AbstractAn enhanced sampling method—biased Brownian dynamics—is developed for the calculation of diffusion-limited biomolecular association reaction rates with high energy or entropy barriers. Biased Brownian dynamics introduces a biasing force in addition to the electrostatic force between the reactants, and it associates a probability weight with each trajectory. A simulation loses weight when movement is along the biasing force and gains weight when movement is against the biasing force. The sampling of trajectories is then biased, but the sampling is unbiased when the trajectory outcomes are multiplied by their weights. With a suitable choice of the biasing force, more reacted trajectories are sampled. As a consequence, the variance of ...
Calculating the kinetics of conformational changes in macromolecules, such as proteins and nucleic a...
International audienceThis article is concerned with the mathematical analysis of a family of adapti...
AbstractWe discuss here the implementation of the Weighted Ensemble Brownian (WEB) dynamics algorith...
AbstractAn enhanced sampling method—biased Brownian dynamics—is developed for the calculation of dif...
75 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2002.A reaction probability is requ...
AbstractA reaction probability is required to calculate the rate constant of a diffusion-dominated r...
A new method, weighted-ensemble Brownian dynamics, is proposed for the simulation of protein-associa...
Free energy calculations are central to understanding the structure, dynamics and function of biomol...
Molecular dynamics (MD) simulations are a powerful tool to follow the time evolution of biomolecular...
Even when the underlying dynamics are known, studying the emergent behavior of stochastic biological...
A new algorithm for calculating the rate constants of diffusion-influenced reactions from Brownian-d...
International audienceThe adaptive biasing force (ABF) scheme is a powerful molecular-dynamics based...
International audienceWe propose an adaptive biasing algorithm aimed at enhancing the sampling of mu...
A new Brownian dynamics simulation technique is presented for the calculation of the effective rate ...
Many recently introduced enhanced sampling techniques are based on biasing coarse descriptors (colle...
Calculating the kinetics of conformational changes in macromolecules, such as proteins and nucleic a...
International audienceThis article is concerned with the mathematical analysis of a family of adapti...
AbstractWe discuss here the implementation of the Weighted Ensemble Brownian (WEB) dynamics algorith...
AbstractAn enhanced sampling method—biased Brownian dynamics—is developed for the calculation of dif...
75 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2002.A reaction probability is requ...
AbstractA reaction probability is required to calculate the rate constant of a diffusion-dominated r...
A new method, weighted-ensemble Brownian dynamics, is proposed for the simulation of protein-associa...
Free energy calculations are central to understanding the structure, dynamics and function of biomol...
Molecular dynamics (MD) simulations are a powerful tool to follow the time evolution of biomolecular...
Even when the underlying dynamics are known, studying the emergent behavior of stochastic biological...
A new algorithm for calculating the rate constants of diffusion-influenced reactions from Brownian-d...
International audienceThe adaptive biasing force (ABF) scheme is a powerful molecular-dynamics based...
International audienceWe propose an adaptive biasing algorithm aimed at enhancing the sampling of mu...
A new Brownian dynamics simulation technique is presented for the calculation of the effective rate ...
Many recently introduced enhanced sampling techniques are based on biasing coarse descriptors (colle...
Calculating the kinetics of conformational changes in macromolecules, such as proteins and nucleic a...
International audienceThis article is concerned with the mathematical analysis of a family of adapti...
AbstractWe discuss here the implementation of the Weighted Ensemble Brownian (WEB) dynamics algorith...