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Study of Transmembrane Potentials on Cellular Inner and Outer Membrane—Frequency Response Model and Its Filter Characteristic Simulation

机译:细胞内外膜跨膜电位-频率响应模型及其滤波特性模拟

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摘要

Based on the multilayer dielectric model for a spherical cell, a frequency response model of transmembrane potentials on cellular inner and outer membranes is established with a simulating method. The simulating results indicate that transmembrane potential on the inner membrane shows first-order bandpass filter characteristic, while transmembrane potential on the outer membrane shows first-order low-pass filter characteristic approximately. It could be found that the transmembrane potential on the inner membrane is greater than that on the outer membrane, and can keep a higher value in the range from a center frequency to an upper cutoff frequency, which is desirable to induce intracellular electromanipulation. Both a discussion about an equivalent RC model of the cell and the experimental result are in agreement with the aforementioned conclusion. Therefore, the frequency response model could help to choose reasonable window parameters for the application of a nanosecond pulsed electric field to tumor treatment.
机译:基于球形细胞的多层介电模型,利用模拟方法建立了细胞内膜和外膜上跨膜电位的频率响应模型。模拟结果表明,内膜上的跨膜电势表现出一阶带通滤波器的特性,而外膜上的跨膜电势表现出约一阶低通滤波器的特性。可以发现内膜上的跨膜电势大于外膜上的跨膜电势,并且可以在从中心频率到上限频率的范围内保持较高的值,这是诱导细胞内电操纵所希望的。关于电池等效RC模型的讨论和实验结果均与上述结论一致。因此,频率响应模型可以帮助选择合理的窗口参数,以将纳秒脉冲电场应用于肿瘤治疗。

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