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  1. Against methodological solipsism: The ecological approach.Mark Rowlands - 1995 - Philosophical Psychology 8 (1):5-24.
    This paper argues that an ecological approach to psychology of the sort advanced by J. J. Gibson provides a coherent and powerful alternative to the computational, information-processing, paradigm. The paper argues for two principles. Firstly, one cannot begin to understand what internal information processing an organism must accomplish until one understands what information is available to the organism in its environment. Secondly, an organism can process information by acting on or manipulating physical structures in its environment. An attempt is made (...)
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  • Emdedded systems vs. individualism.Michael Losonsky - 1995 - Minds and Machines 5 (3):357-71.
    The dispute between individualism and anti-individualism is about the individuation of psychological states, and individualism, on some accounts, is committed to the claim that psychological subjects together with their environments do not constitute integrated computational systems. Hence on this view the computational states that explain psychological states in computational accounts of mind will not involve the subject''s natural and social environment. Moreover, the explanation of a system''s interaction with the environment is, on this view, not the primary goal of computational (...)
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  • The how and why of what went where in apparent motion: Modeling solutions to the motion correspondence problem.Michael R. Dawson - 1991 - Psychological Review 98 (4):569-603.
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  • Upward direction, mental rotation, and discrimination of left and right turns in maps.Roger N. Shepard & Shelley Hurwitz - 1984 - Cognition 18 (1-3):161-193.
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  • (1 other version)Infants' use of featural and experiential information in segregating and individuating objects: a reply to Xu, Carey and Welch.Amy Needham & Renée Baillargeon - 2000 - Cognition 74 (3):255-284.
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  • Throwing the conscious baby out with the Cartesian bath water.J. Aronson, E. Dietrich & E. Way - 1992 - Behavioral and Brain Sciences 15 (2):202-203.
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  • Begging the question against phenomenal consciousness.Ned Block - 1992 - Behavioral and Brain Sciences 15 (2):205-206.
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  • Nothing is instantaneous, even in sensation.Robert A. M. Gregson - 1992 - Behavioral and Brain Sciences 15 (2):210-211.
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  • Invariant and programmable neuropsychological systems are fibrations.William C. Hoffman - 1986 - Behavioral and Brain Sciences 9 (1):99-100.
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  • Connectionist computing and neural machinery: Examining the test of “timing”.John K. Tsotsos - 1986 - Behavioral and Brain Sciences 9 (1):106-107.
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  • The epistemology of intelligence: Contextual variables, tautologies, and external referents.Craig T. Nagoshi - 1987 - Behavioral and Brain Sciences 10 (4):675.
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  • (1 other version)In defence of neurons.Chris Mortensen - 1988 - Behavioral and Brain Sciences 11 (1):44-45.
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  • Subsymbols aren't much good outside of a symbol-processing architecture.Alan Prince & Steven Pinker - 1988 - Behavioral and Brain Sciences 11 (1):46-47.
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  • Making the connections.Jay G. Rueckl - 1988 - Behavioral and Brain Sciences 11 (1):50-51.
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  • Evolution and impulsiveness.Jay Moore - 1988 - Behavioral and Brain Sciences 11 (4):691-691.
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  • On observing the unobservable.Ovide F. Pomerleau & Cynthia S. Pomerleau - 1988 - Behavioral and Brain Sciences 11 (4):692-692.
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  • Cognitive Evolution, Population, Transmission, and Material Culture.Derek Hodgson - 2013 - Biological Theory 7 (3):237-246.
    There has been much debate regarding when modern human cognition arose. It was previously thought that the technocomplexes and artifacts associated with a particular timeframe during the Upper Paleolithic could provide a proxy for identifying the signature of modern cognition. It now appears that this approach has underestimated the complexity of human behavior on a number of different levels. As the artifacts, once thought to be confined to Europe 40,000 years ago onwards, can now be found in other parts of (...)
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  • On computer science, visual science, and the physiological utility of models.Barry J. Richmond & Michael E. Goldberg - 1985 - Behavioral and Brain Sciences 8 (2):300-301.
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  • The nature of external representations in problem solving.Jiajie Zhang - 1997 - Cognitive Science 21 (2):179-217.
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  • Four frames suffice: A provisional model of vision and space.Jerome A. Feldman - 1985 - Behavioral and Brain Sciences 8 (2):265-289.
    This paper presents a general computational treatment of how mammals are able to deal with visual objects and environments. The model tries to cover the entire range from behavior and phenomenological experience to detailed neural encodings in crude but computationally plausible reductive steps. The problems addressed include perceptual constancies, eye movements and the stable visual world, object descriptions, perceptual generalizations, and the representation of extrapersonal space.The entire development is based on an action-oriented notion of perception. The observer is assumed to (...)
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  • Groups in Mind.David Hilbert & Nick Huggett - 2006 - Philosophy of Science 73 (5):765-777.
    We consider the question of the manner of the internalization of the geometry and topology of physical space in the mind, both the mechanism of internalization and precisely what structures are internalized. Though we will not argue for the point here, we agree with the long tradition which holds that an understanding of this issue is crucial for addressing many metaphysical and epistemological questions concerning space.
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  • The theory of tone semantics: Concept, foundation, and application. [REVIEW]Marc Leman - 1992 - Minds and Machines 2 (4):345-363.
    Tone semantics is a psychoacoustic-based theory of gestalt perception that deals with tone perception and the assignment of functional relationships between tones in the musical context. The theory provides an operational account of semantics in terms of complex dynamic systems theory and forms the basis for non-symbolic research in music imagination. This is illustrated by an application in the automatic recognition of tone centers from acoustical input. An analysis of the basic concepts and related epistemological and methodological principles reveals a (...)
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  • Scene context automatically drives predictions of object transformations.Giacomo Aldegheri, Surya Gayet & Marius V. Peelen - 2023 - Cognition 238 (C):105521.
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  • Further Correspondences and Similarities of Shamanism and Cognitive Science: Mental Representation, Implicit Processing, and Cognitive Structures.Timothy L. Hubbard - 2003 - Anthropology of Consciousness 14 (1):40-74.
    Properties of mental representation are related to findings in cognitive science and ideas in shamanism. A selective review of research in cognitive science suggests visual images and spatial memory preserve important functional information regarding physical principles and the behavior of objects in the natural world, and notions of second‐order isomorphism and the perceptual cycle developed to account for such findings are related to shamanic experience. Possible roles of implicit processes in shamanic cognition, and the idea that shamanic experience may involve (...)
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  • Reconciling intuitive physics and Newtonian mechanics for colliding objects.Adam N. Sanborn, Vikash K. Mansinghka & Thomas L. Griffiths - 2013 - Psychological Review 120 (2):411-437.
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  • (1 other version)Thinking in action.Barbara Tversky & Angela Kessell - 2014 - Pragmatics and Cognition 22 (2):206-223.
    When thought overwhelms the mind, the mind uses the body and the world. Several studies reveal ways that people alone or together use gesture and marks on paper to structure and augment their thought for comprehension, inference, and discovery. The studies show that the mapping of thought to gesture or the page is more direct than the arbitrary mapping to language and suggest that these forms of visual/spatial/action representation are used to “translate” language into mental representations. It is argued that (...)
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  • Value units make the right connections.Dana H. Ballard - 1986 - Behavioral and Brain Sciences 9 (1):107-120.
    The cerebral cortex is a rich and diverse structure that is the basis of intelligent behavior. One of the deepest mysteries of the function of cortex is that neural processing times are only about one hundred times as fast as the fastest response times for complex behavior. At the very least, this would seem to indicate that the cortex does massive amounts of parallel computation.This paper explores the hypothesis that an important part of the cortex can be modeled as a (...)
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  • Intelligence: More than a matter of associations.Sara J. Shettleworth - 1987 - Behavioral and Brain Sciences 10 (4):679.
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  • Has the case been made against the ecumenical view of connectionism?Robert Van Gulick - 1988 - Behavioral and Brain Sciences 11 (1):57-58.
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  • Physics, cognition, and connectionism: An interdisciplinary alchemy.Wendy G. Lehnert - 1988 - Behavioral and Brain Sciences 11 (1):40-41.
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  • Sanity surrounded by madness.Georges Rey - 1988 - Behavioral and Brain Sciences 11 (1):48-50.
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  • Self-restraint: A type of self-control in an approach-avoidance situation.Sumio Imada & Hiroshi Imada - 1988 - Behavioral and Brain Sciences 11 (4):687-688.
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  • Where's the psychological reality?C. Philip Winder - 1989 - Behavioral and Brain Sciences 12 (3):417-417.
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  • More packaging needed before tags are added.John Findlay & Robert Kentridge - 1989 - Behavioral and Brain Sciences 12 (3):404-405.
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  • Talking to yourself about what is where: What is the vocabulary of preattentive vision?Jeremy M. Wolfe - 1993 - Behavioral and Brain Sciences 16 (2):254-255.
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  • From observations on language to theories of visual perception.Johan Wagemans - 1993 - Behavioral and Brain Sciences 16 (2):253-254.
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  • Could three frames suffice?Roger A. Browse & Brian E. Butler - 1985 - Behavioral and Brain Sciences 8 (2):290-291.
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  • Head-centered coordinates and the stable feature frame.Richard A. Andersen - 1985 - Behavioral and Brain Sciences 8 (2):289-290.
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  • Linking features in dimensions of mind and brain.Robert B. Glassman - 1985 - Behavioral and Brain Sciences 8 (2):293-294.
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  • Anticipatory spatial representation of 3D regions explored by sighted observers and a deaf-and-blind-observer.Helene Intraub - 2004 - Cognition 94 (1):19-37.
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  • Event representation in Pavlovian conditioning: Image and action.Peter C. Holland - 1990 - Cognition 37 (1-2):105-131.
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  • Toward an identity theory of consciousness.Dan Lloyd - 1992 - Behavioral and Brain Sciences 15 (2):215-216.
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  • Cinema 1-2-Many of the Mind.Adina L. Roskies & C. C. Wood - 1992 - Behavioral and Brain Sciences 15 (2):221-223.
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  • Two tests for the value unit model: Multicell recordings and pointers.David Mumford - 1986 - Behavioral and Brain Sciences 9 (1):102-103.
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  • On the proper treatment of the connection between connectionism and symbolism.Louise Antony & Joseph Levine - 1988 - Behavioral and Brain Sciences 11 (1):23-24.
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  • In delay there lies no plenty.Alasdair I. Houston & John M. McNamara - 1988 - Behavioral and Brain Sciences 11 (4):686-687.
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  • Constraints on Constraints: Surveying the Epigenetic Landscape.Frank C. Keil - 1990 - Cognitive Science 14 (1):135-168.
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  • (2 other versions)Dynamic mental representation in infancy1Portions of this research have been presented at the International Conference on Infant Studies, Society for Research in Child Development, and Association for Research in Vision and Opthamology.1.Susan J. Hespos & Philippe Rochat - 1997 - Cognition 64 (2):153-188.
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  • The where and when of what?Michael V. Antony - 1992 - Behavioral and Brain Sciences 15 (2):201-202.
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