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  1. Shortlist B: A Bayesian model of continuous speech recognition.Dennis Norris & James M. McQueen - 2008 - Psychological Review 115 (2):357-395.
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  • Understanding normal and impaired word reading: Computational principles in quasi-regular domains.David C. Plaut, James L. McClelland, Mark S. Seidenberg & Karalyn Patterson - 1996 - Psychological Review 103 (1):56-115.
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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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  • Nested incremental modeling in the development of computational theories: The CDP+ model of reading aloud.Conrad Perry, Johannes C. Ziegler & Marco Zorzi - 2007 - Psychological Review 114 (2):273-315.
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  • Shortlist: a connectionist model of continuous speech recognition.Dennis Norris - 1994 - Cognition 52 (3):189-234.
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  • A fundamental limitation of the conjunctive codes learned in PDP models of cognition: Comment on Botvinick and Plaut (2006).Jeffrey S. Bowers, Markus F. Damian & Colin J. Davis - 2009 - Psychological Review 116 (4):986-995.
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  • Protein Analysis Meets Visual Word Recognition: A Case for String Kernels in the Brain.Thomas Hannagan & Jonathan Grainger - 2012 - Cognitive Science 36 (4):575-606.
    It has been recently argued that some machine learning techniques known as Kernel methods could be relevant for capturing cognitive and neural mechanisms (Jäkel, Schölkopf, & Wichmann, 2009). We point out that ‘‘String kernels,’’ initially designed for protein function prediction and spam detection, are virtually identical to one contending proposal for how the brain encodes orthographic information during reading. We suggest some reasons for this connection and we derive new ideas for visual word recognition that are successfully put to the (...)
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  • The spatial coding model of visual word identification.Colin J. Davis - 2010 - Psychological Review 117 (3):713-758.
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  • DRC: A dual route cascaded model of visual word recognition and reading aloud.Max Coltheart, Kathleen Rastle, Conrad Perry, Robyn Langdon & Johannes Ziegler - 2001 - Psychological Review 108 (1):204-256.
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  • (1 other version){Finding structure in time}.J. Elman - 1993 - {Cognitive Science} 48:71-99.
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  • (1 other version)Are there interactive processes in speech perception?James L. McClelland, Daniel Mirman & Lori L. Holt - 2006 - Trends in Cognitive Sciences 10 (8):363-369.
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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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  • The temporal structure of spoken language understanding.William Marslen-Wilson & Lorraine Komisarjevsky Tyler - 1980 - Cognition 8 (1):1-71.
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  • (1 other version)A distributed, developmental model of word recognition and naming.Mark S. Seidenberg & James L. McClelland - 1989 - Psychological Review 96 (4):523-568.
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  • Orthographic processing in visual word recognition: A multiple read-out model.Jonathan Grainger & Arthur M. Jacobs - 1996 - Psychological Review 103 (3):518-565.
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  • Representing word meaning and order information in a composite holographic lexicon.Michael N. Jones & Douglas J. K. Mewhort - 2007 - Psychological Review 114 (1):1-37.
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