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Asymptotic decay under nonlinear and noncoercive dissipative effects for electrical conduction in biological tissues

机译:非线性和非矫顽耗散作用下生物组织中电传导的渐近衰减

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摘要

We study here a problem arising in electrical conduction in biological tissues. From a physical point of view it consists in the study of the\udelectrical currents crossing a living tissue when an electrical potential is applied at the boundary.\udHere the living tissue is regarded as a composite periodic domain made of extracellular and intracellular materials separated by a lipidic membrane which experiments prove to exhibit both conductive (due to ionic channels in the membrane) and capacitive behavior.\udWe study the asymptotic convergence to a periodic steady state of the microscopic and the macroscopic electric potential for large times.\ud\udWe consider here the case where the conductive behavior of the cell membranes is nonlinear and monotone increasing but not coercive.\udIn order to achieve our goal, we proceed via a Liapunov-style technique so that the rate of convergence is not quantified.
机译:我们在这里研究生物组织中电传导中产生的问题。从物理的角度来看,它包括对在边界上施加电势时穿过生物组织的过电流的研究。在这里,生物组织被认为是由细胞外和细胞内物质构成的复合周期域,由\ ud我们研究了渐近渐近收敛到微观和宏观电位的周期性稳态的时间。\ ud \ udWe在此考虑细胞膜的导电行为是非线性且单调增加但不具有矫顽力的情况。\ ud为了实现我们的目标,我们通过Liapunov样式技术进行操作,以使收敛速度无法量化。

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