Cardiomyocytes (CMs) and fibroblast cells are two essential elements for cardiac tissue structure and function. The interactions between them can alter cardiac electrophysiology and thus contribute to cardiac diseases, such as arrhythmogenesis. One possible explanation is that fibroblasts can directly affect cardiac electrophysiology through electrical coupling with CMs. Therefore, detecting the electrical activities in the CM-fibroblast network is vital for understanding the coupling dynamics among them. Current commercialized platforms for studying cardiac electrophysiology utilize planar microelectrode arrays (MEAs) to record the extracellular field potential (FP) in real-time, but the prearranged electrode configuration highly limits th...
Cardiac fibrosis occurs in many forms of heart disease and is considered to be one of the main arrhy...
In this paper we describe a microfluidic environment that enables us to explore cell-to-cellsignalli...
Modern concepts for the treatment of myocardial diseases focus on novel cell therapeutic strategies ...
Electromechanical function of cardiac muscle depends critically on the crosstalk of myocytes with no...
Summary: Multielectrode array (MEA) technology has been extensively used for field potential recordi...
Multielectrode array (MEA) technology has been extensively used for field potential recordings from ...
Cardiomyocytes can now be derived with high efficiency from both human embryonic and human induced-P...
Atrial and ventricular fibrillations are thought to be caused by multiple chaotically wandering wave...
<p>Excess cardiac myofibroblasts in fibrotic heart diseases as well as cell-based therapies involvin...
Myocytes, while giving rise to the bulk volume of normal cardiac muscle, form a "minority cell popul...
The focus of this work was to investigate the bioelectronic interface between electrically active ce...
Microelectrode arrays (MEAs) have proved to be useful tools for characterizing electrically active c...
Microelectrode arrays (MEAs) are widely used to assess the electrophysiology of human pluripotent st...
Cardiac fibrosis occurs in many forms of heart disease and is considered to be one of the main arrhy...
Myocytes, while giving rise to the bulk volume of normal cardiac muscle, form a "minority cell popul...
Cardiac fibrosis occurs in many forms of heart disease and is considered to be one of the main arrhy...
In this paper we describe a microfluidic environment that enables us to explore cell-to-cellsignalli...
Modern concepts for the treatment of myocardial diseases focus on novel cell therapeutic strategies ...
Electromechanical function of cardiac muscle depends critically on the crosstalk of myocytes with no...
Summary: Multielectrode array (MEA) technology has been extensively used for field potential recordi...
Multielectrode array (MEA) technology has been extensively used for field potential recordings from ...
Cardiomyocytes can now be derived with high efficiency from both human embryonic and human induced-P...
Atrial and ventricular fibrillations are thought to be caused by multiple chaotically wandering wave...
<p>Excess cardiac myofibroblasts in fibrotic heart diseases as well as cell-based therapies involvin...
Myocytes, while giving rise to the bulk volume of normal cardiac muscle, form a "minority cell popul...
The focus of this work was to investigate the bioelectronic interface between electrically active ce...
Microelectrode arrays (MEAs) have proved to be useful tools for characterizing electrically active c...
Microelectrode arrays (MEAs) are widely used to assess the electrophysiology of human pluripotent st...
Cardiac fibrosis occurs in many forms of heart disease and is considered to be one of the main arrhy...
Myocytes, while giving rise to the bulk volume of normal cardiac muscle, form a "minority cell popul...
Cardiac fibrosis occurs in many forms of heart disease and is considered to be one of the main arrhy...
In this paper we describe a microfluidic environment that enables us to explore cell-to-cellsignalli...
Modern concepts for the treatment of myocardial diseases focus on novel cell therapeutic strategies ...