AbstractOptical mapping has become an indispensible tool for studying cardiac electrical activity. However, due to the three-dimensional nature of the optical signal, the optical upstroke is significantly longer than the electrical upstroke. This raises the issue of how to accurately determine the activation time on the epicardial surface. The purpose of this study was to establish a link between the optical upstroke and exact surface activation time using computer simulations, with subsequent validation by a combination of microelectrode recordings and optical mapping experiments. To simulate wave propagation and associated optical signals, we used a hybrid electro-optical model. We found that the time of the surface electrical activation ...
The concept of mapping rhythmic activation of the heart dates back to the beginning of last century,...
The emergence of optical imaging has revolutionized the investigation of cardiac electrical activity...
The non-invasive technique of optical mapping by using voltage-sensitive fluorescent dyes (VSFD), es...
AbstractOptical mapping has become an indispensible tool for studying cardiac electrical activity. H...
AbstractVoltage-sensitive fluorescent dyes are commonly used to measure cardiac electrical activity....
AbstractOptical mapping using voltage-sensitive fluorescent dyes has become a major tool for studyin...
Abstract—The analysis of surface-activation patterns and measurements of conduction velocity in vent...
AbstractInformation about intramural propagation of electrical excitation is crucial to understandin...
Abstract—The analysis of surface-activation patterns and measurements of conduction velocity in vent...
<div><p>Background</p><p>Because of the optical features of heart tissue, optical and electrical act...
Optical mapping is an important tool for assessment of cardiac electrophysiology. We demonstrate a s...
AbstractOptical mapping with voltage-sensitive dyes provides a high-resolution technique to observe ...
Introduction: High pacing frequency or irregular activity due to arrhythmia produces complex optical...
Because of the optical features of heart tissue, optical and electrical action potentials are only m...
Recent advances in the development of noninvasive cardiac imaging technologies have made it possible...
The concept of mapping rhythmic activation of the heart dates back to the beginning of last century,...
The emergence of optical imaging has revolutionized the investigation of cardiac electrical activity...
The non-invasive technique of optical mapping by using voltage-sensitive fluorescent dyes (VSFD), es...
AbstractOptical mapping has become an indispensible tool for studying cardiac electrical activity. H...
AbstractVoltage-sensitive fluorescent dyes are commonly used to measure cardiac electrical activity....
AbstractOptical mapping using voltage-sensitive fluorescent dyes has become a major tool for studyin...
Abstract—The analysis of surface-activation patterns and measurements of conduction velocity in vent...
AbstractInformation about intramural propagation of electrical excitation is crucial to understandin...
Abstract—The analysis of surface-activation patterns and measurements of conduction velocity in vent...
<div><p>Background</p><p>Because of the optical features of heart tissue, optical and electrical act...
Optical mapping is an important tool for assessment of cardiac electrophysiology. We demonstrate a s...
AbstractOptical mapping with voltage-sensitive dyes provides a high-resolution technique to observe ...
Introduction: High pacing frequency or irregular activity due to arrhythmia produces complex optical...
Because of the optical features of heart tissue, optical and electrical action potentials are only m...
Recent advances in the development of noninvasive cardiac imaging technologies have made it possible...
The concept of mapping rhythmic activation of the heart dates back to the beginning of last century,...
The emergence of optical imaging has revolutionized the investigation of cardiac electrical activity...
The non-invasive technique of optical mapping by using voltage-sensitive fluorescent dyes (VSFD), es...