Title of article
Numerical simulation of fractional Cable equation of spiny neuronal dendrites
Author/Authors
Sweilam, N.H. Cairo University - Faculty of Science - Department of Mathematics, Egypt , Khader, M.M. Benha University - Faculty of Science - Department of Mathematics, Egypt , Adel, M. Cairo University - Faculty of Science - Department of Mathematics, Egypt
From page
253
To page
259
Abstract
In this article, numerical study for the fractional Cable equation which is fundamental equations for modeling neuronal dynamics is introduced by using weighted average of finite difference methods. The stability analysis of the proposed methods is given by a recently proposed procedure similar to the standard John von Neumann stability analysis. A simple and an accurate stability criterion valid for different discretization schemes of the fractional derivative and arbitrary weight factor is introduced and checked numerically. Numerical results, figures, and comparisons have been presented to confirm the theoretical results and efficiency of the proposed method.
Keywords
Weighted average finite difference , approximations , Fractional Cable equation , John von Neumann stability analysis
Journal title
Journal of Advanced Research
Journal title
Journal of Advanced Research
Record number
2589938
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