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  1. The dynamical hypothesis in cognitive science.Tim van Gelder - 1998 - Behavioral and Brain Sciences 21 (5):615-28.
    According to the dominant computational approach in cognitive science, cognitive agents are digital computers; according to the alternative approach, they are dynamical systems. This target article attempts to articulate and support the dynamical hypothesis. The dynamical hypothesis has two major components: the nature hypothesis (cognitive agents are dynamical systems) and the knowledge hypothesis (cognitive agents can be understood dynamically). A wide range of objections to this hypothesis can be rebutted. The conclusion is that cognitive systems may well be dynamical systems, (...)
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  • How brains make chaos in order to make sense of the world.Christine A. Skarda & Walter J. Freeman - 1987 - Behavioral and Brain Sciences 10 (2):161-173.
  • Recursive distributed representations.Jordan B. Pollack - 1990 - Artificial Intelligence 46 (1-2):77-105.
  • Connectionism and the Mind: an Introduction to Parallel Processing in Networks.David Pickles, William Bechtel & Adele Abrahamson - 1992 - Philosophical Quarterly 42 (166):101.
  • Phase transitions in artificial intelligence systems.Bernardo A. Huberman & Tad Hogg - 1987 - Artificial Intelligence 33 (2):155-171.
  • Soft laws.Terence Horgan & John Tienson - 1990 - Midwest Studies in Philosophy 15 (1):256-279.
  • Cognitive systems as dynamic systems.Terence Horgan & John Tienson - 1992 - Topoi 11 (1):27-43.
  • A nonclassical framework for cognitive science.Terence E. Horgan & John L. Tienson - 1994 - Synthese 101 (3):305-45.
    David Marr provided a useful framework for theorizing about cognition within classical, AI-style cognitive science, in terms of three levels of description: the levels of (i) cognitive function, (ii) algorithm and (iii) physical implementation. We generalize this framework: (i) cognitive state transitions, (ii) mathematical/functional design and (iii) physical implementation or realization. Specifying the middle, design level to be the theory of dynamical systems yields a nonclassical, alternative framework that suits (but is not committed to) connectionism. We consider how a brain's (...)
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  • Psychosemantics: The Problem of Meaning in the Philosophy of Mind.Jerry A. Fodor - 1987 - MIT Press. Edited by Margaret A. Boden.
    Preface 1 Introduction: The Persistence of the Attitudes 2 Individualism and Supervenience 3 Meaning Holism 4 Meaning and the World Order Epilogue Creation Myth Appendix Why There Still Has to be a Language of Thought Notes References Author Index.
  • Review of P sychosemantics: The Problem of Meaning In the Philosophy of Mind. [REVIEW]Jay L. Garfield - 1991 - Philosophy and Phenomenological Research 51 (1):235-240.
  • Conceptual role semantics and the explanatory role of content.Robert Cummins - 1992 - Philosophical Studies 65 (1-2):103-127.
    I've tried to argue that there is more to representational content than CRS can acknowledge. CRS is attractive, I think, because of its rejection of atomism, and because it is a plausible theory of targets. But those are philosopher's concerns. Someone interested in building a person needs to understand representation, because, as AI researchers have urged for some time, good representation is the secret of good performance. I have just gestured in the direction I think a viable theory of representation (...)
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  • Vehicles: Experiments in Synthetic Psychology.Valentino Braitenberg - 1986 - Philosophical Review 95 (1):137-139.
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  • Mind As Motion: Explorations in the Dynamics of Cognition.Tim van Gelder & Robert Port (eds.) - 1995 - MIT Press.
    The first comprehensive presentation of the dynamical approach to cognition. It contains a representative sampling of original, current research on topics such as perception, motor control, speech and language, decision making, and development.
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  • Connectionism and the Philosophy of Psychology.Terence Horgan & John Tienson - 1996 - MIT Press.
    In Connectionism and the Philosophy of Psychology, Horgan and Tienson articulate and defend a new view of cognition.
  • What Might Cognition Be, If Not Computation?Tim Van Gelder - 1995 - Journal of Philosophy 92 (7):345 - 381.