Microscopic structural features of cardiac tissue play a fundamental role in determining complex spatio-temporal excitation dynamics at the macroscopic level. Recent efforts have been devoted to the development of mathematical models accounting for non-local spatio-temporal coupling able to capture these complex dynamics without the need of resolving tissue heterogeneities down to the micro-scale. In this work, we analyse in detail several important aspects affecting the overall predictive power of these modelling tools and provide some guidelines for an effective use of space-fractional models of cardiac electrophysiology in practical applications. Through an extensive computational study in simplified computational domains, we highlight t...
International audienceIntroduction: The most used model in the elctrophysiology of the heart,known a...
One of the current debate about simulating the electrical activity in the heart is the fol...
The electrical activation of the heart is the biological process that regulates the contraction of t...
We discuss here the use of non-local models in space and fractional order operators in the character...
Space-fractional operators have been used with success in a variety of practical applications to des...
Cardiac electrophysiology modeling deals with a complex network of excitable cells forming an intric...
<div><p>Space-fractional operators have been used with success in a variety of practical application...
Space-fractional operators have been used with success in a variety of practical applica-tions to de...
Structural heterogeneity constitutes one of the main substrates influencing impulse propagation in l...
Classical models of electrophysiology do not typically account for the effects of high structural he...
We investigate a class of fractional time-partial differential equations describing the dynamics of ...
This work addresses fundamental issues in the mathematical modelling of the diffusive motion of part...
Computational models of the heart at multiple spatial scales, from sub-cellular nanodomains to the w...
The paper deals with a mathematical model for the electric activity of the heart at macroscopic leve...
Computational models of the heart, from cell-level models, through one-, two- and three-dimensional ...
International audienceIntroduction: The most used model in the elctrophysiology of the heart,known a...
One of the current debate about simulating the electrical activity in the heart is the fol...
The electrical activation of the heart is the biological process that regulates the contraction of t...
We discuss here the use of non-local models in space and fractional order operators in the character...
Space-fractional operators have been used with success in a variety of practical applications to des...
Cardiac electrophysiology modeling deals with a complex network of excitable cells forming an intric...
<div><p>Space-fractional operators have been used with success in a variety of practical application...
Space-fractional operators have been used with success in a variety of practical applica-tions to de...
Structural heterogeneity constitutes one of the main substrates influencing impulse propagation in l...
Classical models of electrophysiology do not typically account for the effects of high structural he...
We investigate a class of fractional time-partial differential equations describing the dynamics of ...
This work addresses fundamental issues in the mathematical modelling of the diffusive motion of part...
Computational models of the heart at multiple spatial scales, from sub-cellular nanodomains to the w...
The paper deals with a mathematical model for the electric activity of the heart at macroscopic leve...
Computational models of the heart, from cell-level models, through one-, two- and three-dimensional ...
International audienceIntroduction: The most used model in the elctrophysiology of the heart,known a...
One of the current debate about simulating the electrical activity in the heart is the fol...
The electrical activation of the heart is the biological process that regulates the contraction of t...