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Electrical Conduction in Biological Tissues: Homogenization Techniques and Asymptotic Decay for Linear and Nonlinear Problems

机译:生物组织中的导电:线性和非线性问题的均质技术和渐近衰减

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We collect some results concerning electrical conduction problems in biological tissues. These problems are set in a finely mixed periodic medium and the unknown electric potentials solve standard elliptic equations set in different conductive regions (the intracellular and extracellular spaces), separated by an interface (the cell membrane), which exhibits both a capacitive and a conductive behavior. As the spatial period of the medium goes to zero, the problems approach a homogenization limit. The macroscopic models are obtained by using the technique of asymptotic expansions, in the case where the conductive behavior of the cell membrane is linear, and by means of two-scale convergence, in the case where, due to its biochemical structure, the cell membrane performs a strongly nonlinear conductive behavior. The asymptotic behavior of the macroscopic potential for large times is investigated, too.
机译:我们在生物组织中收集一些关于电导电问题的结果。这些问题被设置在精细混合的周期性介质中,并且未知电位求解在不同导电区域(细胞内和细胞外空间)中设置的标准椭圆方程,由界面(电池膜)分开,其表现出电容和导电行为。随着媒体的空间周期为零,问题接近均质化限制。通过使用渐近扩展的技术获得宏观模型,在细胞膜的导电行为是线性的情况下,在这种情况下,在这种情况下,在其生物化学结构,细胞膜的情况下执行强烈的非线性导电行为。还研究了大次宏观潜力的渐近行为。

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