This paper compares recent mathematical models of rabbit sino-atrial node pacemaker cell activity [Cellular and Neuronal Oscillators, Dekker, New York, 1989, p. 59; Am. J. Physiol. 266 (1994) C832; J. Theor. Biol. 181 (1996) 245; Am. J. Physiol. 279 (2000) H397] and evaluates them with the perspective of developing detailed multicellular models of the right atrium. (i) All evaluated models reproduce control action potential shapes, which have been recorded experimentally (although one of them (Dokos et al., loc. cit.) shows an unusually long spontaneous diastolic depolarisation phase, probably more compatible with room-temperature rather than body-temperature conditions). This is achieved on the basis of implementing sarcolemmal ion fluxes ...
Mathematical models of rabbit atrial and ventricular myocytes that are based on quantitative voltage...
Computational models for cardiomyocyte action potentials (AP) often make use of a large parameter se...
We have developed a mathematical model of the rabbit atrial myocyte in order to investigate the ioni...
This paper compares recent mathematical models of rabbit sino-atrial node pacemaker cell activity [C...
In the past decade, three mathematical models describing the pacemaker activity of the rabbit sinoat...
A mathematical model has been developed for the rabbit sinoatrial node (SAN) cardiac pacemaker cell,...
INTRODUCTION: Cardiac multicellular modeling has traditionally focused on ventricular electromechani...
The aim of the study was to develop a three-dimensional (3D) anatomically-detailed model of the rabb...
Models of cardiac electrophysiology are widely used to supplement experimental results and to provid...
Models of AN, N and NH action potentials Models were developed for the rabbit, because of the relati...
The cellular basis of cardiac pacemaking is still debated. Reliable computationalmodels of the sino...
The cellular basis of cardiac pacemaking activity, and specifically the quantitative contributions o...
The aim of the study was to develop a three-dimensional (3D) anatomically-detailed model of the rabb...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
The pacemaker potential of the mammalian sinoatrial node cells consist of various timedependent ioni...
Mathematical models of rabbit atrial and ventricular myocytes that are based on quantitative voltage...
Computational models for cardiomyocyte action potentials (AP) often make use of a large parameter se...
We have developed a mathematical model of the rabbit atrial myocyte in order to investigate the ioni...
This paper compares recent mathematical models of rabbit sino-atrial node pacemaker cell activity [C...
In the past decade, three mathematical models describing the pacemaker activity of the rabbit sinoat...
A mathematical model has been developed for the rabbit sinoatrial node (SAN) cardiac pacemaker cell,...
INTRODUCTION: Cardiac multicellular modeling has traditionally focused on ventricular electromechani...
The aim of the study was to develop a three-dimensional (3D) anatomically-detailed model of the rabb...
Models of cardiac electrophysiology are widely used to supplement experimental results and to provid...
Models of AN, N and NH action potentials Models were developed for the rabbit, because of the relati...
The cellular basis of cardiac pacemaking is still debated. Reliable computationalmodels of the sino...
The cellular basis of cardiac pacemaking activity, and specifically the quantitative contributions o...
The aim of the study was to develop a three-dimensional (3D) anatomically-detailed model of the rabb...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
The pacemaker potential of the mammalian sinoatrial node cells consist of various timedependent ioni...
Mathematical models of rabbit atrial and ventricular myocytes that are based on quantitative voltage...
Computational models for cardiomyocyte action potentials (AP) often make use of a large parameter se...
We have developed a mathematical model of the rabbit atrial myocyte in order to investigate the ioni...