Copyright © 2006 The Biophysical SocietyJournal ArticleDetailed ionic models of cardiac cells are difficult for numerical simulations because they consist of a large number of equations and contain small parameters. The presence of small parameters, however, may be used for asymptotic reduction of the models. Earlier results have shown that the asymptotics of cardiac equations are nonstandard. Here we apply such a novel asymptotic method to an ionic model of human atrial tissue to obtain a reduced but accurate model for the description of excitation fronts. Numerical simulations of spiral waves in atrial tissue show that wave fronts of propagating action potentials break up and self-terminate. Our model, in particular, yields a simple analy...
available at the end of the article This paper analyzes a new semiphysiological ionic model, used re...
Wave propagation around various geometric expansions, structures, and obstacles in cardiac tissue ma...
We used numerical solutions for cable equations representing nonuniform cardiac strands to investiga...
AbstractDetailed ionic models of cardiac cells are difficult for numerical simulations because they ...
Detailed ionic models of cardiac cells are difficult for numerical simulations because they consist ...
We consider applications of a recently suggested new asymptotic approach to detailed ionic models o...
Copyright © 2006 The Royal SocietyJournal ArticleWe analyse small parameters in selected models of b...
We describe an asymptotic approach to gated ionic models of single-cell cardiac excitability. It has...
The original publication is available at www.springerlink.com - http://link.springer.com/article/10....
Summary. We report a three-variable simplied model of excitation fronts in hu-man atrial tissue. The...
We report a three-variable simplified model of excitation fronts in human atrial tissue. The model i...
We extend a non-Tikhonov asymptotic embedding, proposed earlier, for calculation of conduction veloc...
The electrical coupling between myocytes and fibroblasts and the spacial distribution of fibroblasts...
Copyright © Springer 2011Journal ArticleThe original publication is available at www.springerlink.co...
Atrial fibrillation (AF) is the most common sustained arrhythmia encountered in clinical practice. ...
available at the end of the article This paper analyzes a new semiphysiological ionic model, used re...
Wave propagation around various geometric expansions, structures, and obstacles in cardiac tissue ma...
We used numerical solutions for cable equations representing nonuniform cardiac strands to investiga...
AbstractDetailed ionic models of cardiac cells are difficult for numerical simulations because they ...
Detailed ionic models of cardiac cells are difficult for numerical simulations because they consist ...
We consider applications of a recently suggested new asymptotic approach to detailed ionic models o...
Copyright © 2006 The Royal SocietyJournal ArticleWe analyse small parameters in selected models of b...
We describe an asymptotic approach to gated ionic models of single-cell cardiac excitability. It has...
The original publication is available at www.springerlink.com - http://link.springer.com/article/10....
Summary. We report a three-variable simplied model of excitation fronts in hu-man atrial tissue. The...
We report a three-variable simplified model of excitation fronts in human atrial tissue. The model i...
We extend a non-Tikhonov asymptotic embedding, proposed earlier, for calculation of conduction veloc...
The electrical coupling between myocytes and fibroblasts and the spacial distribution of fibroblasts...
Copyright © Springer 2011Journal ArticleThe original publication is available at www.springerlink.co...
Atrial fibrillation (AF) is the most common sustained arrhythmia encountered in clinical practice. ...
available at the end of the article This paper analyzes a new semiphysiological ionic model, used re...
Wave propagation around various geometric expansions, structures, and obstacles in cardiac tissue ma...
We used numerical solutions for cable equations representing nonuniform cardiac strands to investiga...