AbstractInformation about intramural propagation of electrical excitation is crucial to understanding arrhythmia mechanisms in thick ventricular muscle. There is currently a controversy over whether it is possible to extract such information from the shape of the upstroke in optical mapping recordings. We show that even in the complex geometry of a whole guinea pig heart, optical upstroke morphology reveals the 3D wavefront orientation near the surface. To characterize the upstroke morphology, we use VF∗, the fractional level at which voltage-sensitive fluorescence, VF, has maximal time derivative. Low values of VF* (∼0.2) indicate a wavefront moving away from the surface, high values of VF* (∼0.4) a wavefront moving toward the surface, and...
Electrical signals measured during cardiac arrhythmias may be difficult to analyse and there are mul...
We have developed an electrophysiological computer model of the intact right and left ventricles of ...
AbstractVoltage-sensitive fluorescent dyes are commonly used to measure cardiac electrical activity....
ABSTRACT Information about intramural propagation of electrical excitation is crucial to understandi...
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...
Abstract—The analysis of surface-activation patterns and measurements of conduction velocity in vent...
AbstractOptical mapping using voltage-sensitive fluorescent dyes has become a major tool for studyin...
AbstractOptical mapping has become an indispensible tool for studying cardiac electrical activity. H...
AbstractOptical mapping with voltage-sensitive dyes provides a high-resolution technique to observe ...
Optical methods provide a rather precise insight into cardiac electrical activity. Voltage- sensitiv...
An automated analysis technique was applied to images of disorganized fibrillatory activation in a c...
Cardiac electrical excitation-propagation is influenced by myocyte orientations (cellular organizati...
.It is traditionally assumed that impulse propagation in cardiac muscle is determined by the combina...
<div><p>Background</p><p>Because of the optical features of heart tissue, optical and electrical act...
Electrical signals measured during cardiac arrhythmias may be difficult to analyse and there are mul...
We have developed an electrophysiological computer model of the intact right and left ventricles of ...
AbstractVoltage-sensitive fluorescent dyes are commonly used to measure cardiac electrical activity....
ABSTRACT Information about intramural propagation of electrical excitation is crucial to understandi...
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...
Abstract—The analysis of surface-activation patterns and measurements of conduction velocity in vent...
AbstractOptical mapping using voltage-sensitive fluorescent dyes has become a major tool for studyin...
AbstractOptical mapping has become an indispensible tool for studying cardiac electrical activity. H...
AbstractOptical mapping with voltage-sensitive dyes provides a high-resolution technique to observe ...
Optical methods provide a rather precise insight into cardiac electrical activity. Voltage- sensitiv...
An automated analysis technique was applied to images of disorganized fibrillatory activation in a c...
Cardiac electrical excitation-propagation is influenced by myocyte orientations (cellular organizati...
.It is traditionally assumed that impulse propagation in cardiac muscle is determined by the combina...
<div><p>Background</p><p>Because of the optical features of heart tissue, optical and electrical act...
Electrical signals measured during cardiac arrhythmias may be difficult to analyse and there are mul...
We have developed an electrophysiological computer model of the intact right and left ventricles of ...
AbstractVoltage-sensitive fluorescent dyes are commonly used to measure cardiac electrical activity....