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This book, based on a selection of invited presentations from a topical workshop, focusses on time-variable oscillations and their interactions. The problem is challenging, because the origin of the time variability is usually unknown. In mathematical terms, the oscillations are non-autonomous, reflecting the physics of open systems where the function of each oscillator is affected by its environment. Time-frequency analysis being essential, recent advances in this area, including wavelet phase coherence analysis and nonlinear mode decomposition, are discussed. Some applications to biology and physiology are described. Although the most important manifestation of time-variable oscillations is arguably in biology, they also crop up in, e.g. astrophysics, or for electrons on superfluid helium. The book brings together the research of the best international experts in seemingly very different disciplinary areas. .
Biophysics. --- Biological physics. --- Systems biology. --- Statistical physics. --- Biomedical engineering. --- Biological and Medical Physics, Biophysics. --- Systems Biology. --- Applications of Nonlinear Dynamics and Chaos Theory. --- Statistical Physics and Dynamical Systems. --- Biomedical Engineering and Bioengineering. --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Engineering --- Medicine --- Physics --- Mathematical statistics --- Computational biology --- Bioinformatics --- Biological systems --- Molecular biology --- Biological physics --- Biology --- Medical sciences --- Statistical methods
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This book, based on a selection of invited presentations from a topical workshop, focusses on time-variable oscillations and their interactions. The problem is challenging, because the origin of the time variability is usually unknown. In mathematical terms, the oscillations are non-autonomous, reflecting the physics of open systems where the function of each oscillator is affected by its environment. Time-frequency analysis being essential, recent advances in this area, including wavelet phase coherence analysis and nonlinear mode decomposition, are discussed. Some applications to biology and physiology are described. Although the most important manifestation of time-variable oscillations is arguably in biology, they also crop up in, e.g. astrophysics, or for electrons on superfluid helium. The book brings together the research of the best international experts in seemingly very different disciplinary areas. .
Mathematical physics --- Biomathematics. Biometry. Biostatistics --- Biological techniques --- General biophysics --- Human biochemistry --- Biotechnology --- medische biochemie --- biofysica --- theoretische fysica --- bio-engineering --- bio-informatica --- biologie --- biotechnologie --- wiskunde --- fysica
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Mathematical physics --- Biomathematics. Biometry. Biostatistics --- Biological techniques --- General biophysics --- Human biochemistry --- Biotechnology --- medische biochemie --- biofysica --- theoretische fysica --- bio-engineering --- bio-informatica --- biologie --- biotechnologie --- wiskunde --- fysica
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