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Voltage Transfer Functions for in-Vitro Cell Stimulation: A Computational Study

机译:用于体外细胞刺激的电压传递函数:计算研究

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A computational study is conducted to obtain voltage transfer functions for in-vitro cell stimulation in a microchamber. Electrode-electrolyte interface impedances have been considered together with the natural frequency response due to a typical cell structure. The model shows that electric field stimulation has a peak at about 1 MHz and cell membrane receives the highest level of the electric field at this peak. This result is can be used to optimize voltage and frequency in in-vitro stimulation.
机译:进行计算研究以获得微芯片中的体外细胞刺激的电压传递函数。由于典型的电池结构,电极电解质界面阻抗已与自然频率响应一起考虑。该模型表明,电场刺激在约1MHz的峰值处具有约1MHz,并且细胞膜在该峰值处接收电场的最高水平。该结果可用于优化体外刺激的电压和频率。

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