Nonlinear waves of the reaction-diffusion (RD) type occur in many biophysical systems, including the heart, where they initiate cardiac contraction. Such waves can form vortices called scroll waves, which result in the onset of life-threatening cardiac arrhythmias. The dynamics of scroll waves is affected by the presence of inhomogeneities, which, in a very general way, can be of (i) ionic type; i.e., they affect the reaction part, or (ii) conduction type, i.e., they affect the diffusion part of an RD-equation. We demonstrate, for the first time, by using a state-of-the-art, anatomically realistic model of the pig heart, how differences in the geometrical and biophysical nature of such inhomogeneities can influence scroll-wave dynamics in d...
Every sixth death in industrialized countries occurs because of cardiac arrhythmias such as ventricu...
Regular electrical activation waves in cardiac tissue lead to the rhythmic contraction and expansi...
Wave propagation around various geometric expansions, structures, and obstacles in cardiac tissue ma...
Nonlinear waves of the reaction-diffusion (RD) type occur in many biophysical systems, including the...
Nonlinear waves of the reaction-diffusion (RD) type occur in many biophysical systems, including the...
Cardiac arrhythmias, such as ventricular tachycardia (VT) and ventricular fibrillation (VF), are amo...
Cardiac arrhythmias, such as ventricular tachycardia (VT) and ventricular fibrillation (VF), are amo...
Abnormal electrical activity from the boundaries of ischemic cardiac tissue is recognized as one of ...
Scroll waves are found in physical, chemical and biological systems and underlie many significant pr...
Scroll waves are found in physical, chemical and biological systems and underlie many significant pr...
Regular electrical activation waves in cardiac tissue lead to the rhythmic contraction and expansion...
Several pathological conditions introduce spatial variations in the electrical properties of cardiac...
Several pathological conditions introduce spatial variations in the electrical properties of cardiac...
Rotating spiral waves of electrical excitation underlie many dangerous cardiac arrhythmias. The hete...
There is a growing consensus that life-threatening cardiac arrhythmias like ventricular tachycardia ...
Every sixth death in industrialized countries occurs because of cardiac arrhythmias such as ventricu...
Regular electrical activation waves in cardiac tissue lead to the rhythmic contraction and expansi...
Wave propagation around various geometric expansions, structures, and obstacles in cardiac tissue ma...
Nonlinear waves of the reaction-diffusion (RD) type occur in many biophysical systems, including the...
Nonlinear waves of the reaction-diffusion (RD) type occur in many biophysical systems, including the...
Cardiac arrhythmias, such as ventricular tachycardia (VT) and ventricular fibrillation (VF), are amo...
Cardiac arrhythmias, such as ventricular tachycardia (VT) and ventricular fibrillation (VF), are amo...
Abnormal electrical activity from the boundaries of ischemic cardiac tissue is recognized as one of ...
Scroll waves are found in physical, chemical and biological systems and underlie many significant pr...
Scroll waves are found in physical, chemical and biological systems and underlie many significant pr...
Regular electrical activation waves in cardiac tissue lead to the rhythmic contraction and expansion...
Several pathological conditions introduce spatial variations in the electrical properties of cardiac...
Several pathological conditions introduce spatial variations in the electrical properties of cardiac...
Rotating spiral waves of electrical excitation underlie many dangerous cardiac arrhythmias. The hete...
There is a growing consensus that life-threatening cardiac arrhythmias like ventricular tachycardia ...
Every sixth death in industrialized countries occurs because of cardiac arrhythmias such as ventricu...
Regular electrical activation waves in cardiac tissue lead to the rhythmic contraction and expansi...
Wave propagation around various geometric expansions, structures, and obstacles in cardiac tissue ma...