The Hodgkin-Huxley model of the nerve axon describes excitation and propagation of the nerve impulse by means of a nonlinear partial differential equation. This equation relates the conservation of the electric current along the cablelike structure of the axon to the active processes represented by a system of three rate equations for the transport of ions through the nerve membrane. These equations have been integrated numerically with respect to both distance and time for boundary conditions corresponding to a finite length of squid axon stimulated intracellularly at its midpoint. Computations were made for the threshold strength-duration curve and for the repetitive firing of propagated impulses in response to a maintained stimulus. Thes...
This is the first in a series of four papers in which we present the numerical simulation of the app...
In this expository paper some key problems of nerve pulse dynamics are briefly analysed. ...
In this expository paper some key problems of nerve pulse dynamics are briefly analysed. ...
The Hodgkin-Huxley model of the nerve axon describes excitation and propagation of the nerve impulse...
The effect of varying membrane capacitance, conductance, and rate constants on the properties of the...
A mathematical model of the electrical properties of a myelinated nerve fiber is given, consisting o...
The space-clamped squid axon membrane and two versions of the Hodgkin-Huxley model (the original, an...
Van der Pol's equation for a relaxation oscillator is generalized by the addition of terms to produc...
The classical cable equation, in which membrane conductance is considered constant, is modified by i...
The Hodgkin-Huxley equations, originally developed to describe the electrical events in the squid gi...
Van der Pol's equation for a relaxation oscillator is generalized by the addition of terms to produc...
AbstractWe introduce an approximation scheme for the Hodgkin–Huxley model of nerve conductance that ...
ABSTRACT Van der Pol's equation for a relaxation oscillator is generalized by the addition of t...
The classical cable equation, in which membrane conductance is considered constant, is modified by i...
The effect of varying membrane capacitance, conductance, and rate constants on the properties of the...
This is the first in a series of four papers in which we present the numerical simulation of the app...
In this expository paper some key problems of nerve pulse dynamics are briefly analysed. ...
In this expository paper some key problems of nerve pulse dynamics are briefly analysed. ...
The Hodgkin-Huxley model of the nerve axon describes excitation and propagation of the nerve impulse...
The effect of varying membrane capacitance, conductance, and rate constants on the properties of the...
A mathematical model of the electrical properties of a myelinated nerve fiber is given, consisting o...
The space-clamped squid axon membrane and two versions of the Hodgkin-Huxley model (the original, an...
Van der Pol's equation for a relaxation oscillator is generalized by the addition of terms to produc...
The classical cable equation, in which membrane conductance is considered constant, is modified by i...
The Hodgkin-Huxley equations, originally developed to describe the electrical events in the squid gi...
Van der Pol's equation for a relaxation oscillator is generalized by the addition of terms to produc...
AbstractWe introduce an approximation scheme for the Hodgkin–Huxley model of nerve conductance that ...
ABSTRACT Van der Pol's equation for a relaxation oscillator is generalized by the addition of t...
The classical cable equation, in which membrane conductance is considered constant, is modified by i...
The effect of varying membrane capacitance, conductance, and rate constants on the properties of the...
This is the first in a series of four papers in which we present the numerical simulation of the app...
In this expository paper some key problems of nerve pulse dynamics are briefly analysed. ...
In this expository paper some key problems of nerve pulse dynamics are briefly analysed. ...