AbstractMathematical modeling of the cardiac action potential has proven to be a powerful tool for illuminating various aspects of cardiac function, including cardiac arrhythmias. However, no currently available detailed action potential model accurately reproduces the dynamics of the cardiac action potential and intracellular calcium (Cai) cycling at rapid heart rates relevant to ventricular tachycardia and fibrillation. The aim of this study was to develop such a model. Using an existing rabbit ventricular action potential model, we modified the L-type calcium (Ca) current (ICa,L) and Cai cycling formulations based on new experimental patch-clamp data obtained in isolated rabbit ventricular myocytes, using the perforated patch configurati...
We have developed a mathematical model of the rabbit atrial myocyte in order to investigate the ioni...
Models of cardiac electrophysiology are widely used to supplement experimental results and to provid...
The cellular basis of cardiac pacemaking is still debated. Reliable computationalmodels of the sino...
AbstractMathematical modeling of the cardiac action potential has proven to be a powerful tool for i...
Computational models for cardiomyocyte action potentials (AP) often make use of a large parameter se...
[EN] Several mathematical models of rabbit ventricular action potential (AP) have been proposed to i...
Variability is observed at all levels of cardiac electrophysiology. Yet, the underlying causes and i...
[EN] Several mathematical models of rabbit ventricular action potential (AP) have been proposed to i...
Variability is observed at all levels of cardiac electrophysiology. Yet, the underlying causes and i...
Variability is observed at all levels of cardiac electrophysiology. Yet, the underlying causes and i...
Mathematical models of rabbit atrial and ventricular myocytes that are based on quantitative voltage...
This tool represents an implementation of a rabbit action potential model derived from high-fidelity...
Models of cardiac electrophysiology are widely used to supplement experimental results and to provid...
Models of cardiac electrophysiology are widely used to supplement experimental results and to provid...
Models of cardiac electrophysiology are widely used to supplement experimental results and to provid...
We have developed a mathematical model of the rabbit atrial myocyte in order to investigate the ioni...
Models of cardiac electrophysiology are widely used to supplement experimental results and to provid...
The cellular basis of cardiac pacemaking is still debated. Reliable computationalmodels of the sino...
AbstractMathematical modeling of the cardiac action potential has proven to be a powerful tool for i...
Computational models for cardiomyocyte action potentials (AP) often make use of a large parameter se...
[EN] Several mathematical models of rabbit ventricular action potential (AP) have been proposed to i...
Variability is observed at all levels of cardiac electrophysiology. Yet, the underlying causes and i...
[EN] Several mathematical models of rabbit ventricular action potential (AP) have been proposed to i...
Variability is observed at all levels of cardiac electrophysiology. Yet, the underlying causes and i...
Variability is observed at all levels of cardiac electrophysiology. Yet, the underlying causes and i...
Mathematical models of rabbit atrial and ventricular myocytes that are based on quantitative voltage...
This tool represents an implementation of a rabbit action potential model derived from high-fidelity...
Models of cardiac electrophysiology are widely used to supplement experimental results and to provid...
Models of cardiac electrophysiology are widely used to supplement experimental results and to provid...
Models of cardiac electrophysiology are widely used to supplement experimental results and to provid...
We have developed a mathematical model of the rabbit atrial myocyte in order to investigate the ioni...
Models of cardiac electrophysiology are widely used to supplement experimental results and to provid...
The cellular basis of cardiac pacemaking is still debated. Reliable computationalmodels of the sino...