Contents:
Readership: Graduate students and academics interested in complex systems. Students and researchers in science (physics, chemistry, mathematics, biology) and engineering. Physicists and other scientists, social scientists, humanists and laypeople.
- Part I - Pattern Formation and Pattern Recognition in Multistable Systems:
- Pattern Recognition and Pattern Formation as Dual Processes (H Haken & A Fuchs)
- Holovision: A Semantic Information Processor for Visual Perception (H. Shimizu, Y Yamaguchi & K Satoh)
- Dynamic Patterns of Biological Coordination: Theoretical Strategy and New Results (G Schaner & J A S Kelso)
- Fluctuations in Bistable Tunnel Diode Circuit (with Editors' Introduction) (R. Landauer)
- Temporal and Spatial Patterns in Chemical Systems (H L Swinney, W Horsthemke, W D McCormick, Z Nosz ticzins & W Y Tam)
- Fractal Distributions Useful for Search Algorithms (H H Szu)
- Part II - Pattern Generation in Neurobiological Systems:
- Invertebrate Central Pattern Generators as Computational Data Bases (A.l Selverston)
- Studies of the Lamprey Central Pattern Generator for Locomotion: A Close Relationship between Modelling and Experimentation (A H Cohen)
- Appendix to Cohen's Paper: Chains of Oscillators and the Effects of Multiple Coupling (N Kopel)
- Variability and Chaos: Neurointegrative Principles in Self-Organization of Motor Patterns (G J Mpitsos, H C Creech, C S Cohan & M Mendelson)
- Part III- Chaos, Coding and Fractals:
- Self- Similar Basin Boundary in an Invertible System (Folded-towel map) (O E Rossler, J L Hudson, M Klein & R Wais)
- An Unstable Singularity Theory of Molecular Biological Coding: Calcitonin's Structures and Potencies (A J Mandell)
- Fractal Models in Physiology (B West)
- Sudden Death is Not Chaos (A L Goldberger & D R. Rigney)
- Predicting Chaotic Dynamics (J D Farmer & J J Sidorowich)
- Adaptation Toward the Edge of Chaos (N H Packard)
- Part IV - Action, Perception and Developing Systems:
- The VITE Model: A Neural Command Circuit for Generating Arm and Articulator Trajectories (D Bullock & S Grossberg)
- Simplicity from Complexity: Archetypal Action Regimes and Smart Perceptual Instruments as Execution- Driven Phenomena (M T Turvey)
- Dynamical Approaches to the Development of Behavior (E Thelen)
- Critical Behavior in Perception- Action Systems (W H Wamn, Jr)
Readership: Graduate students and academics interested in complex systems. Students and researchers in science (physics, chemistry, mathematics, biology) and engineering. Physicists and other scientists, social scientists, humanists and laypeople.
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