A: Parameters of the action potential of sinoatrial node cell. MDP is a maximal diastolic potential, Vmax is the maximum potential, and VTh is the threshold potential. B: State controller of the Resonant model of a sinoatrial node cell. f0 is the intrinsic beating frequency of a cell and fc is the entrained frequency C: Diagram of the two Resonant model cells (Cell 1 and Cell 2) coupled with a gap junction.</p
INTRODUCTION: Cardiac multicellular modeling has traditionally focused on ventricular electromechani...
Normal heart rhythm (sinus rhythm) is governed by the sinoatrial node, a specialized and highly hete...
<p><b>A</b>, schematic diagram of 2D model. <i>Red</i>, SAN cells. <i>Blue</i>, atrial muscle cells....
A: Action potential waveforms simulated in human sinoatrial node cell electrophysiology model. B: Ac...
A multiscale mathematical modeling approach was employed to study the mechanisms of sinoatrial node ...
mathematical model. Dynamic interactions and mutual synchronization of sinoatrial node pacemaker cel...
A method for coupling an isolated cardiac cell to a simulated cardiac cell, i.e., the real-time solu...
The sinoatrial node (SAN) is the primary pacemaker of the heart and its role is to generate the elec...
In mammalian hearts, initiation of the heartbeat occurs in a region of specialised pacemaker cells k...
The sinoatrial (SA) node, located in the right atrium wall, is the heart's biological pacemaker and ...
A mathematical model has been developed for the rabbit sinoatrial node (SAN) cardiac pacemaker cell,...
Normal heart rhythm (sinus rhythm) is governed by the sinoatrial node, a specialized and highly hete...
Cardiac pacing is an important area of scientific inquiry, and provides a rich opportunity for mathe...
Hypertension is associated with sympathetic hyperactivity. To represent this neural-myocyte coupling...
The development of quantitative models that describe how neural inputs control the electrophysiologi...
INTRODUCTION: Cardiac multicellular modeling has traditionally focused on ventricular electromechani...
Normal heart rhythm (sinus rhythm) is governed by the sinoatrial node, a specialized and highly hete...
<p><b>A</b>, schematic diagram of 2D model. <i>Red</i>, SAN cells. <i>Blue</i>, atrial muscle cells....
A: Action potential waveforms simulated in human sinoatrial node cell electrophysiology model. B: Ac...
A multiscale mathematical modeling approach was employed to study the mechanisms of sinoatrial node ...
mathematical model. Dynamic interactions and mutual synchronization of sinoatrial node pacemaker cel...
A method for coupling an isolated cardiac cell to a simulated cardiac cell, i.e., the real-time solu...
The sinoatrial node (SAN) is the primary pacemaker of the heart and its role is to generate the elec...
In mammalian hearts, initiation of the heartbeat occurs in a region of specialised pacemaker cells k...
The sinoatrial (SA) node, located in the right atrium wall, is the heart's biological pacemaker and ...
A mathematical model has been developed for the rabbit sinoatrial node (SAN) cardiac pacemaker cell,...
Normal heart rhythm (sinus rhythm) is governed by the sinoatrial node, a specialized and highly hete...
Cardiac pacing is an important area of scientific inquiry, and provides a rich opportunity for mathe...
Hypertension is associated with sympathetic hyperactivity. To represent this neural-myocyte coupling...
The development of quantitative models that describe how neural inputs control the electrophysiologi...
INTRODUCTION: Cardiac multicellular modeling has traditionally focused on ventricular electromechani...
Normal heart rhythm (sinus rhythm) is governed by the sinoatrial node, a specialized and highly hete...
<p><b>A</b>, schematic diagram of 2D model. <i>Red</i>, SAN cells. <i>Blue</i>, atrial muscle cells....