Key points: Although optogenetics has clearly demonstrated the feasibility of cardiac manipulation, current optical stimulation strategies lack the capability to react acutely to ongoing cardiac wave dynamics. Here, we developed an all-optical platform to monitor and control electrical activity in real-time. The methodology was applied to restore normal electrical activity after atrioventricular block and to manipulate the intraventricular propagation of the electrical wavefront. The closed-loop approach was also applied to simulate a re-entrant circuit across the ventricle. The development of this innovative optical methodology provides the first proof-of-concept that a real-time all-optical stimulation can control cardiac rhythm in normal...
State-of-the-art innovations in optical cardiac electrophysiology are significantly enhancing cardia...
Optical techniques for recording and manipulating cellular electrophysiology have advanced rapidly i...
Optical techniques for recording and manipulating cellular electrophysiology have advanced rapidly i...
Key points: Although optogenetics has clearly demonstrated the feasibility of cardiac manipulation, ...
Current optical methodologies, combined with highly specialized genetic manipulation, have provided ...
Current rescue therapies for life-threatening arrhythmias ignore the pathological electro-anatomical...
Optogenetics is an emerging method that uses light to manipulate electrical activity in excitable ce...
Cardiac tissue is an excitable system that can support complex spatiotemporal dynamics, including in...
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 ...
Detailed understanding of mechanisms and instabilities underlying the onset, perpetuation, and contr...
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 ...
State-of-the-art innovations in optical cardiac electrophysiology are significantly enhancing cardia...
Optical techniques for recording and manipulating cellular electrophysiology have advanced rapidly i...
Optical techniques for recording and manipulating cellular electrophysiology have advanced rapidly i...
Key points: Although optogenetics has clearly demonstrated the feasibility of cardiac manipulation, ...
Current optical methodologies, combined with highly specialized genetic manipulation, have provided ...
Current rescue therapies for life-threatening arrhythmias ignore the pathological electro-anatomical...
Optogenetics is an emerging method that uses light to manipulate electrical activity in excitable ce...
Cardiac tissue is an excitable system that can support complex spatiotemporal dynamics, including in...
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 ...
Detailed understanding of mechanisms and instabilities underlying the onset, perpetuation, and contr...
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 ...
State-of-the-art innovations in optical cardiac electrophysiology are significantly enhancing cardia...
Optical techniques for recording and manipulating cellular electrophysiology have advanced rapidly i...
Optical techniques for recording and manipulating cellular electrophysiology have advanced rapidly i...