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  1. The principles of genetic epistemology.Jean Piaget - 1997 - New York: Routledge.
    Jean Piaget was one of the most salient and inspirational figures in psychological and educational research this century. He was prolific, authoring or editing over eighty books and numerous journal papers which have spawned a huge and fertile continuation of his research over the decades. A major component of any course on children's psychological development and a research tradition that is expanding, scholars need access to the original texts rather than relying on secondhand accounts. Jean Piaget: Selected Works is a (...)
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  • Functional analysis.Robert E. Cummins - 1975 - Journal of Philosophy 72 (November):741-64.
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  • The organization of knowledge: Beyond Campbell's evolutionary epistemology.Wayne D. Christensen & Clifford A. Hooker - 1999 - Philosophy of Science 66 (3):249.
    Donald Campbell has long advocated a naturalist epistemology based on a general selection theory, with the scope of knowledge restricted to vicarious adaptive processes. But being a vicariant is problematic because it involves an unexplained epistemic relation. We argue that this relation is to be explicated organizationally in terms of the regulation of behavior and internal state by the vicariant, but that Campbell's selectionist approach can give no satisfactory account of it because it is opaque to organization. We show how (...)
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  • Review: Churchland Symposium. [REVIEW]W. D. Christensen & C. A. Hooker - 1998 - Philosophy and Phenomenological Research 58 (4):871 - 878.
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  • Intelligence without representation.Rodney A. Brooks - 1991 - Artificial Intelligence 47 (1--3):139-159.
    Artificial intelligence research has foundered on the issue of representation. When intelligence is approached in an incremental manner, with strict reliance on interfacing to the real world through perception and action, reliance on representation disappears. In this paper we outline our approach to incrementally building complete intelligent Creatures. The fundamental decomposition of the intelligent system is not into independent information processing units which must interface with each other via representations. Instead, the intelligent system is decomposed into independent and parallel activity (...)
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  • Vehicles: Experiments in Synthetic Psychology.Valentino Braitenberg - 1986 - Philosophical Review 95 (1):137-139.
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  • Thought and Language.A. L. Wilkes, L. S. Vygotsky, E. Hanfmann & G. Vakar - 1964 - Philosophical Quarterly 14 (55):178.
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  • 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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  • The neural basis of cognitive development: A constructivist manifesto.Steven R. Quartz & Terrence J. Sejnowski - 1997 - Behavioral and Brain Sciences 20 (4):537-556.
    How do minds emerge from developing brains? According to the representational features of cortex are built from the dynamic interaction between neural growth mechanisms and environmentally derived neural activity. Contrary to popular selectionist models that emphasize regressive mechanisms, the neurobiological evidence suggests that this growth is a progressive increase in the representational properties of cortex. The interaction between the environment and neural growth results in a flexible type of learning: minimizes the need for prespecification in accordance with recent neurobiological evidence (...)
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  • Physical symbol systems.Allen Newell - 1980 - Cognitive Science 4 (2):135-83.
    On the occasion of a first conference on Cognitive Science, it seems appropriate to review the basis of common understanding between the various disciplines. In my estimate, the most fundamental contribution so far of artificial intelligence and computer science to the joint enterprise of cognitive science has been the notion of a physical symbol system, i.e., the concept of a broad class of systems capable of having and manipulating symbols, yet realizable in the physical universe. The notion of symbol so (...)
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  • Behavioral systems interpreted as autonomous agents and as coupled dynamical systems: A criticism.Fred A. Keijzer & Sacha Bem - 1996 - Philosophical Psychology 9 (3):323-46.
    Cognitive science's basic premises are under attack. In particular, its focus on internal cognitive processes is a target. Intelligence is increasingly interpreted, not as a matter of reclusive thought, but as successful agent-environment interaction. The critics claim that a major reorientation of the field is necessary. However, this will only occur when there is a distinct alternative conceptual framework to replace the old one. Whether or not a serious alternative is provided is not clear. Among the critics there is some (...)
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  • Towards a theory of cognition under a new control paradigm.C. A. Hooker, H. B. Penfold & R. J. Evans - 1992 - Topoi 11 (1):71-88.
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  • Towards a new science of the mind: Wide content and the metaphysics of organizational properties in nonlinear dynamic models.Cliff A. Hooker & Wayne D. Christensen - 1998 - Mind and Language 13 (1):98-109.
    Tim van Gelder, following Brandom, Collins and others, uses the so‐called wide content of capacities which support social, norm governed activities, such as language, to argue for their anti‐natural, abstract, but socially instituted nature and thence for the failure of the entire traditional mind‐body discussion as ill‐posed. We argue that his former conclusion is wrong, that such properties are naturalisable, complicated organisational properties of the complexly organised, non‐linearly interactive systems that human beings are. This analysis also provides principled support, but (...)
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  • Reason, Regulation, and Realism: Towards a Regulatory Systems Theory of Reason and Evolutionary Epistemology.Clifford Alan Hooker - 1995 - State University of New York Press.
    This book develops a new naturalist theory of reason and scientific knowledge from a synthesis of philosophy and the new sciences of complex adaptive systems.
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  • Projection, physical intelligibility, objectivity and completeness: The divergent ideals of Bohr and Einstein.C. A. Hooker - 1991 - British Journal for the Philosophy of Science 42 (4):491-511.
    It is shown how the development of physics has involved making explicit what were homocentric projections which had heretofore been implicit, indeed inexpressible in theory. This is shown to support a particular notion of the invariant as the real. On this basis the divergence in ideals of physical intelligibility between Bohr and Einstein is set out. This in turn leads to divergent, but explicit, conceptions of objectivity and completeness for physical theory. *I am indebted to Dr. G. McLelland. Professor F. (...)
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  • Developmental Systems and Evolutionary Explanation.P. E. Griffiths & R. D. Gray - 1994 - Journal of Philosophy 91 (6):277-304.
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  • Precis of the modularity of mind.Jerry A. Fodor - 1985 - Behavioral and Brain Sciences 8 (1):1-42.
    The Modularity of Mind proposes an alternative to the or view of cognitive architecture that has dominated several decades of cognitive science. Whereas interactionism stresses the continuity of perceptual and cognitive processes, modularity theory argues for their distinctness. It is argued, in particular, that the apparent plausibility of New Look theorizing derives from the failure to distinguish between the (correct) claim that perceptual processes are inferential and the (dubious) claim that they are unencapsidated, that is, that they are arbitrarily sensitive (...)
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  • Epigenetic Inheritance and Evolution: The Lamarckian Dimension.Eva Jablonka & Marion J. Lamb - 1995 - Oxford University Press UK.
    '...a challenging and useful book, both because it provokes a careful scrutiny of one's own basic ideas regarding evolutionary theory, and because it cuts across so many biological disciplines.' -The Quarterly Review of Biology 'In my view, this work exemplifies Theoretical Biology at its best...here is rampant speculation that is consistently based on cautious reasoning from the available data. Even more refreshing is the absence of sloganeering, grandstanding, and 'isms'.' -Biology and Philosophy 'Epigenetics is fundamental to understanding both development and (...)
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  • Philosophy in the Flesh: the Embodied Mind & its Challenge to Western Thought.George Lakoff (ed.) - 1999 - Basic Books.
    Reexamines the Western philosophical tradition, looking at the basic concepts of the mind, time, causation, morality, and the self.
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  • Discovering Complexity: Decomposition and Localization as Strategies in Scientific Research.William Bechtel & Robert C. Richardson - 2010 - Princeton.
    An analysis of two heuristic strategies for the development of mechanistic models, illustrated with historical examples from the life sciences. In Discovering Complexity, William Bechtel and Robert Richardson examine two heuristics that guided the development of mechanistic models in the life sciences: decomposition and localization. Drawing on historical cases from disciplines including cell biology, cognitive neuroscience, and genetics, they identify a number of "choice points" that life scientists confront in developing mechanistic explanations and show how different choices result in divergent (...)
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  • Issues in Evolutionary Epistemology: Contemporary Engagements Between Analytic and Continental Thought.Kai Hahlweg & Clifford Alan Hooker (eds.) - 1989 - State University of New York Press.
    Papers presented cover: new approaches to evolutionary epistemology, new applications, critical evaluations, and the nature of the mind. Paper edition (unseen), $25.50. Annotation copyrighted by Book News, Inc., Portland, OR.
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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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  • Catching Ourselves in the Act: Situated Activity, Interactive Emergence, Evolution, and Human Thought.Horst Hendriks-Jansen - 1996 - MIT Press.
    ""Catching Ourselves in the Act" is no less than an attempt to explain intelligence. Delightful how the author dismantles traditional views in.
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  • Being There: Putting Brain, Body, and World Together Again.Andy Clark - 1981 - MIT Press.
    In treating cognition as problem solving, Andy Clark suggests, we may often abstract too far from the very body and world in which our brains evolved to guide...
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  • Developmental systems and evolutionary explanation.P. E. Griffiths & R. D. Gray - 1994 - Journal of Philosophy 91 (6):277-304.
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  • Thought and Language.Lev Vygotsky - 1964 - Philosophy of Science 31 (2):190-191.
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  • Computational and dynamical languages for autonomous agents.Randall D. Beer - 1995 - In Tim van Gelder & Robert Port (eds.), Mind as Motion: Explorations in the Dynamics of Cognition. MIT Press. pp. 121--147.
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  • Time-scale dynamics and the development of an embodied cognition.Esther Thelen - 1995 - In Tim van Gelder & Robert Port (eds.), Mind as Motion: Explorations in the Dynamics of Cognition. MIT Press. pp. 69--100.
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  • From Earwigs to Humans.Rodney A. Brooks - unknown
    Both direct, and evolved, behavior-based approaches to mobile robots have yielded a number of interesting demonstrations of robots that navigate, map, plan and operate in the real world. The work can best be described as attempts to emulate insect level locomotion and navigation, with very little work on behavior-based non-trivial manipulation of the world. There have been some behavior-based attempts at exploring social interactions, but these too have been modeled after the sorts of social interactions we see in insects. But (...)
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  • Building brains for bodies.Rodney A. Brooks & Lynn Andrea Stein - 1994 - Autonomous Robotics 1 (1):7-25.
    We describe a project to capitalize on newly available levels of computational resources in order to understand human cognition. We are building an integrated physical system including vision, sound input and output, and dextrous manipulation, all controlled by a continuously operating large scale parallel MIMD computer. The resulting system will learn to "think" by building on its bodily experiences to accomplish progressively more abstract tasks. Past experience suggests that in attempting to build such an integrated system we will have to (...)
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  • Complexly organised dynamical systems.John D. Collier & Clifford A. Hooker - 1999 - Open Systems and Information Dynamics 6 (3):241–302.
    Both natural and engineered systems are fundamentally dynamical in nature: their defining properties are causal, and their functional capacities are causally grounded. Among dynamical systems, an interesting and important sub-class are those that are autonomous, anticipative and adaptive (AAA). Living systems, intelligent systems, sophisticated robots and social systems belong to this class, and the use of these terms has recently spread rapidly through the scientific literature. Central to understanding these dynamical systems is their complicated organisation and their consequent capacities for (...)
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  • Representational content in humans and machines.Mark H. Bickhard - 1993 - Journal of Experimental and Theoretical Artificial Intelligence 5:285-33.
    This article focuses on the problem of representational content. Accounting for representational content is the central issue in contemporary naturalism: it is the major remaining task facing a naturalistic conception of the world. Representational content is also the central barrier to contemporary cognitive science and artificial intelligence: it is not possible to understand representation in animals nor to construct machines with genuine representation given current (lack of) understanding of what representation is. An elaborated critique is offered to current approaches to (...)
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  • The Principles of Genetic Epistemology.Jean Piaget, Wolfe Mays & P. A. Wells - 1975 - Mind 84 (334):314-316.
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  • van Gelder. T.R. Port - 1995 - In Tim van Gelder & Robert Port (eds.), Mind as Motion: Explorations in the Dynamics of Cognition. MIT Press.
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  • It's about time: An overview of the dynamical approach to cognition.Timothy Van Gelder & Robert F. Port - 1995 - In Tim van Gelder & Robert Port (eds.), Mind as Motion: Explorations in the Dynamics of Cognition. MIT Press. pp. 43.
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