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Design strategy of electrode patterns based on finite element analysis in microfluidic device for Trans-Epithelial Electrical Resistance (TEER) measurement

机译:基于微流体装置有限元分析的电极图案设计策略,用于跨上皮电阻(TEER)测量

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Trans-epithelial electrical resistance (TEER) is a widely used non-invasive and label-free measurement to evaluate the barrier function of mono-layered cells in real-time. However, TEER values depend on distribution of electric current densities generated by a combination of shapes and arrangements of plane electrodes for performing TEER, but until now, there is no systematical analysis of their effects on TEER values, causing less reproducibility. Here, we report a new strategy to design the shapes and arrangements of electrodes to perform TEER in a microfluidic device. To investigate the effects of the electrodes design on TEER values, we analyze the distribution of electric current densities using finite element method and evaluate their uniformity of sensitivity. Our strategy allowed designing several electrode patterns of electrodes combinations, capable of simultaneous cell observation with a microscope and TEER measurements.
机译:跨上皮电阻(TEER)是广泛使用的无侵入性和无标记测量,以实时地评估单层细胞的阻隔功能。 然而,转型值依赖于通过用于执行TEER的平面和平面电极的组合产生的电流密度的分布,但直到现在,没有对其对人权值的影响没有系统分析,从而导致更少的再现性。 在这里,我们报告了一种设计电极的形状和布置以在微流体装置中进行抗体的新策略。 为了研究电极设计对人格值的影响,我们使用有限元方法分析电流密度的分布,评价它们的灵敏度均匀性。 我们的策略允许设计电极组合的几个电极图案,能够用显微镜和彼此进行同时观察。

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