The research on the biological pacemaker has been very active in recent years. And turning nonautomatic ventricular cells into pacemaking cells is believed to hold the key to making a biological pacemaker. In the study, the inward-rectifier K+ current (IK1) is depressed to induce the automaticity of the ventricular myocyte, and then, the effects of the other membrane ion currents on the automaticity are analyzed. It is discovered that the L-type calcium current (ICaL) plays a major part in the rapid depolarization of the action potential (AP). A small enough ICaL would lead to the failure of the automaticity of the ventricular myocyte. Meanwhile, the background sodium current (IbNa), the background calcium current (IbCa), and the Na+/Ca2+ e...
The cardiac hyperpolarization-activated “funny” current (If), which contributes to sinoatrial node (...
Intraventricular synchrony of cardiac activation is important for efficient pump function. Ventricul...
A mathematical model of the membrane action potential of the mammalian ventricular cell is introduce...
Cardiac biological pacemaker (BP) has been created by suppression of the inward-rectifier K+ current...
In this study cardiac tissue is stimulated electrically through a small unipolar electrode. Nu-meric...
Pacemaking dysfunction (PD) may result in heart rhythm disorders, syncope or even death. Current tre...
Cardiac conduction disorders are common diseases which cause slow heart rate and syncope. The best w...
Early afterdepolarizations (EADs), which are abnormal oscillations of the membrane poten-tial at the...
AbstractDynamical mechanisms of the biological pacemaker (BP) generation in human ventricular myocyt...
Intraventricular synchrony of cardiac activation is important for efficient pump function. Ventricul...
<div><p>In this study cardiac tissue is stimulated electrically through a small unipolar electrode. ...
Intraventricular synchrony of cardiac activation is important for efficient pump function. Ventricul...
Intraventricular synchrony of cardiac activation is important for efficient pump function. Ventricul...
The pacemaker potential of the mammalian sinoatrial node cells consist of various timedependent ioni...
ABSTRACT Dynamical mechanisms of the biological pacemaker (BP) generation in human ventricular myocy...
The cardiac hyperpolarization-activated “funny” current (If), which contributes to sinoatrial node (...
Intraventricular synchrony of cardiac activation is important for efficient pump function. Ventricul...
A mathematical model of the membrane action potential of the mammalian ventricular cell is introduce...
Cardiac biological pacemaker (BP) has been created by suppression of the inward-rectifier K+ current...
In this study cardiac tissue is stimulated electrically through a small unipolar electrode. Nu-meric...
Pacemaking dysfunction (PD) may result in heart rhythm disorders, syncope or even death. Current tre...
Cardiac conduction disorders are common diseases which cause slow heart rate and syncope. The best w...
Early afterdepolarizations (EADs), which are abnormal oscillations of the membrane poten-tial at the...
AbstractDynamical mechanisms of the biological pacemaker (BP) generation in human ventricular myocyt...
Intraventricular synchrony of cardiac activation is important for efficient pump function. Ventricul...
<div><p>In this study cardiac tissue is stimulated electrically through a small unipolar electrode. ...
Intraventricular synchrony of cardiac activation is important for efficient pump function. Ventricul...
Intraventricular synchrony of cardiac activation is important for efficient pump function. Ventricul...
The pacemaker potential of the mammalian sinoatrial node cells consist of various timedependent ioni...
ABSTRACT Dynamical mechanisms of the biological pacemaker (BP) generation in human ventricular myocy...
The cardiac hyperpolarization-activated “funny” current (If), which contributes to sinoatrial node (...
Intraventricular synchrony of cardiac activation is important for efficient pump function. Ventricul...
A mathematical model of the membrane action potential of the mammalian ventricular cell is introduce...