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  1. The magical number 4 in short-term memory: A reconsideration of mental storage capacity.Nelson Cowan - 2001 - Behavioral and Brain Sciences 24 (1):87-114.
    Miller (1956) summarized evidence that people can remember about seven chunks in short-term memory (STM) tasks. However, that number was meant more as a rough estimate and a rhetorical device than as a real capacity limit. Others have since suggested that there is a more precise capacity limit, but that it is only three to five chunks. The present target article brings together a wide variety of data on capacity limits suggesting that the smaller capacity limit is real. Capacity limits (...)
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  • Computing the Meanings of Words in Reading: Cooperative Division of Labor Between Visual and Phonological Processes.Michael W. Harm & Mark S. Seidenberg - 2004 - Psychological Review 111 (3):662-720.
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  • Distributed representations of structure: A theory of analogical access and mapping.John E. Hummel & Keith J. Holyoak - 1997 - Psychological Review 104 (3):427-466.
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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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  • Am I thinking assemblies?Christoph von der Malsburg - 1986 - In G. Palm & A. Aertsen (eds.), Brain Theory. Springer.
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  • Generalization through the recurrent interaction of episodic memories: A model of the hippocampal system.Dharshan Kumaran & James L. McClelland - 2012 - Psychological Review 119 (3):573-616.
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  • How does a brain build a cognitive code?Stephen Grossberg - 1980 - Psychological Review 87 (1):1-51.
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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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  • 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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  • Connectionist modelling in psychology: A localist manifesto.Mike Page - 2000 - Behavioral and Brain Sciences 23 (4):443-467.
    Over the last decade, fully distributed models have become dominant in connectionist psychological modelling, whereas the virtues of localist models have been underestimated. This target article illustrates some of the benefits of localist modelling. Localist models are characterized by the presence of localist representations rather than the absence of distributed representations. A generalized localist model is proposed that exhibits many of the properties of fully distributed models. It can be applied to a number of problems that are difficult for fully (...)
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  • On the biological plausibility of grandmother cells: Implications for neural network theories in psychology and neuroscience.Jeffrey S. Bowers - 2009 - Psychological Review 116 (1):220-251.
    A fundamental claim associated with parallel distributed processing theories of cognition is that knowledge is coded in a distributed manner in mind and brain. This approach rejects the claim that knowledge is coded in a localist fashion, with words, objects, and simple concepts, that is, coded with their own dedicated representations. One of the putative advantages of this approach is that the theories are biologically plausible. Indeed, advocates of the PDP approach often highlight the close parallels between distributed representations learned (...)
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  • Stipulating versus discovering representations.David C. Plaut & James L. McClelland - 2000 - Behavioral and Brain Sciences 23 (4):489-491.
    Page's proposal to stipulate representations in which individual units correspond to meaningful entities is too unconstrained to support effective theorizing. An approach combining general computational principles with domain-specific assumptions, in which learning is used to discover representations that are effective in solving tasks, provides more insight into why cognitive and neural systems are organized the way they are.
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  • Memory for serial order: A network model of the phonological loop and its timing.Neil Burgess & Graham J. Hitch - 1999 - Psychological Review 106 (3):551-581.
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  • Short-term memory for serial order: A recurrent neural network model.Matthew M. Botvinick & David C. Plaut - 2006 - Psychological Review 113 (2):201-233.
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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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  • Empirical and computational support for context-dependent representations of serial order: Reply to Bowers, Damian, and Davis (2009).Matthew M. Botvinick & David C. Plaut - 2009 - Psychological Review 116 (4):998-1001.
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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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  • Neural networks learn highly selective representations in order to overcome the superposition catastrophe.Jeffrey S. Bowers, Ivan I. Vankov, Markus F. Damian & Colin J. Davis - 2014 - Psychological Review 121 (2):248-261.
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  • Oscillator-based memory for serial order.Gordon D. A. Brown, Tim Preece & Charles Hulme - 2000 - Psychological Review 107 (1):127-181.
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