A novel methodology is introduced here to generate coarse-grained (CG) representations of molecular models for simulations. The proposed strategy relies on basic graph-theoretic principles and is referred to as graph-based coarse-graining (GBCG). It treats a given system as a molecular graph and derives a corresponding CG representation by using edge contractions to combine nodes in the graph, which correspond to atoms in the molecule, into CG sites. A key element of this methodology is that the nodes are combined according to well-defined protocols that rank-order nodes based on the underlying chemical connectivity. By iteratively performing these operations, successively coarser representations of the original atomic system can be produce...
We present an algorithm to reconstruct atomistic structures from their corresponding coarse-grained ...
Computer simulations of condensed phases and biochemical systems have lead to profound new insight i...
Molecular simulations of many phenomena related to biomolecular systems, soft matter and nanomateria...
A novel methodology is introduced here to generate coarse-grained (CG) representations of molecular ...
Due to the wide range of timescales that are present in macromolecular systems, hierarchical multisc...
ABSTRACT Coarse graining enables the investigation of molecular dynamics for larger systems and at ...
Computational modeling of biological systems is challenging because of the multitude of spatial and ...
Coarse graining (CG) enables the investigation of molecular properties for larger systems and at lon...
ConspectusDue to hierarchic nature of biomolecular systems, their computational modeling calls for m...
Coarse grain (CG) models allow long-scale simulations with a much lower computational cost than that...
A lesson utilizing a coarse-grained (CG) G-like model has been implemented into the CHARMM INterface...
In this work, we investigate the application of coarse-graining (CG) methods to molecular dynamics (...
Molecular dynamics simulations at the atomic scale are a powerful tool to study the structure and dy...
Coarse-Grained (CG) models provide a promising direction to study variety of chemical systems at a r...
Compared to top-down coarse-grained (CG) models, bottom-up approaches are capable of offering higher...
We present an algorithm to reconstruct atomistic structures from their corresponding coarse-grained ...
Computer simulations of condensed phases and biochemical systems have lead to profound new insight i...
Molecular simulations of many phenomena related to biomolecular systems, soft matter and nanomateria...
A novel methodology is introduced here to generate coarse-grained (CG) representations of molecular ...
Due to the wide range of timescales that are present in macromolecular systems, hierarchical multisc...
ABSTRACT Coarse graining enables the investigation of molecular dynamics for larger systems and at ...
Computational modeling of biological systems is challenging because of the multitude of spatial and ...
Coarse graining (CG) enables the investigation of molecular properties for larger systems and at lon...
ConspectusDue to hierarchic nature of biomolecular systems, their computational modeling calls for m...
Coarse grain (CG) models allow long-scale simulations with a much lower computational cost than that...
A lesson utilizing a coarse-grained (CG) G-like model has been implemented into the CHARMM INterface...
In this work, we investigate the application of coarse-graining (CG) methods to molecular dynamics (...
Molecular dynamics simulations at the atomic scale are a powerful tool to study the structure and dy...
Coarse-Grained (CG) models provide a promising direction to study variety of chemical systems at a r...
Compared to top-down coarse-grained (CG) models, bottom-up approaches are capable of offering higher...
We present an algorithm to reconstruct atomistic structures from their corresponding coarse-grained ...
Computer simulations of condensed phases and biochemical systems have lead to profound new insight i...
Molecular simulations of many phenomena related to biomolecular systems, soft matter and nanomateria...