Abstract A rapidly increasing number of papers describing novel iPSC models for cardiac diseases are being published. To be able to understand the disease mechanisms in more detail, we should also take the full advantage of the various methods for analyzing these cell models. The traditionally and commonly used electrophysiological analysis methods have been recently accompanied by novel approaches for analyzing the mechanical beatingbehavior of the cardiomyocytes. In this review, we provide first a concise overview on the methodology for cardiomyocyte functional analysis and then concentrate on the video microscopy, which provides a promise for a new faster yet reliable method for cardiomyocyte functional analysis. We also show how analysi...
Cardiomyopathies, heart failure, and arrhythmias or conduction blockages impact millions o...
This paper proposes a new non-invasive, low-cost, and fully automated platform to quantitatively ana...
RationaleDuring each beat, cardiac myocytes (CMs) generate the mechanical output necessary for heart...
AbstractA rapidly increasing number of papers describing novel iPSC models for cardiac diseases are ...
Summary The quantitative analysis of cardiomyocyte function is essential for stem cell-based approac...
SummaryThe quantitative analysis of cardiomyocyte function is essential for stem cell-based approach...
Background The functionality of a cardiomyocyte is primarily measured by analyzing the electrophy...
The emerging heart-on-a-chip platforms are promising approaches to establish cardiac cell/tissue mod...
Cardiomyocytes are the motor units that drive the contraction and relaxation of the heart. Tradition...
Human embryonic stem cells (hESCs) differentiated into cardiomyocytes (CM) often develop into comple...
We present a non-invasive method to characterize the function of pluripotent stem-cell-derived cardi...
SummaryWe present a non-invasive method to characterize the function of pluripotent stem-cell-derive...
Ischemic heart disease is a significant cause of death worldwide. It has therefore been the subject ...
Current preclinical methods to evaluate drug safety fail to accurately predict cardiotoxicity, the l...
Includes bibliographical references (p. 212-225).The goal of this project has been to develop, execu...
Cardiomyopathies, heart failure, and arrhythmias or conduction blockages impact millions o...
This paper proposes a new non-invasive, low-cost, and fully automated platform to quantitatively ana...
RationaleDuring each beat, cardiac myocytes (CMs) generate the mechanical output necessary for heart...
AbstractA rapidly increasing number of papers describing novel iPSC models for cardiac diseases are ...
Summary The quantitative analysis of cardiomyocyte function is essential for stem cell-based approac...
SummaryThe quantitative analysis of cardiomyocyte function is essential for stem cell-based approach...
Background The functionality of a cardiomyocyte is primarily measured by analyzing the electrophy...
The emerging heart-on-a-chip platforms are promising approaches to establish cardiac cell/tissue mod...
Cardiomyocytes are the motor units that drive the contraction and relaxation of the heart. Tradition...
Human embryonic stem cells (hESCs) differentiated into cardiomyocytes (CM) often develop into comple...
We present a non-invasive method to characterize the function of pluripotent stem-cell-derived cardi...
SummaryWe present a non-invasive method to characterize the function of pluripotent stem-cell-derive...
Ischemic heart disease is a significant cause of death worldwide. It has therefore been the subject ...
Current preclinical methods to evaluate drug safety fail to accurately predict cardiotoxicity, the l...
Includes bibliographical references (p. 212-225).The goal of this project has been to develop, execu...
Cardiomyopathies, heart failure, and arrhythmias or conduction blockages impact millions o...
This paper proposes a new non-invasive, low-cost, and fully automated platform to quantitatively ana...
RationaleDuring each beat, cardiac myocytes (CMs) generate the mechanical output necessary for heart...