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Development of Interdigitated and Chain-Shaped Electrode Array for Electric Cell-Substrate Impedance Sensing

机译:用于电池-基板阻抗传感的叉指和链状电极阵列的开发

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摘要

Interdigitated and chain-shaped electrode (ICE) array was developed for improving the electric cellsubstrate impedance sensing. A newly designed ICE with a sensing area of 0.12 to 0.88 mm(2), and finger width and spacing of 20 mu m was fabricated. An equivalent circuit model was used to characterize the measured impedance spectra, and the circuit parameters extrapolated by fitting in the equivalent circuit model of the measured spectra were analyzed during the cell cultivation on the ICE. During the cell growth, the real part of the impedance was increased in the frequency range of 100 Hz to 220 kHz. The resistance measurement sensitivity of the cells on the ICE was the highest at a frequency of 46.4 kHz, and it increased with decrease in the electrode sensing area.
机译:叉指和链状电极(ICE)阵列的开发是为了改善电基体的阻抗传感。一种新设计的ICE,其感应面积为0.12至0.88 mm(2),手指宽度和间距为20μm。使用等效电路模型来表征测得的阻抗谱,并在ICE上进行细胞培养的过程中,分析通过拟合到测得谱的等效电路模型中推断出的电路参数。在细胞生长期间,阻抗的实部在100 Hz至220 kHz的频率范围内增加。 ICE上电池的电阻测量灵敏度在46.4 kHz的频率下最高,并且随着电极感应面积的减小而增加。

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