Nearly linear current-voltage curves are frequently found in biological ion channels. Using the drift limit of the substantially non-linear Poisson-Nernst-Planck equations, we explain such behavior of diffusion-controlled charge transport systems. Starting from Gauss' law, drift, and continuity equations we derive a simple analytical current-voltage relation, which accounts for this deviation from linearity. As shown previously, the drift limit of the Nernst-Planck equation applies if the total electric current is dominated by the electric field, and integral contributions from concentration gradients are small. The simple analytical form of the drift current-voltage relations makes it an ideal tool to analyze experiment current-voltage cur...
The solution for the ion flux through a membrane channel that incorporates the electrolyte nature of...
Ionic channels play an important role in regulating the cell’s membrane potential and internal charg...
Dynamics of Poisson-Nernst-Planck systems and its applications to ion channels are studied in this d...
Nearly linear current-voltage curves are frequently found in biological ion channels. Using the drif...
The movement of ions in the aqueous medium as they approach the mouth (radius a) of a conducting mem...
In this article a theory is presented to calculate integral properties of biological ion channels (l...
The Poisson-Nernst-Planck equations describe the dynamics of charge transport in an electric field. ...
An electrodiffusion model for plasma membrane ion transport, which takes into account the influence ...
<div><p>Electrical signaling allows communication within and between different tissues and is necess...
Using the linear Poisson-Nernst-Planck impedance-response continuum model, we investigate the possib...
Single charge densities and the potential are used to describe models of electrochemical systems. Th...
The ionic distribution induced by an external field is investigated by means of the Poisson-Nernst- ...
We test the validity of the mean-field approximation in Poisson-Nernst- Planck theory by contrasting...
73 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2007.Ion channels are proteins embe...
Ion transport between two baths of fixed ionic concentrations and applied electrostatic (ES) potenti...
The solution for the ion flux through a membrane channel that incorporates the electrolyte nature of...
Ionic channels play an important role in regulating the cell’s membrane potential and internal charg...
Dynamics of Poisson-Nernst-Planck systems and its applications to ion channels are studied in this d...
Nearly linear current-voltage curves are frequently found in biological ion channels. Using the drif...
The movement of ions in the aqueous medium as they approach the mouth (radius a) of a conducting mem...
In this article a theory is presented to calculate integral properties of biological ion channels (l...
The Poisson-Nernst-Planck equations describe the dynamics of charge transport in an electric field. ...
An electrodiffusion model for plasma membrane ion transport, which takes into account the influence ...
<div><p>Electrical signaling allows communication within and between different tissues and is necess...
Using the linear Poisson-Nernst-Planck impedance-response continuum model, we investigate the possib...
Single charge densities and the potential are used to describe models of electrochemical systems. Th...
The ionic distribution induced by an external field is investigated by means of the Poisson-Nernst- ...
We test the validity of the mean-field approximation in Poisson-Nernst- Planck theory by contrasting...
73 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2007.Ion channels are proteins embe...
Ion transport between two baths of fixed ionic concentrations and applied electrostatic (ES) potenti...
The solution for the ion flux through a membrane channel that incorporates the electrolyte nature of...
Ionic channels play an important role in regulating the cell’s membrane potential and internal charg...
Dynamics of Poisson-Nernst-Planck systems and its applications to ion channels are studied in this d...