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Physics - Biophysics & Biological Physics | Computational Modeling of Biological Systems - From Molecules to Pathways

Computational Modeling of Biological Systems

From Molecules to Pathways

Dokholyan, Nikolay V (Ed.)

2012, VI, 366 p.

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  • Reviews established modeling approaches of biological systems across multiple length and time scales from molecules to cells
  • Covers recent and emerging computational techniques in modelling biological systems
  • Provides a fresh outlook on the topic by covering multiscale modelling and includes a section on molecular evolution
  • Can be used as a guide for selecting methods for studying biological systems

Computational modeling is emerging as a powerful new approach for studying and manipulating biological systems. Many diverse methods have been developed to model, visualize, and rationally alter these systems at various length scales, from atomic resolution to the level of cellular pathways. Processes taking place at larger time and length scales, such as molecular evolution, have also greatly benefited from new breeds of computational approaches.

Computational Modeling of Biological Systems: From Molecules to Pathways provides an overview of established computational methods for the modeling of biologically and medically relevant systems. It is suitable for researchers and professionals working in the fields of biophysics, computational biology, systems biology, and molecular medicine.

Content Level » Research

Keywords » biological physics - computational biology - computational modeling - molecular medicine - molecular modeling - systems biology

Related subjects » Bioinformatics - Biophysics & Biological Physics - Molecular Medicine

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