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  1. 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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  • Language, tools and brain: The ontogeny and phylogeny of hierarchically organized sequential behavior.Patricia M. Greenfield - 1991 - Behavioral and Brain Sciences 14 (4):531-551.
    During the first two years of human life a common neural substrate underlies the hierarchical organization of elements in the development of speech as well as the capacity to combine objects manually, including tool use. Subsequent cortical differentiation, beginning at age two, creates distinct, relatively modularized capacities for linguistic grammar and more complex combination of objects. An evolutionary homologue of the neural substrate for language production and manual action is hypothesized to have provided a foundation for the evolution of language (...)
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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.
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  • Internal models in the cerebellum.Daniel M. Wolpert, R. Chris Miall & Mitsuo Kawato - 1998 - Trends in Cognitive Sciences 2 (9):338-347.
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  • Psychology From an Empirical Standpoint.Franz Brentano - 1874 - Routledge.
    Unlike the first English translation in 1974, this edition contains the text corresponding to Brentano's original 1874 edition.
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  • Metaphors we live by.George Lakoff & Mark Johnson - 1980 - Chicago: University of Chicago Press. Edited by Mark Johnson.
    The now-classic Metaphors We Live By changed our understanding of metaphor and its role in language and the mind. Metaphor, the authors explain, is a fundamental mechanism of mind, one that allows us to use what we know about our physical and social experience to provide understanding of countless other subjects. Because such metaphors structure our most basic understandings of our experience, they are "metaphors we live by"--metaphors that can shape our perceptions and actions without our ever noticing them. In (...)
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  • What memory is for: Creating meaning in the service of action.Arthur M. Glenberg - 1997 - Behavioral and Brain Sciences 20 (1):1-19.
    I address the commentators' calls for clarification of theoretical terms, discussion of similarities to other proposals, and extension of the ideas. In doing so, I keep the focus on the purpose of memory: enabling the organism to make sense of its environment so that it can take action appropriate to constraints resulting from the physical, personal, social, and cultural situations.
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  • The representation of space in mental models derived from text.William Langston, Douglas C. Kramer & Arthur M. Glenberg - 1998
    Mental models of text are representations of what the text is about (i.e., situations), rather than representations of the text itself. Many mental model theories propose that mental models, like real situations, are played out in a medium analogous to a Euclidean space so that distance has functional consequences. For example, when mentally manipulating one element of the representation, other elements that are spatially close will be noticed and their short-term accessibility enhanced. To test this noticing hypothesis, participants read texts (...)
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  • The Ecological Approach to Visual Perception: Classic Edition.James J. Gibson - 1979 - Houghton Mifflin.
    This is a book about how we see: the environment around us (its surfaces, their layout, and their colors and textures); where we are in the environment; whether or not we are moving and, if we are, where we are going; what things are good for; how to do things (to thread a needle or drive an automobile); or why things look as they do.The basic assumption is that vision depends on the eye which is connected to the brain. The (...)
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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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  • 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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  • (1 other version)The symbol grounding problem.Stevan Harnad - 1990 - Physica D 42:335-346.
    There has been much discussion recently about the scope and limits of purely symbolic models of the mind and about the proper role of connectionism in cognitive modeling. This paper describes the symbol grounding problem : How can the semantic interpretation of a formal symbol system be made intrinsic to the system, rather than just parasitic on the meanings in our heads? How can the meanings of the meaningless symbol tokens, manipulated solely on the basis of their shapes, be grounded (...)
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  • The Embodied Mind: Cognitive Science and Human Experience.Francisco J. Varela, Evan Thompson & Eleanor Rosch - 1991 - MIT Press.
    The Embodied Mind provides a unique, sophisticated treatment of the spontaneous and reflective dimension of human experience.
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  • Descartes' Error: Emotion, Reason, and the Human Brain.Antonio R. Damasio - 1994 - Putnam.
    Linking the process of rational decision making to emotions, an award-winning scientist who has done extensive research with brain-damaged patients notes the dependence of thought processes on feelings and the body's survival-oriented regulators. 50,000 first printing.
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  • Perceptual symbol systems.Lawrence W. Barsalou - 1999 - Behavioral and Brain Sciences 22 (4):577-660.
    Prior to the twentieth century, theories of knowledge were inherently perceptual. Since then, developments in logic, statis- tics, and programming languages have inspired amodal theories that rest on principles fundamentally different from those underlying perception. In addition, perceptual approaches have become widely viewed as untenable because they are assumed to implement record- ing systems, not conceptual systems. A perceptual theory of knowledge is developed here in the context of current cognitive science and neuroscience. During perceptual experience, association areas in the (...)
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  • Women, Fire, and Dangerous Things: What Categories Reveal about the Mind.George Lakoff - 1987 - Philosophy and Rhetoric 22 (4):299-302.
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  • The Ecological Approach to Visual Perception.Marc H. Bornstein - 1980 - Journal of Aesthetics and Art Criticism 39 (2):203-206.
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  • Metaphors We Live by.Max Black - 1980 - Journal of Aesthetics and Art Criticism 40 (2):208-210.
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  • Cognition in the Wild.Edwin Hutchins - 1998 - Mind 107 (426):486-492.
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  • (1 other version)Remembering: A Study in Experimental and Social Psychology.F. C. Bartlett - 1933 - Mind 42 (167):352-358.
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  • Metaphors We Live By.George Lakoff & Mark Johnson - 1980 - Ethics 93 (3):619-621.
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  • Being There: Putting Brain, Body and World Together Again.Tim van Gelder & Andy Clark - 1998 - Philosophical Review 107 (4):647.
    A great deal of philosophy of mind in the modern era has been driven by an intense aversion to Cartesian dualism. In the 1950s, materialists claimed to have succeeded once and for all in exorcising the Cartesian ghost by identifying the mind with the brain. In subsequent decades, cognitive science put scientific meat on this metaphysical skeleton by explicating mental processes as digital computation implemented in the brain's hardware.
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  • (1 other version)Remembering: A Study in Experimental and Social Psychology.F. C. Bartlett - 1933 - Philosophy 8 (31):374-376.
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  • The Origins of Order: Self Organization and Selection in Evolution.Stuart A. Kauffman - 1993 - Oxford University Press.
    Stuart Kauffman here presents a brilliant new paradigm for evolutionary biology, one that extends the basic concepts of Darwinian evolution to accommodate recent findings and perspectives from the fields of biology, physics, chemistry and mathematics. The book drives to the heart of the exciting debate on the origins of life and maintenance of order in complex biological systems. It focuses on the concept of self-organization: the spontaneous emergence of order widely observed throughout nature. Kauffman here argues that self-organization plays an (...)
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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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  • Exposure and affect: Overview and meta-analysis of research 1968-1987.Robert F. Bornstein - 1989 - Psychological Bulletin 106:265-89.
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  • Cognition in the Wild.Edwin Hutchins - 1995 - MIT Press.
    Hutchins examines a set of phenomena that have fallen between the established disciplines of psychology and anthropology, bringing to light a new set of relationships between culture and cognition.
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  • (1 other version)The Body in the Mind: The Bodily Basis of Meaning, Imagination, and Reason.Mark Johnson - 1989 - Journal of Aesthetics and Art Criticism 47 (4):400-401.
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  • (1 other version)The Body in the Mind: The Bodily Basis of Meaning, Imagination, and Reason.Mark Johnson - 1987 - The Personalist Forum 5 (1):58-60.
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  • (2 other versions)Memory and Brain.Patricia Smith Churchland - 1989 - Philosophy of Science 56 (3):539-540.
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  • The Structure of Behavior.Maurice Merleau-Ponty - 1963 - Boston,: Beacon Press (MA).
    Describes the changing sounds of the rain, the slow soft sprinkle, the drip-drop tinkle, the sounding pounding roaring rain, and the fresh wet silent after-time of rain.
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  • In defense of Piaget's theory: A reply to 10 common criticisms.Orlando Lourenço & Armando Machado - 1996 - Psychological Review 103 (1):143-164.
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  • Multiple time scales in simple habituation.J. E. R. Staddon & J. J. Higa - 1996 - Psychological Review 103 (4):720-733.
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  • Descartes’ error: Emotion, rationality and the human brain.Antonio Damasio - 1994 - New York: Putnam 352.
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  • Principles of Topological Psychology.Kurt Lewin - 1936 - Philosophy of Science 3 (4):545-548.
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  • Mental rotation of the neuronal population vector.Apostólos P. Georgopoulos, Joseph T. Lurito, Michael Petrides, Andrew B. Schwartz & Joe T. Massey - 1994 - In H. Gutfreund & G. Toulouse (eds.), Biology and Computation: A Physicist's Choice. World Scientific. pp. 183.
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  • Place and response learning in the white rat under simplified and mutually isolated conditions.Charles W. Hill & Leland E. Thune - 1952 - Journal of Experimental Psychology 43 (4):289.
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  • (1 other version)Force Dynamics in Language and Cognition.Leonard Talmy - 1988 - Cognitive Science 12 (1):49-100.
    Abstract“Force dynamics” refers to a previously neglected semantic category—how entities interact with respect to force. This category includes such concepts as: the exertion of force, resistance to such exertion and the overcoming of such resistance, blockage of a force and the removal of such blockage, and so forth. Force dynamics is a generalization over the traditional linguistic notion of “causative”: it analyzes “causing” into finer primitives and sets it naturally within a framework that also includes “letting,”“hindering,”“helping,” and still further notions. (...)
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  • Principles of object perception.Elizabeth S. Spelke - 1990 - Cognitive Science 14 (1):29--56.
    Research on human infants has begun to shed light on early-developing processes for segmenting perceptual arrays into objects. Infants appear to perceive objects by analyzing three-dimensional surface arrangements and motions. Their perception does not accord with a general tendency to maximize figural goodness or to attend to nonaccidental geometric relations in visual arrays. Object perception does accord with principles governing the motions of material bodies: Infants divide perceptual arrays into units that move as connected wholes, that move separately from one (...)
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  • Deictic codes for the embodiment of cognition.Dana H. Ballard, Mary M. Hayhoe, Polly K. Pook & Rajesh P. N. Rao - 1997 - Behavioral and Brain Sciences 20 (4):723-742.
    To describe phenomena that occur at different time scales, computational models of the brain must incorporate different levels of abstraction. At time scales of approximately 1/3 of a second, orienting movements of the body play a crucial role in cognition and form a useful computational level embodiment level,” the constraints of the physical system determine the nature of cognitive operations. The key synergy is that at time scales of about 1/3 of a second, the natural sequentiality of body movements can (...)
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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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  • Categorization of action slips.Donald A. Norman - 1981 - Psychological Review 88 (1):1-15.
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  • How Brains Make Up Their Minds.Walter J. Freeman - 2000 - Columbia University Press.
    I think, therefore I am. The legendary pronouncement of philosopher René Descartes lingers as accepted wisdom in the Western world nearly four centuries after its author's death. But does thought really come first? Who actually runs the show: we, our thoughts, or the neurons firing within our brains? Walter J. Freeman explores how we control our behavior and make sense of the world around us. Avoiding determinism both in sociobiology, which proposes that persons' genes control their brains' functioning, and 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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  • Reclaiming Cognition: The Primacy of Action, Intention and Emotion.Rafael Núñez & Walter J. Freeman (eds.) - 1999 - Imprint Academic.
    Traditional cognitive science is Cartesian in the sense that it takes as fundamental the distinction between the mental and the physical, the mind and the world. This leads to the claim that cognition is representational and best explained using models derived from AI and computational theory. The authors depart radically from this model.
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  • Knowing in the context of acting: The task dynamics of the A-not-B error.Linda B. Smith, Esther Thelen, Robert Titzer & Dewey McLin - 1999 - Psychological Review 106 (2):235-260.
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  • The roots of thinking.Maxine Sheets-Johnstone - 1990 - Philadelphia: Temple University Press.
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  • Die Physischen Gestalten in Ruhe Und Im Stationären Zustand.Wolfgang Köhler - 1924 - Philosophische Akademie.
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  • Rethinking infant knowledge: Toward an adaptive process account of successes and failures in object permanence tasks.Yuko Munakata, James L. McClelland, Mark H. Johnson & Robert S. Siegler - 1997 - Psychological Review 104 (4):686-713.
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  • Neural dynamics of planned arm movements: Emergent invariants and speed-accuracy properties during trajectory formation.Daniel Bullock & Stephen Grossberg - 1988 - Psychological Review 95 (1):49-90.
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