The highly selective permeation of ions through biological ion channels is an unsolved problem of noise and fluctuations. In this paper, we motivate and introduce a non-equilibrium and self-consistent multi-species kinetic model, with the express aims of comparing with experimental recordings of current versus voltage and concentration and extracting important permeation parameters. For self-consistency, the behavior of the model at the two-state, i.e., selective limit in linear response, must agree with recent results derived from an equilibrium statistical theory. The kinetic model provides a good fit to data, including the key result of an anomalous mole fraction effect
The permeation properties of ion channels existing in several conductive states were analyzed. Each ...
A self-consistent solution is derived for the Poisson-Nernst-Planck (PNP) equation, valid both insid...
Voltage-dependent ion channels are presently thought to consist of several distinct functional regio...
The highly selective permeation of ions through biological ion channels is an unsolved problem of no...
The highly selective permeation of ions through biological ion channels is an unsolved problem of no...
Biological ion channels are fundamental to maintaining life. In this manuscript we apply our recentl...
In this article we apply our multi-component statistical and linear response theory to the process o...
We report an experimental study of the influences of the fixed charge and bulk ionic concentrations ...
Biological ion channels are essential for maintaining life, and appear as a seemingly paradoxical co...
AbstractA rigorous statistical mechanical formulation of the equilibrium properties of selective ion...
Abstract Background. The selectivity of biological cation channels is defined by a short, narrow sel...
Thus, most site-directed mutagenesis data render it untenable to consider that two or more roughly e...
The conduction and selectivity of calcium/sodium ion channels are described in terms of ionic Coulom...
Ion channel selectivity is essential for their function, yet the molecular basis of a channel's abil...
We present an equilibrium statistical-mechanical theory of selectivity in biological ion channels. I...
The permeation properties of ion channels existing in several conductive states were analyzed. Each ...
A self-consistent solution is derived for the Poisson-Nernst-Planck (PNP) equation, valid both insid...
Voltage-dependent ion channels are presently thought to consist of several distinct functional regio...
The highly selective permeation of ions through biological ion channels is an unsolved problem of no...
The highly selective permeation of ions through biological ion channels is an unsolved problem of no...
Biological ion channels are fundamental to maintaining life. In this manuscript we apply our recentl...
In this article we apply our multi-component statistical and linear response theory to the process o...
We report an experimental study of the influences of the fixed charge and bulk ionic concentrations ...
Biological ion channels are essential for maintaining life, and appear as a seemingly paradoxical co...
AbstractA rigorous statistical mechanical formulation of the equilibrium properties of selective ion...
Abstract Background. The selectivity of biological cation channels is defined by a short, narrow sel...
Thus, most site-directed mutagenesis data render it untenable to consider that two or more roughly e...
The conduction and selectivity of calcium/sodium ion channels are described in terms of ionic Coulom...
Ion channel selectivity is essential for their function, yet the molecular basis of a channel's abil...
We present an equilibrium statistical-mechanical theory of selectivity in biological ion channels. I...
The permeation properties of ion channels existing in several conductive states were analyzed. Each ...
A self-consistent solution is derived for the Poisson-Nernst-Planck (PNP) equation, valid both insid...
Voltage-dependent ion channels are presently thought to consist of several distinct functional regio...