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Analytical and Numerical Modeling Methods for Electrochemical Impedance Analysis of Single Cells on Coplanar Electrodes

机译:共面电极上单电池电化学阻抗分析的分析和数值建模方法

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摘要

Impedance measurements provide basic electrical properties and are used to analyze the characteristics of electrochemical materials for biomedical applications. The extracellular fluid (ECF) in microfluidic devices greatly affects the accuracy of impedance measurements of cells. When a single cell is placed in large amounts of ECF, the electric current mostly passes through the ECF, not the cell. Hence, this work presents a modeling method that is demonstrated in numerical and analytical solutions for eliminating the effect of ECF in coplanar impedance sensors. The proposed modeling method uses fundamental formulas of circuits that include the electrical parameters of the ECF, cytoplasm, and cell membrane. Equivalent circuit models for the coplanar impedance sensor are established to simulate the impedance as well as the measured ones for excitation frequencies in the range of 11–101 kHz. According to the calculation result using the proposed modeling method, the cytoplasm resistance, membrane capacitance, medium resistance, and medium capacitance of HeLa (human cervix adenocarcinoma) cell are 13.5 k?, 122.6 pF, 27.9 k?, and 337.7 pF, respectively. Moreover, the electric current distribution in the coplanar impedance sensor is investigated using finite element method (FEM) simulation software. The variation in the impedance during measurements with the simultaneous application of an alternating-current (AC) voltage amplitude of 0.4 V_(pp) in the fluid volume range of 9–144 μL is also studied.
机译:阻抗测量提供基本的电性能,并用于分析生物医学应用中电化学材料的特性。微流控设备中的细胞外液(ECF)极大地影响了细胞阻抗测量的准确性。当单个电池放置在大量ECF中时,电流大部分流经ECF,而不是电池。因此,这项工作提出了一种建模方法,该方法已在数值和解析解决方案中得到证明,以消除ECF在共面阻抗传感器中的影响。提出的建模方法使用电路的基本公式,其中包括ECF,细胞质和细胞膜的电参数。建立共面阻抗传感器的等效电路模型,以模拟阻抗以及在11–101 kHz范围内的激励频率下测得的阻抗。根据使用所提出的建模方法的计算结果,HeLa(人宫颈腺癌)细胞的细胞质抗性,膜电容,中抗性和中抗性分别为13.5kΩ,122.6pF,27.9kΩ和337.7pF。此外,使用有限元方法(FEM)仿真软件研究了共面阻抗传感器中的电流分布。还研究了在9–144μL的流体体积范围内同时施加0.4 V_(pp)的交流(AC)电压幅度进行测量期间的阻抗变化。

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