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  1. Whatever next? Predictive brains, situated agents, and the future of cognitive science.Andy Clark - 2013 - Behavioral and Brain Sciences 36 (3):181-204.
    Brains, it has recently been argued, are essentially prediction machines. They are bundles of cells that support perception and action by constantly attempting to match incoming sensory inputs with top-down expectations or predictions. This is achieved using a hierarchical generative model that aims to minimize prediction error within a bidirectional cascade of cortical processing. Such accounts offer a unifying model of perception and action, illuminate the functional role of attention, and may neatly capture the special contribution of cortical processing to (...)
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  • The difficulties of executing simple algorithms: Why brains make mistakes computers don’t.Gary Lupyan - 2013 - Cognition 129 (3):615-636.
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  • (1 other version)Finding Structure in Time.Jeffrey L. Elman - 1990 - Cognitive Science 14 (2):179-211.
    Time underlies many interesting human behaviors. Thus, the question of how to represent time in connectionist models is very important. One approach is to represent time implicitly by its effects on processing rather than explicitly (as in a spatial representation). The current report develops a proposal along these lines first described by Jordan (1986) which involves the use of recurrent links in order to provide networks with a dynamic memory. In this approach, hidden unit patterns are fed back to themselves: (...)
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  • The cognizer's innards: A psychological and philosophical perspective on the development of thought.Andy Clark & Annette Karmiloff-Smith - 1993 - Mind and Language 8 (4):487-519.
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  • Connectionism and cognitive architecture: A critical analysis.Jerry A. Fodor & Zenon W. Pylyshyn - 1988 - Cognition 28 (1-2):3-71.
    This paper explores the difference between Connectionist proposals for cognitive a r c h i t e c t u r e a n d t h e s o r t s o f m o d e l s t hat have traditionally been assum e d i n c o g n i t i v e s c i e n c e . W e c l a i m t h a t t h (...)
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  • (1 other version)A logical calculus of the ideas immanent in nervous activity.Warren S. McCulloch & Walter Pitts - 1943 - The Bulletin of Mathematical Biophysics 5 (4):115-133.
    Because of the “all-or-none” character of nervous activity, neural events and the relations among them can be treated by means of propositional logic. It is found that the behavior of every net can be described in these terms, with the addition of more complicated logical means for nets containing circles; and that for any logical expression satisfying certain conditions, one can find a net behaving in the fashion it describes. It is shown that many particular choices among possible neurophysiological assumptions (...)
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  • An interactive activation model of context effects in letter perception: I. An account of basic findings.James L. McClelland & David E. Rumelhart - 1981 - Psychological Review 88 (5):375-407.
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  • The perceptron: A probabilistic model for information storage and organization in the brain.F. Rosenblatt - 1958 - Psychological Review 65 (6):386-408.
    If we are eventually to understand the capability of higher organisms for perceptual recognition, generalization, recall, and thinking, we must first have answers to three fundamental questions: 1. How is information about the physical world sensed, or detected, by the biological system? 2. In what form is information stored, or remembered? 3. How does information contained in storage, or in memory, influence recognition and behavior? The first of these questions is in the.
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  • An amodal shared resource model of language-mediated visual attention.Alastair C. Smith, Padraic Monaghan & Falk Huettig - 2013 - Frontiers in Psychology 4.
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  • A computational model to investigate assumptions in the headturn preference procedure.Christina Bergmann, Louis ten Bosch, Paula Fikkert & Lou Boves - 2013 - Frontiers in Psychology 4.
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  • (1 other version)A Logical Calculus of the Ideas Immanent in Nervous Activity.Warren S. Mcculloch & Walter Pitts - 1943 - Journal of Symbolic Logic 9 (2):49-50.
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  • (1 other version){Finding structure in time}.J. Elman - 1993 - {Cognitive Science} 48:71-99.
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  • Perceptual recognition as a function of meaningfulness of stimulus material.Gerald M. Reicher - 1969 - Journal of Experimental Psychology 81 (2):275.
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  • The Cognizer's Innards: A Psychological and Philosophical Perspective on the Development of Thought.Andy Clark & Annette Karmiloff-Smith - 1991 - School of Cognitive and Computing Sciences, University of Sussex.
    We show that a popular class of connectionist models (which we label 'first order connectionism') looks unlikely to provide the kind of resources required by the hypothesis. We examine some alternative hybrid models that seem more promising. Finally, we raise a more purely philosophical issue concerning the conditions under which a being can count as a genuine believer or cognizer.".
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  • .J. L. McClelland & D. E. Rumelhart (eds.) - 1987 - MIT Press.
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  • A neurocomputational account of taxonomic responding and fast mapping in early word learning.Julien Mayor & Kim Plunkett - 2010 - Psychological Review 117 (1):1-31.
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  • The Algebraic Mind: Integrating Connectionism and Cognitive Science.Gary F. Marcus - 2001 - MIT Press.
    1 Cognitive Architectures 2 Multilayer Perceptrons 3 Relations between Variables 4 Structured Representations 5 Individuals 6 Where does the Machinery of Symbol Manipulation Come From? 7 Conclusions.
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  • Modeling language and cognition with deep unsupervised learning: a tutorial overview.Marco Zorzi, Alberto Testolin & Ivilin P. Stoianov - 2013 - Frontiers in Psychology 4.
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  • Shortlist: a connectionist model of continuous speech recognition.Dennis Norris - 1994 - Cognition 52 (3):189-234.
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  • Beyond mind-reading: multi-voxel pattern analysis of fMRI data.Kenneth A. Norman, Sean M. Polyn, Greg J. Detre & James V. Haxby - 2006 - Trends in Cognitive Sciences 10 (9):424-430.
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  • Why there are complementary learning systems in the hippocampus and neocortex: Insights from the successes and failures of connectionist models of learning and memory.James L. McClelland, Bruce L. McNaughton & Randall C. O'Reilly - 1995 - Psychological Review 102 (3):419-457.
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  • Spoken word recognition without a TRACE.Thomas Hannagan, James S. Magnuson & Jonathan Grainger - 2013 - Frontiers in Psychology 4.
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  • The resonant dynamics of speech perception: Interword integration and duration-dependent backward effects.Stephen Grossberg & Christopher W. Myers - 2000 - Psychological Review 107 (4):735-767.
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