<p>Cardiac arrhythmias triggered by both reentrant and focal sources are closely correlated with regions of tissue characterized by significant structural heterogeneity. Experimental and modeling studies of electrical activity in the heart have shown that local microscopic heterogeneities which average out at the macroscale in healthy tissue play a much more important role in diseased and aging cardiac tissue which have low levels of coupling and abnormal or reduced membrane excitability. However, it is still largely unknown how various combinations of microheterogeneity in the intracellular and interstitial spaces affect wavefront propagation in these critical regimes. </p> <p>This thesis uses biophysically realistic 1-D and 2-D com...
Coordinated electrical activation of the heart is essential for the maintenance of a regular cardiac...
When modelling tissue-level cardiac electrophysiology, a continuum approximation to the discrete cel...
Reductions in electrotonic loading around regions of structural and electrophysiological heterogenei...
Arrhythmias in cardiac tissue are related to irregular electrical wave propagation in the heart. Car...
Ectopic beats in the heart require a heterogeneous substrate to develop into dangerous, whole-heart ...
Structural heterogeneity constitutes one of the main substrates influencing impulse propagation in l...
<p>Impulse propagation in cardiac muscle is determined not only by the excitable properties of the m...
Arrhythmias in cardiac tissue are generally associated with irregular electrical wave propagation in...
The heart is a muscular organ that pumps blood throughout the body. The human heart contracts approx...
The incidence of cardiac arrhythmias is known to be associated with tissue heterogeneities including...
<p>The role of cardiac tissue structure in both normal and abnormal impulse conduction has been exte...
AbstractThis work presents a discrete multidomain model that describes ionic diffusion pathways betw...
Reductions in electrotonic loading around regions of structural and electrophysiological heterogenei...
Remodelling of cardiac tissue structure, including intercellular electrical coupling, is a major det...
Heart failure is a final common pathway or descriptor for various cardiac pathologies. It is associa...
Coordinated electrical activation of the heart is essential for the maintenance of a regular cardiac...
When modelling tissue-level cardiac electrophysiology, a continuum approximation to the discrete cel...
Reductions in electrotonic loading around regions of structural and electrophysiological heterogenei...
Arrhythmias in cardiac tissue are related to irregular electrical wave propagation in the heart. Car...
Ectopic beats in the heart require a heterogeneous substrate to develop into dangerous, whole-heart ...
Structural heterogeneity constitutes one of the main substrates influencing impulse propagation in l...
<p>Impulse propagation in cardiac muscle is determined not only by the excitable properties of the m...
Arrhythmias in cardiac tissue are generally associated with irregular electrical wave propagation in...
The heart is a muscular organ that pumps blood throughout the body. The human heart contracts approx...
The incidence of cardiac arrhythmias is known to be associated with tissue heterogeneities including...
<p>The role of cardiac tissue structure in both normal and abnormal impulse conduction has been exte...
AbstractThis work presents a discrete multidomain model that describes ionic diffusion pathways betw...
Reductions in electrotonic loading around regions of structural and electrophysiological heterogenei...
Remodelling of cardiac tissue structure, including intercellular electrical coupling, is a major det...
Heart failure is a final common pathway or descriptor for various cardiac pathologies. It is associa...
Coordinated electrical activation of the heart is essential for the maintenance of a regular cardiac...
When modelling tissue-level cardiac electrophysiology, a continuum approximation to the discrete cel...
Reductions in electrotonic loading around regions of structural and electrophysiological heterogenei...