Impulse propagation in biological tissues is known to be modulated by structural heterogeneity. In cardiac muscle, improved understanding on how this heterogeneity influences electrical spread is key to advancing our interpretation of dispersion of repolarization. We propose fractional diffusion models as a novel mathematical description of structurally heterogeneous excitable media, as a means of representing the modulation of the total electric field by the secondary electrical sources associated with tissue inhomogeneities. Our results, analysed against in vivo human recordings and experimental data of different animal species, indicate that structural heterogeneity underlies relevant characteristics of cardiac electrical propagation at...
Variability in the action potential of isolated myocytes and tissue samples is observed in experimen...
We investigate a class of fractional time-partial differential equations describing the dynamics of ...
Microscopic structural features of cardiac tissue play a fundamental role in determining complex spa...
Impulse propagation in biological tissues is known to be modulated by structural heterogeneity. In c...
<p>Cardiac arrhythmias triggered by both reentrant and focal sources are closely correlated with reg...
<p>Impulse propagation in cardiac muscle is determined not only by the excitable properties of the m...
Space-fractional operators have been used with success in a variety of practical applications to des...
<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...
variations in repolarization currents in the heart can produce spatial gradients in action potential...
International audienceMathematical modelling and numerical simulation in cardiac electrophysiology h...
Heterogeneous repolarization causes dispersion of the T-wave and has been linked to arrhythmogenesis...
We discuss here the use of non-local models in space and fractional order operators in the character...
Action potential duration (APD) heterogeneity of cardiac tissue is one of the most important factors...
Variability in the action potential of isolated myocytes and tissue samples is observed in experimen...
Variability in the action potential of isolated myocytes and tissue samples is observed in experimen...
We investigate a class of fractional time-partial differential equations describing the dynamics of ...
Microscopic structural features of cardiac tissue play a fundamental role in determining complex spa...
Impulse propagation in biological tissues is known to be modulated by structural heterogeneity. In c...
<p>Cardiac arrhythmias triggered by both reentrant and focal sources are closely correlated with reg...
<p>Impulse propagation in cardiac muscle is determined not only by the excitable properties of the m...
Space-fractional operators have been used with success in a variety of practical applications to des...
<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...
variations in repolarization currents in the heart can produce spatial gradients in action potential...
International audienceMathematical modelling and numerical simulation in cardiac electrophysiology h...
Heterogeneous repolarization causes dispersion of the T-wave and has been linked to arrhythmogenesis...
We discuss here the use of non-local models in space and fractional order operators in the character...
Action potential duration (APD) heterogeneity of cardiac tissue is one of the most important factors...
Variability in the action potential of isolated myocytes and tissue samples is observed in experimen...
Variability in the action potential of isolated myocytes and tissue samples is observed in experimen...
We investigate a class of fractional time-partial differential equations describing the dynamics of ...
Microscopic structural features of cardiac tissue play a fundamental role in determining complex spa...