9780792364276-0792364279-The FitzHugh-Nagumo Model - Bifurcation and Dynamics (MATHEMATICAL MODELLING: THEORY AND APPLICATIONS Volume 10) (Mathematical Modelling: Theory and Applications, 10)

The FitzHugh-Nagumo Model - Bifurcation and Dynamics (MATHEMATICAL MODELLING: THEORY AND APPLICATIONS Volume 10) (Mathematical Modelling: Theory and Applications, 10)

ISBN-13: 9780792364276
ISBN-10: 0792364279
Edition: 2000
Author: C. Rocsoreanu, A. Georgescu, N. Giurgiteanu
Publication date: 2000
Publisher: Springer
Format: Hardcover 248 pages
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Book details

ISBN-13: 9780792364276
ISBN-10: 0792364279
Edition: 2000
Author: C. Rocsoreanu, A. Georgescu, N. Giurgiteanu
Publication date: 2000
Publisher: Springer
Format: Hardcover 248 pages

Summary

The FitzHugh-Nagumo Model - Bifurcation and Dynamics (MATHEMATICAL MODELLING: THEORY AND APPLICATIONS Volume 10) (Mathematical Modelling: Theory and Applications, 10) (ISBN-13: 9780792364276 and ISBN-10: 0792364279), written by authors C. Rocsoreanu, A. Georgescu, N. Giurgiteanu, was published by Springer in 2000. With an overall rating of 4.0 stars, it's a notable title among other Anatomy (Biological Sciences, Biochemistry, Chemistry, Bioinformatics, Mathematical Analysis, Mathematics, Pure Mathematics, Physiology, Basic Medical Sciences, Schools & Teaching) books. You can easily purchase or rent The FitzHugh-Nagumo Model - Bifurcation and Dynamics (MATHEMATICAL MODELLING: THEORY AND APPLICATIONS Volume 10) (Mathematical Modelling: Theory and Applications, 10) (Hardcover) from BooksRun, along with many other new and used Anatomy books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

The present monograph analyses the FitzHugh-Nagumo (F-N) model Le. , the Cauchy problem for some generalized Van der Pol equation depending on three real parameters a, band c. This model, given in (1. 1. 17), governs the initiation of the cardiac impulse. The presence of the three parameters leads to a large variety of dy namics, each of them responsible for a specific functioning of the heart. For physiologists it is highly desirable to have aglobai view of all possible qualitatively distinct responses of the F-N model for all values of the pa rameters. This reduces to the knowledge of the global bifurcation diagram. So far, only a few partial results appeared and they were spread through out the literature. Our work provides a more or less complete theoretical and numerical investigation of the complex phase dynamics and bifurca tions associated with the F-N dynamical system. This study includes the static and dynamic bifurcations generated by the variation of a, band c and the corresponding oscillations, of special interest for applications. It enables one to predict all possible types of initiations of heart beats and the mechanism of transformation of some types of oscillations into others by following the dynamics along transient phase space trajectories. Of course, all these results hold for the F-N model. The global phase space picture enables one to determine the domain of validity of this model.
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