We report a three-variable simplified model of excitation fronts in human atrial tissue. The model is derived by novel asymptotic techniques \new{from the biophysically realistic model of Courtemanche et al (1998) in extension of our previous similar models. An iterative analytical solution of the model is presented which is in excellent quantitative agreement with the realistic model. It opens new possibilities for analytical studies as well as for efficient numerical simulation of this and other cardiac models of similar structure
Comprehension of the beating of the human heart is important for cardiac research and will improve m...
We extend a non-Tikhonov asymptotic embedding, proposed earlier, for calculation of conduction veloc...
(1) Aims: Atrial numerical modelling has generally represented the organ as either a surface or tiss...
Summary. We report a three-variable simplied model of excitation fronts in hu-man atrial tissue. The...
Detailed ionic models of cardiac cells are difficult for numerical simulations because they consist ...
AbstractDetailed ionic models of cardiac cells are difficult for numerical simulations because they ...
We describe an asymptotic approach to gated ionic models of single-cell cardiac excitability. It has...
Copyright © 2006 The Biophysical SocietyJournal ArticleDetailed ionic models of cardiac cells are di...
Simulation of cardiac excitation is often a trade-off be-tween accuracy and speed. A promising minim...
We consider applications of a recently suggested new asymptotic approach to detailed ionic models o...
The original publication is available at www.springerlink.com - http://link.springer.com/article/10....
Copyright © 2006 The Royal SocietyJournal ArticleWe analyse small parameters in selected models of b...
Excitability is a phenomenon seen in different kinds of systems, e.g., biological systems. Cardiac c...
Atrial fibrillation (AF) is a complex, multifaceted arrhythmia. Pathogenesis of AF is associated wit...
Here, we present new results obtained from a 1-D model of the atrium, with both the sinoatrial (SA) ...
Comprehension of the beating of the human heart is important for cardiac research and will improve m...
We extend a non-Tikhonov asymptotic embedding, proposed earlier, for calculation of conduction veloc...
(1) Aims: Atrial numerical modelling has generally represented the organ as either a surface or tiss...
Summary. We report a three-variable simplied model of excitation fronts in hu-man atrial tissue. The...
Detailed ionic models of cardiac cells are difficult for numerical simulations because they consist ...
AbstractDetailed ionic models of cardiac cells are difficult for numerical simulations because they ...
We describe an asymptotic approach to gated ionic models of single-cell cardiac excitability. It has...
Copyright © 2006 The Biophysical SocietyJournal ArticleDetailed ionic models of cardiac cells are di...
Simulation of cardiac excitation is often a trade-off be-tween accuracy and speed. A promising minim...
We consider applications of a recently suggested new asymptotic approach to detailed ionic models o...
The original publication is available at www.springerlink.com - http://link.springer.com/article/10....
Copyright © 2006 The Royal SocietyJournal ArticleWe analyse small parameters in selected models of b...
Excitability is a phenomenon seen in different kinds of systems, e.g., biological systems. Cardiac c...
Atrial fibrillation (AF) is a complex, multifaceted arrhythmia. Pathogenesis of AF is associated wit...
Here, we present new results obtained from a 1-D model of the atrium, with both the sinoatrial (SA) ...
Comprehension of the beating of the human heart is important for cardiac research and will improve m...
We extend a non-Tikhonov asymptotic embedding, proposed earlier, for calculation of conduction veloc...
(1) Aims: Atrial numerical modelling has generally represented the organ as either a surface or tiss...