In cardiac tissue, electrical spiral waves pinned to a heterogeneity can be unpinned (and eventually terminated) using electric far field pulses and recruiting the heterogeneity as a virtual electrode. While for isotropic media the process of unpinning is much better understood, the case of an anisotropic substrate with different conductivities in different directions still needs intensive investigation. To study the impact of anisotropy on the unpinning process, we present numerical simulations based on the bidomain formulation of the phase I of the Luo and Rudy action potential model modified due to the occurrence of acute myocardial ischaemia. Simulating a rotating spiral wave pinned to an ischaemic heterogeneity, we compare the success ...
Spiral waves may be pinned to anatomical heterogeneities in the cardiac tissue, which leads to monom...
In order to investigate myocardial action potential propagation under ischemia and infarction, we pr...
Fibrillation in the heart often consists of multiple spiral waves of electrical activation in cardia...
In cardiac tissue, electrical spiral waves pinned to a heterogeneity can be unpinned (and eventually...
Several types of dangerous cardiac arrhythmias, such as paroxysmal tachycardia and fibrillation, are...
Life-threatening cardiac arrhythmias are associated with the existence of stable and unstable spiral...
Spiral waves in cardiac tissue can pin to tissue heterogeneities and form stable pinned waves. These...
Spiral waves in cardiac tissue can pin to tissue heterogeneities and form stable pinned waves. These...
In relation to cardiac arrhythmias, heterogeneity of cardiac tissue is one of the most important fac...
Heterogeneity of cardiac tissue is an important factor determining the initiation and dynamics of ca...
Rotating spiral waves of electrical activity in the heart can anchor to unexcitable tissue (an obsta...
Several pathological conditions introduce spatial variations in the electrical properties of cardiac...
Several pathological conditions introduce spatial variations in the electrical properties of cardiac...
AbstractPrevious experimental studies have clearly demonstrated the existence of drifting and statio...
The low-voltage cardioversion-defibrillation is a modern sparing electrotherapy method for such dang...
Spiral waves may be pinned to anatomical heterogeneities in the cardiac tissue, which leads to monom...
In order to investigate myocardial action potential propagation under ischemia and infarction, we pr...
Fibrillation in the heart often consists of multiple spiral waves of electrical activation in cardia...
In cardiac tissue, electrical spiral waves pinned to a heterogeneity can be unpinned (and eventually...
Several types of dangerous cardiac arrhythmias, such as paroxysmal tachycardia and fibrillation, are...
Life-threatening cardiac arrhythmias are associated with the existence of stable and unstable spiral...
Spiral waves in cardiac tissue can pin to tissue heterogeneities and form stable pinned waves. These...
Spiral waves in cardiac tissue can pin to tissue heterogeneities and form stable pinned waves. These...
In relation to cardiac arrhythmias, heterogeneity of cardiac tissue is one of the most important fac...
Heterogeneity of cardiac tissue is an important factor determining the initiation and dynamics of ca...
Rotating spiral waves of electrical activity in the heart can anchor to unexcitable tissue (an obsta...
Several pathological conditions introduce spatial variations in the electrical properties of cardiac...
Several pathological conditions introduce spatial variations in the electrical properties of cardiac...
AbstractPrevious experimental studies have clearly demonstrated the existence of drifting and statio...
The low-voltage cardioversion-defibrillation is a modern sparing electrotherapy method for such dang...
Spiral waves may be pinned to anatomical heterogeneities in the cardiac tissue, which leads to monom...
In order to investigate myocardial action potential propagation under ischemia and infarction, we pr...
Fibrillation in the heart often consists of multiple spiral waves of electrical activation in cardia...