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Preface | ||
Acknowledgements | ||
1 | Introduction | 1 |
Pt. I | Oscillatory contraction in muscle | 27 |
2 | Muscle structure and function | 29 |
3 | Models for muscle contraction | 54 |
Pt. II | Nonlinear dynamic phenomena in flagella and cilia | 87 |
4 | Hierarchy in structure and function | 89 |
5 | Models of flagella and cilia exhibiting regular behaviour | 135 |
6 | Molecular mechanism for excitability and oscillations | 191 |
7 | Simplified models for flagellar dynamics | 224 |
8 | Simplified models for ciliary dynamics | 255 |
9 | Large-amplitude oscillations and bend propagation | 282 |
10 | From simple to complex dynamical behaviours in mechano-chemical cycles: hyperoscillations, bursting and chaos | 307 |
References | 332 | |
Author index | 343 | |
Subject index | 347 |
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Add Dynamics of cellular motility, Uses nonlinear dynamics as a foundation to approach oscillations in motile systems, presenting mechano-chemical oscillary systems as a prototype of nonlinear science. Offers the concept that very simple nonlinear models can have complicated behaviors and , Dynamics of cellular motility to the inventory that you are selling on WonderClubX
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Add Dynamics of cellular motility, Uses nonlinear dynamics as a foundation to approach oscillations in motile systems, presenting mechano-chemical oscillary systems as a prototype of nonlinear science. Offers the concept that very simple nonlinear models can have complicated behaviors and , Dynamics of cellular motility to your collection on WonderClub |