 microfluidic mixer for use in lab-on-a-chip devices for biological fluids analyses

机译:SU-8微流体混合器,用于芯片实验室设备中的生物流体分析

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This paper describes an easy-to-fabricate and low-cost SU-8 microfluidic mixer suitable for enabling a mixing process based on diffusion. It is developed to be an integrated part of a lab-on-a-chip for measuring the concentration of four biomolecules in urine samples, by optical absorption. The design of the microfluidic system is based on computational fluid dynamics techniques. Mixing and reaction of the components of the process must be simulated by solving the flow and mass transport equation. A good design must guarantee the mixing of the reactants to assure an uniform mixture at the detection zone. The resulting design and the experimental results are supported by numerical simulations, which allow a reliable quantitative analysis of the concentrations after the mixing process. The reduced size, weight and the simultaneous measurement of more than one biomolecule concentration will improve the performance of biological fluids analyses in clinical laboratories and consequently the quality of the medical disgnostic.
机译:本文介绍了一种易于制造且低成本的SU-8微流体混合器,适用于实现基于扩散的混合过程。它被开发为芯片实验室的集成部分,该芯片通过光吸收来测量尿液样品中四种生物分子的浓度。微流体系统的设计基于计算流体动力学技术。必须通过求解流量和质量输运方程来模拟过程中各组分的混合和反应。良好的设计必须保证反应物的混合,以确保检测区域内的混合物均匀。数值模拟可以支持所得的设计和实验结果,从而可以对混合过程后的浓度进行可靠的定量分析。减小的尺寸,重量和同时测量一种以上生物分子的浓度将改善临床实验室中生物液分析的性能,从而改善医学诊断的质量。

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