A model for ion movement through specialized sites in the plasma membrane is presented and analyzed using techniques from nonequilibrium kinetic theory. It is assumed that ions traversing these specialized regions interact with membrane molecules through central conservative forces. The membrane molecules are approximated as massive spherical scattering centers so that ionic fractional energy losses per collision are much less than one. Equations for steady-state membrane ionic currents and conductances as functions of externally applied electric field strength are derived and numerically analyzed, under the restriction of identical solutions on each size of the membrane and constant electric fields within the membrane. The analysis is carr...
AbstractThis paper shows that the selectivity properties of monovalent cation channels found in biol...
Ions crossing biological membranes are described as a concentration of charge flowing through a sele...
In this article a theory is presented to calculate integral properties of biological ion channels (l...
An electrodiffusion model for plasma membrane ion transport, which takes into account the influence ...
The equation presented in the previous paper for steady-state membrane ionic current as a function o...
The equation presented in the previous paper for steady-state membrane ionic current as a function o...
We have examined the steady-state and time-dependent electrical properties of a model membrane syste...
The usual assumption in treating the diffusion of ions in an electric field has been that the moveme...
A kinetic analysis of membrane conductance under conditions of stationary flow is presented. The sem...
In this note, we analyze ionic transport in lipid model bilayers across pre-existing transmembrane w...
A statistical mechanical model of cell membrane ion channels is proposed which incorporates interact...
Abstract. We discuss various models of ion transport through cell membrane channels. Recent experime...
A mathematical model for the simulation of ion and solvent transport within an ion-exchange membrane...
This book illustrates some of the ways physics and mathematics have been, and are being, used to elu...
The movement of ions in the aqueous medium as they approach the mouth (radius a) of a conducting mem...
AbstractThis paper shows that the selectivity properties of monovalent cation channels found in biol...
Ions crossing biological membranes are described as a concentration of charge flowing through a sele...
In this article a theory is presented to calculate integral properties of biological ion channels (l...
An electrodiffusion model for plasma membrane ion transport, which takes into account the influence ...
The equation presented in the previous paper for steady-state membrane ionic current as a function o...
The equation presented in the previous paper for steady-state membrane ionic current as a function o...
We have examined the steady-state and time-dependent electrical properties of a model membrane syste...
The usual assumption in treating the diffusion of ions in an electric field has been that the moveme...
A kinetic analysis of membrane conductance under conditions of stationary flow is presented. The sem...
In this note, we analyze ionic transport in lipid model bilayers across pre-existing transmembrane w...
A statistical mechanical model of cell membrane ion channels is proposed which incorporates interact...
Abstract. We discuss various models of ion transport through cell membrane channels. Recent experime...
A mathematical model for the simulation of ion and solvent transport within an ion-exchange membrane...
This book illustrates some of the ways physics and mathematics have been, and are being, used to elu...
The movement of ions in the aqueous medium as they approach the mouth (radius a) of a conducting mem...
AbstractThis paper shows that the selectivity properties of monovalent cation channels found in biol...
Ions crossing biological membranes are described as a concentration of charge flowing through a sele...
In this article a theory is presented to calculate integral properties of biological ion channels (l...