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The Modelling of Cell Membrane Electrodynamics

机译:细胞膜电动力学的建模

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Main electrical processes in cells are defined by membranes. The membrane maintains a biochemical environment inside the cell that differs from the outside one, keeping the electrical potential negative inside the cell and organizing the selective transport across the surface. In the paper, it is attempted to explain the cell membrane electrodynamics using modelling experiments with magnetic dipoles. It is shown that the membrane has a definite symmetry or handenness. In addition, a characteristic mechanism of the excited state physics is given. The modelling experiments have also shown that a membrane with different symmetry can exist. Since the electrical processes in these cases are different, such cells could be dangerous to organisms. The recent knowledge of physical processes in a carbon sheet just of one atom thick and its biophysical aspects are discussed.
机译:细胞中的主要电气过程由膜定义。膜在细胞内部保持生物化学环境,其与外部的电池不同,使电池内的电势负保持在细胞内并组织过表面的选择性传输。在本文中,试图使用磁性偶极的建模实验来解释细胞膜电动动力学。结果表明,膜具有明确的对称性或倾向性。另外,给出了激发态物理的特征机理。建模实验还表明,可以存在具有不同对称性的膜。由于这些情况下的电气过程是不同的,因此这种细胞可能对生物危险。讨论了近期一个原子厚及其生物物理方面的碳板中物理过程的近期知识。

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