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Titlebook: Mathematical Biophysics; Andrew Rubin,Galina Riznichenko Book 2014 Springer Science+Business Media New York 2014 Autowave processes.Belous

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Spatiotemporal Self-Organization of Biological Systems systems occurs in bounded elementary media connected with each other via transfer of matter, whether diffusive or directed by external forces or by special adaptation mechanisms inherent in living organisms. Every elementary medium is an open system with respect to mass and energy exchange, usually
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Oscillations and Periodic Space Structures of pH and Electric Potential Along the Cell Membrane of A. and . demonstrate the phenomena of pH nonlinear dynamics in time and space—oscillations and pattern formation along cellular membranes that arise under illumination. The essence of the current chapter is based on the results of the modeling of processes occurring in a cell membrane and the simulat
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Autowave Processes, Nerve Pulse Propagation, and Heart Activity based on the fact that the elementary volume of a membrane is a local active element possessing the ability to amplify an incoming electrical signal. Nerve pulse propagation is one of the most striking examples of autowave processes in living systems. In the middle of the nineteenth century it was
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Nonlinear Models of DNA Dynamicssical processes involving biological macromolecules. Following this approach, application of the ideas and methods of modern nonlinear physics turns out to be especially productive. Up-to-date nonlinear DNA physics is a special field of scientific research that makes it possible to considerably prom
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Generalized Kinetic Model of Primary Photosynthetic Processes; Nelson and Yocum 2006). The model was developed on the basis of the simulation of electron transport processes in isolated fragments of PSI, PSII, and bacterial reaction centers (Riznichenko et al. 1990; Bukhov et al. 1988; Chrabrova et al. 1989). The distinctive feature of the model (similar to t
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