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  1. Comparative mapping of higher visual areas in monkeys and humans.G. A. Orban, D. Essen & W. Vanduffel - 2004 - Trends in Cognitive Sciences 8 (7):315-324.
  • Comparative mapping of higher visual areas in monkeys and humans.Guy A. Orban, David Van Essen & Wim Vanduffel - 2004 - Trends in Cognitive Sciences 8 (7):315-324.
  • Deconstructing episodic memory with construction.Demis Hassabis & Eleanor A. Maguire - 2007 - Trends in Cognitive Sciences 11 (7):299-306.
  • Other minds in the brain: a functional imaging study of "theory of mind" in story comprehension.P. C. Fletcher, F. Happé, U. Frith, S. C. Baker, R. J. Dolan, R. S. Frackowiak & C. D. Frith - 1995 - Cognition 57 (2):109-128.
  • Emotional processing in anterior cingulate and medial prefrontal cortex.Amit Etkin, Tobias Egner & Raffael Kalisch - 2011 - Trends in Cognitive Sciences 15 (2):85-93.
  • Lesion analysis of the brain areas involved in language comprehension.N. F. Dronkers, D. P. Wilkins, R. D. Valin, B. B. Redfern & J. J. Jaeger - 2003 - Cognition 92 (1-2):145-177.
  • Time-locked multiregional retroactivation: A systems-level proposal for the neural substrates of recognition and recall.Antonio R. Damasio - 1989 - Cognition 3 (1-2):25-62.
  • Neural systems behind word and concept retrieval.H. Damasio, D. Tranel, T. Grabowski, R. Adolphs & A. Damasio - 2003 - Cognition 92 (1-2):179-229.
  • 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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  • The brain's concepts: The role of the sensory-motor system in conceptual knowledge.Vittorio Gallese & George Lakoff - 2007 - Cognitive Neuropsychology 22 (3-4):455-479.
    Concepts are the elementary units of reason and linguistic meaning. They are conventional and relatively stable. As such, they must somehow be the result of neural activity in the brain. The questions are: Where? and How? A common philosophical position is that all concepts—even concepts about action and perception—are symbolic and abstract, and therefore must be implemented outside the brain’s sensory-motor system. We will argue against this position using (1) neuroscientific evidence; (2) results from neural computation; and (3) results about (...)
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  • 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 Mechanism of 'Dynamic Aphasia'.A. R. Luria & L. S. Tsvetkova - 1968 - Foundations of Language 4 (3):296-307.