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Mathematical Approaches to Biological Systems: Networks, Oscillations, and Collective Motions 2015 ed. [Kõva köide]

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  • Formaat: Hardback, 166 pages, kõrgus x laius: 235x155 mm, kaal: 4227 g, 29 Illustrations, color; 38 Illustrations, black and white; IX, 166 p. 67 illus., 29 illus. in color., 1 Hardback
  • Ilmumisaeg: 31-Mar-2015
  • Kirjastus: Springer Verlag, Japan
  • ISBN-10: 4431554432
  • ISBN-13: 9784431554431
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  • Formaat: Hardback, 166 pages, kõrgus x laius: 235x155 mm, kaal: 4227 g, 29 Illustrations, color; 38 Illustrations, black and white; IX, 166 p. 67 illus., 29 illus. in color., 1 Hardback
  • Ilmumisaeg: 31-Mar-2015
  • Kirjastus: Springer Verlag, Japan
  • ISBN-10: 4431554432
  • ISBN-13: 9784431554431
Teised raamatud teemal:
This book presents the most recent mathematical approaches to the growing research area of networks, oscillations, and collective motions in the context of biological systems. Bringing together the results of multiple studies of different biological systems, this book sheds light on the relations among these research themes.

Included in this book are the following topics: feedback systems with time delay and threshold of sensing (dead zone), robustness of biological networks from the point of view of dynamical systems, the hardware-oriented neuron modeling approach, a universal mechanism governing the entrainment limit under weak forcing, the robustness mechanism of open complex systems, situation-dependent switching of the cues primarily relied on by foraging ants, and group chase and escape.

Research on different biological systems is presented together, not separated by specializations or by model systems. Therefore, the book provides diverse perspectives at the forefront of current mathematical research on biological systems, especially focused on networks, oscillations, and collective motions.

This work is aimed at advanced undergraduate, graduate, and postdoctoral students, as well as scientists and engineers. It will also be of great use for professionals in industries and service sectors owing to the applicability of topics such as networks and synchronizations.
1 Human Balance Control: Dead Zones, Intermittency, and Micro-chaos
1(28)
John Milton
Tamas Insperger
Gabor Stepan
2 Dynamical Robustness of Complex Biological Networks
29(26)
Gouhei Tanaka
Kai Morino
Kazuyuki Aihara
3 Hardware-Oriented Neuron Modeling Approach by Reconfigurable Asynchronous Cellar Automaton
55(22)
Takashi Matsubara
Hiroyuki Torikai
4 Entrainment Limit of Weakly Forced Nonlinear Oscillators
77(18)
Hisa-Aki Tanaka
5 A Universal Mechanism of Determining the Robustness of Evolving Systems
95(24)
Takashi Shimada
6 Switching of Primarily Relied Information by Ants: A Combinatorial Study of Experiment and Modeling
119(20)
Yusuke Ogihara
Osamu Yamanaka
Toshiharu Akino
Shunsuke Izumi
Akinori Awazu
Hiraku Nishimori
7 Chases and Escapes: From Singles to Groups
139
Atsushi Kamimura
Shigenori Matsumoto
Toru Ohira