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Normal Mode Analysis: Theory and Applications to Biological and Chemical Systems (Chapman & Hall/CRC Mathematical & Computational Biology)
 
 
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Normal Mode Analysis: Theory and Applications to Biological and Chemical Systems (Chapman & Hall/CRC Mathematical & Computational Biology) [Hardcover]

Qiang Cui (Editor), Ivet Bahar (Editor)

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Book Description

December 12, 2005 158488472X 978-1584884729 1
Rapid developments in experimental techniques continue to push back the limits in the resolution, size, and complexity of the chemical and biological systems that can be investigated. This challenges the theoretical community to develop innovative methods for better interpreting experimental results. Normal Mode Analysis (NMA) is one such technique. Capable of providing unique insights into the structural and dynamical properties of complex systems, it is now finding a wide range of applications in chemical and biological problems.

From the fundamental physical ideas to cutting-edge applications and beyond, this book presents a broad overview of normal mode analysis and its value in state-of-the-art research. The first section introduces NMA, examines NMA algorithm development at different resolutions, and explores the application of those techniques in the study of biological systems. Later chapters cover method developments based on or inspired by NMA but going beyond the harmonic approximation inherent in standard NMA techniques.

Normal mode analysis complements traditional approaches with computational efficiency and applicability to large systems that are beyond the reach of older methods. This book offers a unique opportunity to learn from the experiences of an international, interdisciplinary panel of top researchers and explore the latest developments and applications of NMA to biophysical and chemical problems.

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Inside This Book (learn more)
First Sentence:
Normal mode analysis (NMA) has become one of the standard techniques in the study of the dynamics of biological macromolecules. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
elastic network model, residue fluctuations, conformational flooding, helical unit cells, local conformational states, reduced model approach, equilibrium rest state, normal mode directions, essential subspace, normal mode refinement, anharmonic decay rate, human fatty acid synthase, deformational model, curved insert, dimer steps, photoactive yellow protein, sampled conformations, normal mode concept, normal mode study, residue index, color insert following page, vibrational energy relaxation, most mobile regions, frequency subspace, initial guess vectors
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Natl Acad, Nall Acad, New York, Acta Crystallogr, Nucleic Acids Res, Protein Sci, Protein Eng, Hiroshi Fujisaki, Martina Kaledin, Cambridge University Press, Monte Carlo, National Science Foundation, Energy-minimized Standard, Molecular Vibrations, Trends Biochem, Yves-Henri Sanejouand, Akio Kitao, Crystallographic Tirion, Energy-minimized Tirion, Haiyan Liu, John Wiley, Dover Publications, Introduction Normal
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