Electric field stimulation is widely used for heart pacing and arrhythmia reversion. In this study, we analysed the influence of waveform and direction of external stimulating electric field on the excitation threshold of isolated ventricular myocytes. The threshold field (E(T)) was lower when the field was applied longitudinally (E(T,L)) rather than transversally (E(T,T)) to the cell major axis. Rheobase was greater for transversal stimulation, but chronaxie and estimated membrane polarization were similar for both directions. The calculated maximal variation in membrane potential at the threshold (DeltaV(T) approximately 15 mV) was insensitive to field direction. As DeltaV(T) values were similar, we assumed that the E(T,T)/E(T,L) ratio mi...
Propagated wavefronts were produced by mechanical stimulation at points located deeply within the my...
A phenomenon of bipolar cancellation stands for the suppression of bioeffects of nanosecond electric...
External electric fields (E) induce a spatially heterogeneous variation in the membrane potential (D...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Coordenação de Aperfeiçoamento d...
Abstract Introduction Cardiovascular diseases represent a major cause of death world-wide and one ...
Electrical stimulation of cardiac cells by imposed extracellular electric fields results in a transm...
AbstractTransmembrane potential responses of single cardiac cells stimulated at rest were studied wi...
Application of high intensity electric fields (HIEF) to the myocardium is commonly used for cardiac ...
We evaluated transmembrane potential changes at the ends of isolated rabbit ventricular myocytes dur...
Although high-intensity electric fields (HEF) application is currently the only effective therapy av...
The mechanism of biphasic waveform defibrillation threshold reduction is unknown. We tested the hypo...
Studies on cardiac cell response to electric field stimulation are important for understanding basic...
The mechanisms by which extracellular electric field stimuli induce the (re)excitation of cardiac ce...
To fully understand the mechanisms of defibrillation, it is critical to know how a given electrical ...
Propagated wavefronts were produced by mechanical stimulation at points located deeply within the my...
A phenomenon of bipolar cancellation stands for the suppression of bioeffects of nanosecond electric...
External electric fields (E) induce a spatially heterogeneous variation in the membrane potential (D...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Coordenação de Aperfeiçoamento d...
Abstract Introduction Cardiovascular diseases represent a major cause of death world-wide and one ...
Electrical stimulation of cardiac cells by imposed extracellular electric fields results in a transm...
AbstractTransmembrane potential responses of single cardiac cells stimulated at rest were studied wi...
Application of high intensity electric fields (HIEF) to the myocardium is commonly used for cardiac ...
We evaluated transmembrane potential changes at the ends of isolated rabbit ventricular myocytes dur...
Although high-intensity electric fields (HEF) application is currently the only effective therapy av...
The mechanism of biphasic waveform defibrillation threshold reduction is unknown. We tested the hypo...
Studies on cardiac cell response to electric field stimulation are important for understanding basic...
The mechanisms by which extracellular electric field stimuli induce the (re)excitation of cardiac ce...
To fully understand the mechanisms of defibrillation, it is critical to know how a given electrical ...
Propagated wavefronts were produced by mechanical stimulation at points located deeply within the my...
A phenomenon of bipolar cancellation stands for the suppression of bioeffects of nanosecond electric...
External electric fields (E) induce a spatially heterogeneous variation in the membrane potential (D...