We introduce an electromechanical model for human cardiac tissue which couples a biophysical model of cardiac excitation (Tusscher, Noble, Noble, Panfilov, 2006) and tension development (adjusted Niederer, Hunter, Smith, 2006 model) with a discrete elastic mass-lattice model. The equations for the excitation processes are solved with a finite difference approach, and the equations of the mass-lattice model are solved using Verlet integration. This allows the coupled problem to be solved with high numerical resolution. Passive mechanical properties of the mass-lattice model are described by a generalized Hooke's law for finite deformations (Seth material). Active mechanical contraction is initiated by changes of the intracellular calcium con...
We investigate the effect of mechano-electrical feedback and atrial fibrillation induced electrical ...
Mechanoelectric feedback (MEF) in the heart operates through several mechanisms which serve to regul...
Wepresentanelectromechanicalmodelofmyocardiumtissue,coupling finite elasticity, endowed with the cap...
We introduce an electromechanical model for human cardiac tissue which couples a biophysical model o...
We introduce an electromechanical model for human cardiac tissue which couples a biophysical model o...
We introduce an electromechanical model for human cardiac tissue which couples a biophysical model o...
We numerically investigate the role of mechanical stress in modifying the conductivity properties of...
We numerically investigate the role of mechanical stress in modifying the conductivity properties of...
Cardiac electrophysiology and mechanics are strongly interconnected. Their interaction is, among oth...
The mechanical state of the intact heart alters the electrical properties of the underlying tissue. ...
Stretch of cardiac muscle is known to activate various physiological processes that result in chang...
Stretch-induced changes in arrhythmogenesis and excitabil-ity in experimentally based heart cell mod...
Cardiac arrhythmia such as atrial and ventricular fibrillation are characterized by rapid and irregu...
INTRODUCTION: The implications of mechanical deformation on calculated body surface potentials are i...
We present an electromechanical model of myocardium tissue, coupling finite elasticity, endowed wit...
We investigate the effect of mechano-electrical feedback and atrial fibrillation induced electrical ...
Mechanoelectric feedback (MEF) in the heart operates through several mechanisms which serve to regul...
Wepresentanelectromechanicalmodelofmyocardiumtissue,coupling finite elasticity, endowed with the cap...
We introduce an electromechanical model for human cardiac tissue which couples a biophysical model o...
We introduce an electromechanical model for human cardiac tissue which couples a biophysical model o...
We introduce an electromechanical model for human cardiac tissue which couples a biophysical model o...
We numerically investigate the role of mechanical stress in modifying the conductivity properties of...
We numerically investigate the role of mechanical stress in modifying the conductivity properties of...
Cardiac electrophysiology and mechanics are strongly interconnected. Their interaction is, among oth...
The mechanical state of the intact heart alters the electrical properties of the underlying tissue. ...
Stretch of cardiac muscle is known to activate various physiological processes that result in chang...
Stretch-induced changes in arrhythmogenesis and excitabil-ity in experimentally based heart cell mod...
Cardiac arrhythmia such as atrial and ventricular fibrillation are characterized by rapid and irregu...
INTRODUCTION: The implications of mechanical deformation on calculated body surface potentials are i...
We present an electromechanical model of myocardium tissue, coupling finite elasticity, endowed wit...
We investigate the effect of mechano-electrical feedback and atrial fibrillation induced electrical ...
Mechanoelectric feedback (MEF) in the heart operates through several mechanisms which serve to regul...
Wepresentanelectromechanicalmodelofmyocardiumtissue,coupling finite elasticity, endowed with the cap...