A self-consistent analytic approach is introduced for the estimation of the access resistance and the current through an open ion channel for an arbitrary number of species. For an ion current flowing radially inward from infinity to the channel mouth, the Poisson-Boltzmann-Nernst-Planck equations are solved analytically in the bulk with spherical symmetry in three dimensions, by linearization. Within the channel, the Poisson-Nernst-Planck equation is solved analytically in a one-dimensional approximation. An iterative procedure is used to match the two solutions together at the channel mouth in a self-consistent way. It is shown that the currentvoltage characteristics obtained are in good quantitative agreement with experimental measuremen...
We demonstrated previously that the two continuum theories widely used in modeling biological ion ch...
AbstractIon conduction through microscopic channels is of central importance in both biology and nan...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...
Ionic motion in the bulk solution away from the mouth of a biological ion channel, and inside the ch...
A self-consistent solution is derived for the Poisson-Nernst-Planck (PNP) equation, valid both insid...
We present an exact solution to the linearized Nernst-Planck-Poisson equation for spherically symmet...
The synthetic channel [acetyl-(LeuSerSerLeuLeuSerLeu)3-CONH2]6 (pore diameter approximately 8 A, len...
AbstractWe have considered the access resistance (AR) of a single conducting channel placed in a mem...
The movement of ions in the aqueous medium as they approach the mouth (radius a) of a conducting mem...
Important properties of ion channels can be described by a steady state Poisson-Nernst-Plank system ...
In this thesis, we develop the theoretical and numerical foundations for a self-consistent model for...
AbstractWe demonstrated previously that the two continuum theories widely used in modeling biologica...
Ionic motion through an open ion channel is analyzed within the framework of self-consistent Brownia...
Dynamics of Poisson-Nernst-Planck systems and its applications to ion channels are studied in this d...
We study the event of ion flow through ion channel proteins modeled with a one-dimensional Poisson-N...
We demonstrated previously that the two continuum theories widely used in modeling biological ion ch...
AbstractIon conduction through microscopic channels is of central importance in both biology and nan...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...
Ionic motion in the bulk solution away from the mouth of a biological ion channel, and inside the ch...
A self-consistent solution is derived for the Poisson-Nernst-Planck (PNP) equation, valid both insid...
We present an exact solution to the linearized Nernst-Planck-Poisson equation for spherically symmet...
The synthetic channel [acetyl-(LeuSerSerLeuLeuSerLeu)3-CONH2]6 (pore diameter approximately 8 A, len...
AbstractWe have considered the access resistance (AR) of a single conducting channel placed in a mem...
The movement of ions in the aqueous medium as they approach the mouth (radius a) of a conducting mem...
Important properties of ion channels can be described by a steady state Poisson-Nernst-Plank system ...
In this thesis, we develop the theoretical and numerical foundations for a self-consistent model for...
AbstractWe demonstrated previously that the two continuum theories widely used in modeling biologica...
Ionic motion through an open ion channel is analyzed within the framework of self-consistent Brownia...
Dynamics of Poisson-Nernst-Planck systems and its applications to ion channels are studied in this d...
We study the event of ion flow through ion channel proteins modeled with a one-dimensional Poisson-N...
We demonstrated previously that the two continuum theories widely used in modeling biological ion ch...
AbstractIon conduction through microscopic channels is of central importance in both biology and nan...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...