Mechano-electric coupling (MEC) in atrial tissue has received sparse investigation to date, despite the well-known association between chronic atrial dilation and atrial fibrillation (AF). Of note, no fewer than six different mechanisms pertaining to stretch-activated channels, cellular capacitance and geometric effects have been identified in the literature as potential players. In this mini review, we briefly survey each of these pathways to MEC. We then perform computational simulations using single cell and tissue models in presence of various stretch regimes and MEC pathways. This allows us to assess the relative significance of each pathway in determining action potential duration, conduction velocity and rotor stability. For chronic ...
Mechanical stretch plays a major role in modulating atrial function, being responsible for beat-by-b...
It is well established that cardiac electrophysiology can be altered by changes in mechanical loadin...
Stretch of cardiac muscle is known to activate various physiological processes that result in chang...
Background Acute atrial dilation increases the susceptibility to atrial fibrillation (AF). However, ...
BACKGROUND Acute atrial dilation increases the susceptibility to atrial fibrillation (AF). However, ...
Atrial fibrillation is a common cardiac arrhythmia and is promoted by atrial dilatation. Acute atria...
Vulnerability to atrial fibrillation (AF) is increased in acutelydilated atria and is related to str...
Experimental studies show an increased vulnerability to atrial fibrillation (AF) in acutely dilated ...
Atrial fibrillation is the most common sustained arrhythmia; however, its mechanism is not well unde...
Mechano-electric regulations (MER) play an important role in the maintenance of cardiac performance....
We numerically investigate the role of mechanical stress in modifying the conductivity properties of...
We introduce an electromechanical model for human cardiac tissue which couples a biophysical model o...
Cardiac arrhythmia such as atrial and ventricular fibrillation are characterized by rapid and irregu...
Mechanical stretch plays a major role in modulating atrial function, being responsible for beat-by-b...
It is well established that cardiac electrophysiology can be altered by changes in mechanical loadin...
Stretch of cardiac muscle is known to activate various physiological processes that result in chang...
Background Acute atrial dilation increases the susceptibility to atrial fibrillation (AF). However, ...
BACKGROUND Acute atrial dilation increases the susceptibility to atrial fibrillation (AF). However, ...
Atrial fibrillation is a common cardiac arrhythmia and is promoted by atrial dilatation. Acute atria...
Vulnerability to atrial fibrillation (AF) is increased in acutelydilated atria and is related to str...
Experimental studies show an increased vulnerability to atrial fibrillation (AF) in acutely dilated ...
Atrial fibrillation is the most common sustained arrhythmia; however, its mechanism is not well unde...
Mechano-electric regulations (MER) play an important role in the maintenance of cardiac performance....
We numerically investigate the role of mechanical stress in modifying the conductivity properties of...
We introduce an electromechanical model for human cardiac tissue which couples a biophysical model o...
Cardiac arrhythmia such as atrial and ventricular fibrillation are characterized by rapid and irregu...
Mechanical stretch plays a major role in modulating atrial function, being responsible for beat-by-b...
It is well established that cardiac electrophysiology can be altered by changes in mechanical loadin...
Stretch of cardiac muscle is known to activate various physiological processes that result in chang...