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  1. The dynamics of embodiment: A field theory of infant perseverative reaching.Esther Thelen, Gregor Schöner, Christian Scheier & Linda B. Smith - 2001 - Behavioral and Brain Sciences 24 (1):1-34.
    The overall goal of this target article is to demonstrate a mechanism for an embodied cognition. The particular vehicle is a much-studied, but still widely debated phenomenon seen in 7–12 month-old-infants. In Piaget's classic “A-not-B error,” infants who have successfully uncovered a toy at location “A” continue to reach to that location even after they watch the toy hidden in a nearby location “B.” Here, we question the traditional explanations of the error as an indicator of infants' concepts of objects (...)
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  • Numerical abstraction by human infants.Prentice Starkey, Elizabeth S. Spelke & Rochel Gelman - 1990 - Cognition 36 (2):97-127.
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  • Origins of knowledge.Elizabeth S. Spelke, Karen Breinlinger, Janet Macomber & Kristen Jacobson - 1992 - Psychological Review 99 (4):605-632.
    Experiments with young infants provide evidence for early-developing capacities to represent physical objects and to reason about object motion. Early physical reasoning accords with 2 constraints at the center of mature physical conceptions: continuity and solidity. It fails to accord with 2 constraints that may be peripheral to mature conceptions: gravity and inertia. These experiments suggest that cognition develops concurrently with perception and action and that development leads to the enrichment of conceptions around an unchanging core. The experiments challenge claims (...)
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  • Whose DAM account? Attentional learning explains Booth and Waxman.Linda B. Smith, Susan S. Jones, Hanako Yoshida & Eliana Colunga - 2003 - Cognition 87 (3):209-213.
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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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  • 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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  • Early noun vocabularies: do ontology, category structure and syntax correspond?Larissa K. Samuelson & Linda B. Smith - 1999 - Cognition 73 (1):1-33.
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  • Detection and recognition.R. Duncan Luce - 1963 - In D. Luce (ed.), Handbook of Mathematical Psychology. John Wiley & Sons.. pp. 1--103.
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  • Neural mechanisms of selective visual attention.R. Desimone & J. Duncan - 1995 - Annual Review of Neuroscience 18 (1):193-222.
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  • How specific is the shape bias?Paul Bloom - manuscript
    Children tend to extend object names on the basis of sameness of shape, rather than size, color, or materialFa tendency that has been dubbed the ‘‘shape bias.’’ Is the shape bias the result of well-learned associations between words and objects? Or does it exist because of a general belief that shape is a good indicator of object category membership? The present three studies addressed this debate by exploring whether the shape bias is specific to naming. In Study 1, 3-year-olds showed (...)
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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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  • ALCOVE: An exemplar-based connectionist model of category learning.John K. Kruschke - 1992 - Psychological Review 99 (1):22-44.
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  • Word learning is 'smart': evidence that conceptual information affects preschoolers' extension of novel words.A. Booth - 2002 - Cognition 84 (1):B11-B22.
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  • Are dynamical systems the answer?Arthur B. Markman - 2001 - Behavioral and Brain Sciences 24 (1):50-51.
    The proposed model is put forward as a template for the dynamical systems approach to embodied cognition. In order to extend this view to cognitive processing in general, however, two limitations must be overcome. First, it must be demonstrated that sensorimotor coordination of the type evident in the A-not-B error is typical of other aspects of cognition. Second, the explanatory utility of dynamical systems models must be clarified.
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  • CAB: Connectionist Analogy Builder.Levi B. Larkey & Bradley C. Love - 2003 - Cognitive Science 27 (5):781-794.
    The ability to make informative comparisons is central to human cognition. Comparison involves aligning two representations and placing their elements into correspondence. Detecting correspondences is a necessary component of analogical inference, recognition, categorization, schema formation, and similarity judgment. Connectionist Analogy Builder (CAB) determines correspondences through a simple iterative computation that matches elements in one representation with elements playing compatible roles in the other representation while simultaneously enforcing structural constraints. CAB shows promise as a process model of comparison as its performance (...)
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  • Alcove-an exemplar-based connectionist model of category learning.Jk Kruschke & Rm Nosofsky - 1991 - Bulletin of the Psychonomic Society 29 (6):475-475.
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  • An affordance field for guiding movement and cognition.Arthur M. Glenberg, Monica R. Cowart & Michael P. Kaschak - 2001 - Behavioral and Brain Sciences 24 (1):43-44.
    An embodied movement-planning field cannot account for behavior and cognition more abstract than that of reaching. Instead, we propose an affordance field, and we sketch how it could enhance the analysis of the A-not-B error, underlie cognition, and serve as a base for language. Admittedly, a dynamic systems account of an affordance field awaits significant further development.
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  • Similarity and the development of rules.Dedre Gentner & José Medina - 1998 - Cognition 65 (2-3):263-297.
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  • The behavior-cognition link is well done; the cognition-brain link needs more work.Walter J. Freeman - 2001 - Behavioral and Brain Sciences 24 (1):42-43.
    Thelen et al. have a strong case for linking behavior with mind through nonrepresentational dynamics. Their case linking mind with brain is less compelling. Modified avenues are proposed for further exploration: greater emphasis on the dynamics of perception; use of chaotic instead of deterministic dynamics with noise; and use of intentionality instead of motivation, taking advantage of its creative dynamics to model genesis of goal-directed behaviors.
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  • Dynamic field theory of movement preparation.Wolfram Erlhagen & Gregor Schöner - 2002 - Psychological Review 109 (3):545-572.
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