A variety of experimental observations in Myxicola and other preparations indicate that the sodium conductance, gNa, has properties quite different from those described by the m and h variables of Hodgkin and Huxley. A new quantitative description of the gNa is presented in which the gNa is assumed to be proportional to the fifth power of a generalized second-order variable, i.e., gNa = g'Na times v to the fifth, v = -Kav + K2U = K3, U = K4U + K5v + K6. This model is shown to be able to quantitatively simulate all of the experimentally observed behavior of the gNa. A view of the sodium gate consistent with these kinetics is to imagine it to be composed of five independent subunits, each of the type A eq. B eq. C eq. A where A represents the...
Internally perfused and pronase-treated giant axons were prepared for gating current measurements. G...
The conductance changes, gK(t) and gNa(t), of squid giant axon under voltage clamp (Hodgkin and Huxl...
Myxicola giant axons internally injected with tetraethylammonium chloride to block potassium current...
Sodium currents after repolarization to more negative potentials after initial activation were digit...
Values for the time constant of reactivation of the sodium conductance following depolarization suff...
Analyses of inactivation experiments performed on unperfused axons of the squid have been compared w...
In Myxicola axons subjected to moderate depolarizations the sodium inactivation time constants obtai...
A number of models proposed to account for the sodium conductance changes are shown to fall into two...
Aggregation kinetics, in contrast to the Hodgkin-Huxley equations, predict that if an axon is subjec...
The voltage clamp results of Hodgkin and Huxley have been reanalyzed in terms of alternative mathema...
We describe a kinetic reaction sequence for the sodium conductance system in the squid axon. It clos...
Values for the time constant of reactivation of the sodium conductance following depolarization suff...
In some preparations the time constant of Na current inactivation determined with two pulses (tau c)...
Experiments on sodium channel inactivation kinetics were performed on voltage-clamped crayfish giant...
In dialyzed Myxicola axons substitution of heavy water (D2O) externally and internally slows both so...
Internally perfused and pronase-treated giant axons were prepared for gating current measurements. G...
The conductance changes, gK(t) and gNa(t), of squid giant axon under voltage clamp (Hodgkin and Huxl...
Myxicola giant axons internally injected with tetraethylammonium chloride to block potassium current...
Sodium currents after repolarization to more negative potentials after initial activation were digit...
Values for the time constant of reactivation of the sodium conductance following depolarization suff...
Analyses of inactivation experiments performed on unperfused axons of the squid have been compared w...
In Myxicola axons subjected to moderate depolarizations the sodium inactivation time constants obtai...
A number of models proposed to account for the sodium conductance changes are shown to fall into two...
Aggregation kinetics, in contrast to the Hodgkin-Huxley equations, predict that if an axon is subjec...
The voltage clamp results of Hodgkin and Huxley have been reanalyzed in terms of alternative mathema...
We describe a kinetic reaction sequence for the sodium conductance system in the squid axon. It clos...
Values for the time constant of reactivation of the sodium conductance following depolarization suff...
In some preparations the time constant of Na current inactivation determined with two pulses (tau c)...
Experiments on sodium channel inactivation kinetics were performed on voltage-clamped crayfish giant...
In dialyzed Myxicola axons substitution of heavy water (D2O) externally and internally slows both so...
Internally perfused and pronase-treated giant axons were prepared for gating current measurements. G...
The conductance changes, gK(t) and gNa(t), of squid giant axon under voltage clamp (Hodgkin and Huxl...
Myxicola giant axons internally injected with tetraethylammonium chloride to block potassium current...