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Autonomous Microfluidic Capillary Network for on Chip Detection of Chemiluminescence

机译:用于化学发光的芯片检测的自主微流体毛细管网络

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This work reports on the design, simulation and fabrication of an autonomous microfluidic network. It is a part of a highly integrated, new analytical platform for the multiparametric detection of bio-organic molecules in extra-terrestrial environment. The proposed microfluidic system, made in SU-8 3050, allows to obtain an autonomous microfluidic network able to have simultaneous capillary filling and fresh solution into each site of detection avoiding cross-contamination among different sites. Computational Fluid Dynamics (CFD) simulations have been carried in order to verify the proper operation of the designed microfluidic network and to optimize it. Technological processes have been refined and adapted in order to ensure good adhesion, using low-temperature and low-pressure bonding avoiding the risk of breaking the glass slides. Experiments have been conducted to verify the autonomous capillary filling of the entire network and its rinsing with buffer solution. The experimental results are in good agreement with the simulations.
机译:这项工作报告了自主微流体网络的设计,仿真和制造。它是高度集成的新分析平台的一部分,用于陆地环境中的生物有机分子的多分析。在SU-8 3050中制备的所提出的微流体系统允许获得能够将同时毛细血管填充物和新鲜溶液具有同时毛细血管填充物和新鲜溶液的检测中的每种位置。避免不同部位之间的交叉污染。已经携带计算流体动力学(CFD)模拟,以验证设计的微流体网络的适当操作并优化它。技术过程已被精制和调整,以确保使用低温和低压键合的良好粘合,避免破坏玻璃载玻片的风险。已经进行了实验以验证整个网络的自主毛细血管填充及其用缓冲溶液漂洗。实验结果与模拟吻合良好。

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