Ion channels are protein macromolecules that form biological nanotubes across the membranes of living cells. Given many possible geometrical shapes of an ion channel, we propose a computational scheme of selecting the model that best replicates experimental observations, using adaptive Brownian dynamics simulations together with discrete optimization algorithms. Brownian dynamics simulations emulate the propagation of individual ions through the sodium channel nanotube at a femto time second time scale and Angstrom unit (10-10 meter) spatial scale
AbstractA computational algorithm based on Grand Canonical Monte Carlo (GCMC) and Brownian Dynamics ...
The contribution provides the description of a simulator based on the brownian Dynamics methods for ...
Ion channels are part of nature???s solution for regulating biological environments. Every ion chann...
Biological ion channels are water-filled angstrom-unit (1 angstrom unit=10-10 m)sized pores formed b...
1. The transport process of ions across the potassium channel is studied using computer simulations....
The principles underlying Brownian dynamics (BD), its statistical consistency, and algorithms for pr...
The simulation of ion transport in biological ion channels presents numerous interesting challenges....
Biological ion channels are responsible for, and regulate the communication system in the body. In t...
Purpose: Comparison of the computed characteristics and physiological measurement of ion transport t...
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...
AbstractBrownian dynamics simulations have been carried out to study ionic currents flowing across a...
Ion channels are pore-forming proteins that regulate the flow of ions across biological cell membran...
ABSTRACT A computational algorithm based on Grand Canonical Monte Carlo (GCMC) and Brownian Dynamics...
AbstractBrownian dynamics simulations have been carried out to study ionic currents flowing across a...
AbstractA computational algorithm based on Grand Canonical Monte Carlo (GCMC) and Brownian Dynamics ...
The contribution provides the description of a simulator based on the brownian Dynamics methods for ...
Ion channels are part of nature???s solution for regulating biological environments. Every ion chann...
Biological ion channels are water-filled angstrom-unit (1 angstrom unit=10-10 m)sized pores formed b...
1. The transport process of ions across the potassium channel is studied using computer simulations....
The principles underlying Brownian dynamics (BD), its statistical consistency, and algorithms for pr...
The simulation of ion transport in biological ion channels presents numerous interesting challenges....
Biological ion channels are responsible for, and regulate the communication system in the body. In t...
Purpose: Comparison of the computed characteristics and physiological measurement of ion transport t...
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...
AbstractBrownian dynamics simulations have been carried out to study ionic currents flowing across a...
Ion channels are pore-forming proteins that regulate the flow of ions across biological cell membran...
ABSTRACT A computational algorithm based on Grand Canonical Monte Carlo (GCMC) and Brownian Dynamics...
AbstractBrownian dynamics simulations have been carried out to study ionic currents flowing across a...
AbstractA computational algorithm based on Grand Canonical Monte Carlo (GCMC) and Brownian Dynamics ...
The contribution provides the description of a simulator based on the brownian Dynamics methods for ...
Ion channels are part of nature???s solution for regulating biological environments. Every ion chann...