This paper shows how Brownian motion theory can be used to analyze features of individual ion trajectories in channels as calculated by molecular dynamics, and that its use permits more precise determinations of diffusion coefficients than would otherwise be possible. We also show how a consideration of trajectories of single particles can distinguish between effects due to the magnitude of the diffusion coefficient and effects due to barriers and wells in the potential profile, effects which can not be distinguished by consideration of average fluxes
Molecular dynamics studies for the voltage-driven transport of the alkali metal ions lithium, sodium...
AbstractKramers’ diffusion theory of reaction rates in the condensed phase is considered as an alter...
AbstractIn the narrow segment of an ion conducting pathway, it is likely that a permeating ion influ...
220 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1983.The purpose of this thesis is...
Using a combination of techniques, including molecular dynamics, time-correlation analysis, stochast...
We review the basic physics involved in transport of ions across membrane channels in cells. Electro...
Using a combination of techniques, including molecular dynamics, time-correlation analysis, stochast...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...
The behavior of a multiply-occupied cation-selective channel has been computed by Brownian dynamics....
AbstractBrownian dynamics simulations have been carried out to study ionic currents flowing across a...
113 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2005.The ion permeation through ce...
113 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2005.The ion permeation through ce...
This is the published version. Copyright 2000 by Elsevier B. V.A computational algorithm based on Gr...
This is the published version. Copyright 2000 by Elsevier B. V.A computational algorithm based on Gr...
Molecular dynamics studies for the voltage-driven transport of the alkali metal ions lithium, sodium...
AbstractKramers’ diffusion theory of reaction rates in the condensed phase is considered as an alter...
AbstractIn the narrow segment of an ion conducting pathway, it is likely that a permeating ion influ...
220 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1983.The purpose of this thesis is...
Using a combination of techniques, including molecular dynamics, time-correlation analysis, stochast...
We review the basic physics involved in transport of ions across membrane channels in cells. Electro...
Using a combination of techniques, including molecular dynamics, time-correlation analysis, stochast...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...
The behavior of a multiply-occupied cation-selective channel has been computed by Brownian dynamics....
AbstractBrownian dynamics simulations have been carried out to study ionic currents flowing across a...
113 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2005.The ion permeation through ce...
113 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2005.The ion permeation through ce...
This is the published version. Copyright 2000 by Elsevier B. V.A computational algorithm based on Gr...
This is the published version. Copyright 2000 by Elsevier B. V.A computational algorithm based on Gr...
Molecular dynamics studies for the voltage-driven transport of the alkali metal ions lithium, sodium...
AbstractKramers’ diffusion theory of reaction rates in the condensed phase is considered as an alter...
AbstractIn the narrow segment of an ion conducting pathway, it is likely that a permeating ion influ...