Analytical And Numerical Approximation of Effective Diffusivities in The Cytoplasm of Biological Cells
Abstract
The simulation of the metabolism in mammalian cells becomes a severe problem if spatial distributions must be taken into account. Especially the cytoplasm has a very complex geometric structure which cannot be handled by standard discretization techniques. In the present paper we propose a homogenization technique for computing effective diffusion constants. This is accomplished by using a two-step strategy. The first step consists of an analytic homogenization from the smallest to an intermediate scale. The homogenization error is estimated by comparing the analytic diffusion constant with a numerical estimate obtained by using real cell geometries. The second step consists of a random homogenization. Since no analytical solution is known to this homogenization problem, a numerical approximation algorithm is proposed. Although rather expensive this algorithm provides a reasonable estimate of the homogenized diffusion constant.
Keywords
Cite
@article{arxiv.1002.4976,
title = {Analytical And Numerical Approximation of Effective Diffusivities in The Cytoplasm of Biological Cells},
author = {Michael Hanke and Marry-Chriz Cabauatan-Villanueva},
journal= {arXiv preprint arXiv:1002.4976},
year = {2010}
}
Comments
21 pages, 6 figures