Action potential propagation through cardiac tissue occurs in a spatially inhomogeneous three-dimensional electrical syncytium composed of discrete cells with regional variations in membrane properties and intercellular resistance. In comparison with axons, cardiac tissue presents some differences in the application of core conductor cable theory. We have used analytical and numerical techniques to contrast the propagation of action potentials along nerve axons and along cardiac strands, including an explicit inclusion of cellular anatomical factors (the surface-to-volume ratio), the strand radius, and the regional distribution of longitudinal resistance. A localized decrease in the number of gap junctions will produce a functional resistiv...
The intracellular and interstitial potentials associated with each cell or fiber in multicellular pr...
AbstractThe gap junction and voltage-gated Na+ channel play an important role in the action potentia...
In canine Purkinje fiber-papillary muscle preparations it was shown directly that electrotonic sprea...
We have used numerical methods for solving cable equations, combined with previously published mathe...
We used numerical solutions for cable equations representing nonuniform cardiac strands to investiga...
We have used numerical methods for solving cable equations, combined with previously published mathe...
Cable theory and active equivalent circuits have been used to simulate the propagation of action pot...
We used numerical solutions for cable equations representing nonuniform cardiac strands to investiga...
A model of the electrical activity of excitable membrane was used to simulate action potential propa...
For many years, local circuit current through gap junctions has been seemed to be the main fundament...
Impulse propagation in biological tissues is known to be modulated by structural heterogeneity. In c...
AbstractSpatial dispersion of refractoriness, which is amplified by genetic diseases, drugs, and ele...
Impulse propagation in biological tissues is known to be modulated by structural heterogeneity. In ...
Impulse propagation in biological tissues is known to be modulated by structural heterogeneity. In c...
Impulse propagation in biological tissues is known to be modulated by structural heterogeneity. In ...
The intracellular and interstitial potentials associated with each cell or fiber in multicellular pr...
AbstractThe gap junction and voltage-gated Na+ channel play an important role in the action potentia...
In canine Purkinje fiber-papillary muscle preparations it was shown directly that electrotonic sprea...
We have used numerical methods for solving cable equations, combined with previously published mathe...
We used numerical solutions for cable equations representing nonuniform cardiac strands to investiga...
We have used numerical methods for solving cable equations, combined with previously published mathe...
Cable theory and active equivalent circuits have been used to simulate the propagation of action pot...
We used numerical solutions for cable equations representing nonuniform cardiac strands to investiga...
A model of the electrical activity of excitable membrane was used to simulate action potential propa...
For many years, local circuit current through gap junctions has been seemed to be the main fundament...
Impulse propagation in biological tissues is known to be modulated by structural heterogeneity. In c...
AbstractSpatial dispersion of refractoriness, which is amplified by genetic diseases, drugs, and ele...
Impulse propagation in biological tissues is known to be modulated by structural heterogeneity. In ...
Impulse propagation in biological tissues is known to be modulated by structural heterogeneity. In c...
Impulse propagation in biological tissues is known to be modulated by structural heterogeneity. In ...
The intracellular and interstitial potentials associated with each cell or fiber in multicellular pr...
AbstractThe gap junction and voltage-gated Na+ channel play an important role in the action potentia...
In canine Purkinje fiber-papillary muscle preparations it was shown directly that electrotonic sprea...