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Titlebook: Synchronization; Theory and Applicati Arkady Pikovsky,Yuri Maistrenko Book 2003 Springer Science+Business Media Dordrecht 2003 Counter.Phas

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https://doi.org/10.1007/978-94-010-0217-2Counter; Phase; Theoretical physics; chaos; communication; dynamical systems; modeling; physics; simulation;
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Arkady S. Pikovsky,Michael G. Rosenblumbe an important uptake of water in the passage through the airways, with a consequent difficulty in predicting the effective particle size and therefore the total and regional depositions..The size distribution is measured, in situations of practical interest, by means of an inertial particle spectr
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K. Pyragasin, the soluble precursor molecule of elastin. Allysines, in turn, are formed extra-cellularly by the oxidative deamination of amino groups of lysine, a reaction catalyzed by the copperdependent enzyme, lysyl oxidase..We demonstrated that water-soluble components of the gas phase of filtered cigaret
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cerning the reactions of the carotid body in generalised disease and hence the ignorance is transmitted to the next generation. This has led to a peculiar imbalance in our knowledge of the carotid bodies. The physiologists have continued to carry out elegant and sophisticated studies on carotid bodi
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Cycling Attractors of Coupled Cell Systems and Dynamics with Symmetry,s — giving intermittent . chaos for the free-running model, and an infinite family of periodic orbits for the phase-resetting case. These require careful numerical simulation to resolve quantities that routinely get as small as 10...We characterise the difference between these models by considering
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A. S. Dmitriev,M. Hasler,A. I. Panas,K. V. Zakharchenko
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E. Mosekilde,O. V. Sosnovtseva,N.-H. Holstein-Rathlou
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Nonlinear Phenomena in Nephron-Nephron Interaction, model that can account for the observed synchronization phenomena, and to discuss the possible physiological significance of these phenomena. We are particularly interested in synchronization effects that can occur among neighboring nephrons that individually display irregular (or chaotic) dynamics in their pressure and flow regulation.
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