This study presents a simplified version of the quasi-one-dimensional theory (Wu, J., E. A. Johnson, and J. M. Kootsey. 1996. A quasi-one-dimensional theory for anisotropic propagation of excitation in cardiac muscle. Biophys. J. 71:2427–2439) with two components of the extracellular current, along and perpendicular to the axis, and a simulation and its experimental confirmation for the giant axon of the squid. By extending the one-dimensional core conductor cable equations, this theory predicts, as confirmed by the experiment, that the shapes of the intracellular and the extracellular action potentials are related to the resistance of the bath. Such a result was previously only expected by the field theories. The correlation between the sh...
We used numerical solutions for cable equations representing nonuniform cardiac strands to investiga...
In a train of impulses in squid giant axon, accumulation of extracellular potassium causes successiv...
We have used numerical methods for solving cable equations, combined with previously published mathe...
This study presents a simplified version of the quasi-one-dimensional theory (Wu, J., E. A. Johnson,...
It has been shown that propagation of excitation in cardiac muscle is anisotropic. Compared to propa...
It has been shown that propagation of excitation in cardiac muscle is anisotropic. Compared to propa...
It has been shown that propagation of excitation in cardiac muscle is anisotropic. Compared to propa...
The sodium conductance of the membrane of the giant axon of squid was isolated by the use of potassi...
Progress in the understanding of electrical activity in nerve axons was made possible by the contrib...
The solutions, n(t), of the differential equation dn/dt = α (1 - n) n (4 - 6n + 4n2 - n3) - βn2 (4 -...
The classical cable equation, in which membrane conductance is considered constant, is modified by i...
In a train of impulses in squid giant axon, accumulation of extracellular potassium causes successiv...
The first impedance data on the squid giant axon gave a lossy membrane capacity of 1 muF/cm2 from 1–...
The experimental data for the giant squid axon propagated action potential is examined in phase spac...
Recent theoretical models of cardiac electrical stimulation or defibrillation predict a complex spat...
We used numerical solutions for cable equations representing nonuniform cardiac strands to investiga...
In a train of impulses in squid giant axon, accumulation of extracellular potassium causes successiv...
We have used numerical methods for solving cable equations, combined with previously published mathe...
This study presents a simplified version of the quasi-one-dimensional theory (Wu, J., E. A. Johnson,...
It has been shown that propagation of excitation in cardiac muscle is anisotropic. Compared to propa...
It has been shown that propagation of excitation in cardiac muscle is anisotropic. Compared to propa...
It has been shown that propagation of excitation in cardiac muscle is anisotropic. Compared to propa...
The sodium conductance of the membrane of the giant axon of squid was isolated by the use of potassi...
Progress in the understanding of electrical activity in nerve axons was made possible by the contrib...
The solutions, n(t), of the differential equation dn/dt = α (1 - n) n (4 - 6n + 4n2 - n3) - βn2 (4 -...
The classical cable equation, in which membrane conductance is considered constant, is modified by i...
In a train of impulses in squid giant axon, accumulation of extracellular potassium causes successiv...
The first impedance data on the squid giant axon gave a lossy membrane capacity of 1 muF/cm2 from 1–...
The experimental data for the giant squid axon propagated action potential is examined in phase spac...
Recent theoretical models of cardiac electrical stimulation or defibrillation predict a complex spat...
We used numerical solutions for cable equations representing nonuniform cardiac strands to investiga...
In a train of impulses in squid giant axon, accumulation of extracellular potassium causes successiv...
We have used numerical methods for solving cable equations, combined with previously published mathe...