A method for coupling an isolated cardiac cell to a simulated cardiac cell, i.e., the real-time solution of a mathematical model of such cell, has been developed. With this "model clamp" technique, the real cell and the model cell are coupled by any desired value of intercellular coupling conductance, producing the effect of mutual interaction by electrical coupling through gap junctional channels. We implemented the model clamp technique with our previously published model of an isolated rabbit sinoatrial node cell. We used this model clamp system to study synchronization of sinoatrial node cells with regard to the critical value of intercellular coupling conductance required for frequency entrainment and the common interbeat interval duri...
This paper compares recent mathematical models of rabbit sino-atrial node pacemaker cell activity [C...
<p>Computational studies using mathematical models of the sinoatrial node (SAN) cardiac action poten...
<p>Computational studies using mathematical models of the sinoatrial node (SAN) cardiac action poten...
The effects of intercellular coupling conductance on the activity of two electrically coupled isolat...
The sinoatrial node (SAN) is the primary pacemaker of the heart and its role is to generate the elec...
Several aspects of cardiac electrophysiology including phase-resetting and entrainment are investiga...
A mathematical model has been developed for the rabbit sinoatrial node (SAN) cardiac pacemaker cell,...
A multiscale mathematical modeling approach was employed to study the mechanisms of sinoatrial node ...
In the past decade, three mathematical models describing the pacemaker activity of the rabbit sinoat...
Mathematical models of rabbit atrial and ventricular myocytes that are based on quantitative voltage...
INTRODUCTION: Cardiac multicellular modeling has traditionally focused on ventricular electromechani...
We used the Luo and Rudy (LR) mathematical model of the guinea pig ventricular cell coupled to exper...
The development of quantitative models that describe how neural inputs control the electrophysiologi...
A: Parameters of the action potential of sinoatrial node cell. MDP is a maximal diastolic potential,...
Electrotonic effects of electrically coupling atrioventricular (AV) nodal cells to each other and to...
This paper compares recent mathematical models of rabbit sino-atrial node pacemaker cell activity [C...
<p>Computational studies using mathematical models of the sinoatrial node (SAN) cardiac action poten...
<p>Computational studies using mathematical models of the sinoatrial node (SAN) cardiac action poten...
The effects of intercellular coupling conductance on the activity of two electrically coupled isolat...
The sinoatrial node (SAN) is the primary pacemaker of the heart and its role is to generate the elec...
Several aspects of cardiac electrophysiology including phase-resetting and entrainment are investiga...
A mathematical model has been developed for the rabbit sinoatrial node (SAN) cardiac pacemaker cell,...
A multiscale mathematical modeling approach was employed to study the mechanisms of sinoatrial node ...
In the past decade, three mathematical models describing the pacemaker activity of the rabbit sinoat...
Mathematical models of rabbit atrial and ventricular myocytes that are based on quantitative voltage...
INTRODUCTION: Cardiac multicellular modeling has traditionally focused on ventricular electromechani...
We used the Luo and Rudy (LR) mathematical model of the guinea pig ventricular cell coupled to exper...
The development of quantitative models that describe how neural inputs control the electrophysiologi...
A: Parameters of the action potential of sinoatrial node cell. MDP is a maximal diastolic potential,...
Electrotonic effects of electrically coupling atrioventricular (AV) nodal cells to each other and to...
This paper compares recent mathematical models of rabbit sino-atrial node pacemaker cell activity [C...
<p>Computational studies using mathematical models of the sinoatrial node (SAN) cardiac action poten...
<p>Computational studies using mathematical models of the sinoatrial node (SAN) cardiac action poten...