Advances in experimental and computational techniques allow us to study the structure and dynamics of large biomolecular assemblies at increasingly higher resolution. However, with increasing structural detail it can be challenging to unravel the mechanism underlying the function of molecular machines. One reason is that atomistic simulations become computationally prohibitive. Moreover it is difficult to rationalize the functional mechanism of systems composed of tens of thousands to millions of atoms by following each atom's movements. Coarse graining (CG) allows us to understand biological structures from a hierarchical perspective and to gradually zoom into the adequate level of structural detail. This article introduces a Bayesian appr...
We review the state-of-the-art in computational molecular simulations for biological systems. We lim...
AbstractCoarse-grained (CG) models of biomolecules have recently attracted considerable interest bec...
Molecular dynamics simulations at the atomic scale are a powerful tool to study the structure and dy...
Advances in experimental and computational techniques allow us to study the structure and dynamics o...
Computational modeling of biological systems is challenging because of the multitude of spatial and ...
We present an algorithm to reconstruct atomistic structures from their corresponding coarse-grained ...
Coarse-grained (CG) simulations have allowed access to larger length scales and longer time scales i...
Atomistic or ab-initio molecular dynamics simulations are widely used to predict thermodynamics and ...
ConspectusDue to hierarchic nature of biomolecular systems, their computational modeling calls for m...
The molecular machinery of life is largely created via self-organisation of individual molecules int...
Coarse grain (CG) models allow long-scale simulations with a much lower computational cost than that...
Within last 20 years, advances in computational power and methodology have made computer simulations...
We review some of the computational methods that have been recently applied to the study of biologic...
All-atom Molecular Dynamics (MD) is the standard approach to perform in silico simulations of biomol...
A series of coarse-grained models have been developed for study of the molecular dynamics of RNA nan...
We review the state-of-the-art in computational molecular simulations for biological systems. We lim...
AbstractCoarse-grained (CG) models of biomolecules have recently attracted considerable interest bec...
Molecular dynamics simulations at the atomic scale are a powerful tool to study the structure and dy...
Advances in experimental and computational techniques allow us to study the structure and dynamics o...
Computational modeling of biological systems is challenging because of the multitude of spatial and ...
We present an algorithm to reconstruct atomistic structures from their corresponding coarse-grained ...
Coarse-grained (CG) simulations have allowed access to larger length scales and longer time scales i...
Atomistic or ab-initio molecular dynamics simulations are widely used to predict thermodynamics and ...
ConspectusDue to hierarchic nature of biomolecular systems, their computational modeling calls for m...
The molecular machinery of life is largely created via self-organisation of individual molecules int...
Coarse grain (CG) models allow long-scale simulations with a much lower computational cost than that...
Within last 20 years, advances in computational power and methodology have made computer simulations...
We review some of the computational methods that have been recently applied to the study of biologic...
All-atom Molecular Dynamics (MD) is the standard approach to perform in silico simulations of biomol...
A series of coarse-grained models have been developed for study of the molecular dynamics of RNA nan...
We review the state-of-the-art in computational molecular simulations for biological systems. We lim...
AbstractCoarse-grained (CG) models of biomolecules have recently attracted considerable interest bec...
Molecular dynamics simulations at the atomic scale are a powerful tool to study the structure and dy...