Cardiac conduction disorders are common diseases which cause slow heart rate and syncope. The best way to treat these diseases by now is to implant electronic pacemakers, which, yet, have many disadvantages, such as the limited battery life and infection. Biopacemaker has been expected to replace the electronic devices. Automatic ventricular myocytes (VMs) could show pacemaker activity, which was induced by depressing inward-rectifier K+ current (IK1). In this study, a 2D model of human biopacemaker was created from the ventricular endocardial myocytes. We examined the stability of the created biopacemaker and investigated its driving capability by finding the suitable size and spatial distribution of the pacemaker for robust pacing and dri...
Electrogenesis in the heart begins in the sinoatrial node and proceeds down the conduction system to...
Abstract Electrical impulses from cardiac pacemaker cardiomyocytes initiate cardiac contraction and ...
In order to improve the diagnosis and management of heart failure, Pluijmert developed a 3D computer...
Cardiac biological pacemaker (BP) has been created by suppression of the inward-rectifier K+ current...
The research on the biological pacemaker has been very active in recent years. And turning nonautoma...
Pacemaking dysfunction (PD) may result in heart rhythm disorders, syncope or even death. Current tre...
AbstractDynamical mechanisms of the biological pacemaker (BP) generation in human ventricular myocyt...
ABSTRACT Dynamical mechanisms of the biological pacemaker (BP) generation in human ventricular myocy...
Artificial biological pacemakers were developed and tested in canine ventricles. Next steps will req...
The biological pacemaker approach is an alternative to cardiac electronic pacemakers. Its main objec...
Genetically engineered pacemakers could be a possible alternative to implantable electronic devices ...
As an alternative to electronic pacemakers, we explored the feasibility of converting ventricular my...
<p>A pacemaker is a medical device that uses electrical impulses, delivered by electrodes contractin...
Implantable cardiac devices such as artificial pacemakers deliver therapies according to the timing ...
Modeling Cardiac Pacemaker Malfunctions With the Virtual Heart Model Implantable cardiac devices suc...
Electrogenesis in the heart begins in the sinoatrial node and proceeds down the conduction system to...
Abstract Electrical impulses from cardiac pacemaker cardiomyocytes initiate cardiac contraction and ...
In order to improve the diagnosis and management of heart failure, Pluijmert developed a 3D computer...
Cardiac biological pacemaker (BP) has been created by suppression of the inward-rectifier K+ current...
The research on the biological pacemaker has been very active in recent years. And turning nonautoma...
Pacemaking dysfunction (PD) may result in heart rhythm disorders, syncope or even death. Current tre...
AbstractDynamical mechanisms of the biological pacemaker (BP) generation in human ventricular myocyt...
ABSTRACT Dynamical mechanisms of the biological pacemaker (BP) generation in human ventricular myocy...
Artificial biological pacemakers were developed and tested in canine ventricles. Next steps will req...
The biological pacemaker approach is an alternative to cardiac electronic pacemakers. Its main objec...
Genetically engineered pacemakers could be a possible alternative to implantable electronic devices ...
As an alternative to electronic pacemakers, we explored the feasibility of converting ventricular my...
<p>A pacemaker is a medical device that uses electrical impulses, delivered by electrodes contractin...
Implantable cardiac devices such as artificial pacemakers deliver therapies according to the timing ...
Modeling Cardiac Pacemaker Malfunctions With the Virtual Heart Model Implantable cardiac devices suc...
Electrogenesis in the heart begins in the sinoatrial node and proceeds down the conduction system to...
Abstract Electrical impulses from cardiac pacemaker cardiomyocytes initiate cardiac contraction and ...
In order to improve the diagnosis and management of heart failure, Pluijmert developed a 3D computer...