The changes in transmembrane potential during a stimulation pulse in the heart are not known. We have used transmembrane potential sensitive dye fluorescence to measure changes in transmembrane potential along fibers in an anisotropic arterially perfused rabbit epicardial layer. Cathodal or anodal extracellular point stimulation produced changes in transmembrane potential within 60 microns of the electrode that were positive or negative, respectively. The changes in transmembrane potential did not simply decrease to zero with increasing distance, as would occur with a theoretical fiber space constant, but instead became reversed beyond approximately 1 mm from the electrode consistent with a virtual electrode effect. Even stimulation from a ...
Muscle contraction can introduce artifact in attempted optical measurements of the action potential ...
AbstractThis study investigated roles of the variation of extracellular voltage gradient (VG) over s...
<div><p>Background</p><p>Because of the optical features of heart tissue, optical and electrical act...
The changes in transmembrane potential during a stimulation pulse in the heart are not known. We hav...
Traditional cable analyses cannot explain complex patterns of excitation in cardiac tissue with unip...
Recent theoretical models of cardiac electrical stimulation or defibrillation predict a complex spat...
The mechanism of end-diastolic anodal stimulation of cardiac tissue did not receive clear experiment...
To fully understand the mechanisms of defibrillation, it is critical to know how a given electrical ...
Aims Cardiac unipolar electrode stimulations induce a particular structure of the transmembrane pote...
ABSTRACTDuring cardiac disturbances such as ischemia and hyperkalemia, the extracellular potassium i...
We evaluated transmembrane potential changes at the ends of isolated rabbit ventricular myocytes dur...
Virtual electrodes from structural/conductivity heterogeneities are known to elicit wavefront propag...
BackgroundVirtual electrodes from structural/conductivity heterogeneities are known to elicit wavefr...
A strong premature electrical stimulus (S(2)) induces both virtual anodes and virtual cathodes. The ...
Published studies have investigated the relevance of cardiac virtual electrode responses to unipolar...
Muscle contraction can introduce artifact in attempted optical measurements of the action potential ...
AbstractThis study investigated roles of the variation of extracellular voltage gradient (VG) over s...
<div><p>Background</p><p>Because of the optical features of heart tissue, optical and electrical act...
The changes in transmembrane potential during a stimulation pulse in the heart are not known. We hav...
Traditional cable analyses cannot explain complex patterns of excitation in cardiac tissue with unip...
Recent theoretical models of cardiac electrical stimulation or defibrillation predict a complex spat...
The mechanism of end-diastolic anodal stimulation of cardiac tissue did not receive clear experiment...
To fully understand the mechanisms of defibrillation, it is critical to know how a given electrical ...
Aims Cardiac unipolar electrode stimulations induce a particular structure of the transmembrane pote...
ABSTRACTDuring cardiac disturbances such as ischemia and hyperkalemia, the extracellular potassium i...
We evaluated transmembrane potential changes at the ends of isolated rabbit ventricular myocytes dur...
Virtual electrodes from structural/conductivity heterogeneities are known to elicit wavefront propag...
BackgroundVirtual electrodes from structural/conductivity heterogeneities are known to elicit wavefr...
A strong premature electrical stimulus (S(2)) induces both virtual anodes and virtual cathodes. The ...
Published studies have investigated the relevance of cardiac virtual electrode responses to unipolar...
Muscle contraction can introduce artifact in attempted optical measurements of the action potential ...
AbstractThis study investigated roles of the variation of extracellular voltage gradient (VG) over s...
<div><p>Background</p><p>Because of the optical features of heart tissue, optical and electrical act...