Optical techniques for recording and manipulating cellular electrophysiology have advanced rapidly in just a few decades. These developments allow for the analysis of cardiac cellular dynamics at multiple scales while largely overcoming the drawbacks associated with the use of electrodes. The recent advent of optogenetics opens up new possibilities for regional and tissue-level electrophysiological control and hold promise for future novel clinical applications. This article, which emerged from the international NOTICE workshop in 20181, reviews the state-of-the-art optical techniques used for cardiac electrophysiological research and the underlying biophysics. The design and performance of optical reporters and optogenetic actuators are re...
Complex spatiotemporal non-linearity as observed during cardiac arrhythmia strongly correlates with ...
In 1791 Galvani established that electricity activated excitable cells. In the two centuries that fo...
Complex spatiotemporal non-linearity as observed during cardiac arrhythmia strongly correlates with ...
Optical techniques for recording and manipulating cellular electrophysiology have advanced rapidly i...
Our current understanding of cardiac excitation and its coupling to contraction is largely based on ...
Our current understanding of cardiac excitation and its coupling to contraction is largely based on ...
Cardiac tissue is an excitable system that can support complex spatiotemporal dynamics, including in...
Detailed understanding of mechanisms and instabilities underlying the onset, perpetuation, and contr...
Optogenetic control of the heart is an emergent technology that offers unparalleled spatio-temporal ...
State-of-the-art innovations in optical cardiac electrophysiology are significantly enhancing cardia...
Light has long been used to image the heart, but now it can be used to modulate its electrophysiolog...
Current optical methodologies, combined with highly specialized genetic manipulation, have provided ...
Complex spatiotemporal non-linearity as observed during cardiac arrhythmia strongly correlates with ...
Complex spatiotemporal non-linearity as observed during cardiac arrhythmia strongly correlates with ...
Complex spatiotemporal non-linearity as observed during cardiac arrhythmia strongly correlates with ...
Complex spatiotemporal non-linearity as observed during cardiac arrhythmia strongly correlates with ...
In 1791 Galvani established that electricity activated excitable cells. In the two centuries that fo...
Complex spatiotemporal non-linearity as observed during cardiac arrhythmia strongly correlates with ...
Optical techniques for recording and manipulating cellular electrophysiology have advanced rapidly i...
Our current understanding of cardiac excitation and its coupling to contraction is largely based on ...
Our current understanding of cardiac excitation and its coupling to contraction is largely based on ...
Cardiac tissue is an excitable system that can support complex spatiotemporal dynamics, including in...
Detailed understanding of mechanisms and instabilities underlying the onset, perpetuation, and contr...
Optogenetic control of the heart is an emergent technology that offers unparalleled spatio-temporal ...
State-of-the-art innovations in optical cardiac electrophysiology are significantly enhancing cardia...
Light has long been used to image the heart, but now it can be used to modulate its electrophysiolog...
Current optical methodologies, combined with highly specialized genetic manipulation, have provided ...
Complex spatiotemporal non-linearity as observed during cardiac arrhythmia strongly correlates with ...
Complex spatiotemporal non-linearity as observed during cardiac arrhythmia strongly correlates with ...
Complex spatiotemporal non-linearity as observed during cardiac arrhythmia strongly correlates with ...
Complex spatiotemporal non-linearity as observed during cardiac arrhythmia strongly correlates with ...
In 1791 Galvani established that electricity activated excitable cells. In the two centuries that fo...
Complex spatiotemporal non-linearity as observed during cardiac arrhythmia strongly correlates with ...