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Three forms of binding and their neural substrates: Alternatives to temporal synchrony

In Axel Cleeremans (ed.), The Unity of Consciousness. Oxford University Press. pp. 168--192 (2003)

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  1. 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.
  • The phonological loop as a language learning device.Alan Baddeley, Susan Gathercole & Costanza Papagno - 1998 - Psychological Review 105 (1):158-173.
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  • Context-sensitive coding, associative memory, and serial order in (speech) behavior.Wayne A. Wickelgran - 1969 - Psychological Review 76 (1):1-15.
  • Learning and applying contextual constraints in sentence comprehension.Mark F. St John & James L. McClelland - 1990 - Artificial Intelligence 46 (1-2):217-257.
  • Memory and the hippocampus: A synthesis from findings with rats, monkeys, and humans.Larry R. Squire - 1992 - Psychological Review 99 (2):195-231.
  • "Memory and the hippocampus: A synthesis from findings with rats, monkeys, and humans": Correction.Larry R. Squire - 1992 - Psychological Review 99 (3):582-582.
  • Tensor product variable binding and the representation of symbolic structures in connectionist systems.Paul Smolensky - 1990 - Artificial Intelligence 46 (1-2):159-216.
  • From simple associations to systematic reasoning: A connectionist representation of rules, variables, and dynamic binding using temporal synchrony.Lokendra Shastri & Venkat Ajjanagadde - 1993 - Behavioral and Brain Sciences 16 (3):417-51.
    Human agents draw a variety of inferences effortlessly, spontaneously, and with remarkable efficiency – as though these inferences were a reflexive response of their cognitive apparatus. Furthermore, these inferences are drawn with reference to a large body of background knowledge. This remarkable human ability seems paradoxical given the complexity of reasoning reported by researchers in artificial intelligence. It also poses a challenge for cognitive science and computational neuroscience: How can a system of simple and slow neuronlike elements represent a large (...)
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  • 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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  • 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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  • Six principles for biologically based computational models of cortical cognition.Randall C. O'Reilly - 1998 - Trends in Cognitive Sciences 2 (11):455-462.
  • Conjunctive representations in learning and memory: Principles of cortical and hippocampal function.Randall C. O'Reilly & Jerry W. Rudy - 2001 - Psychological Review 108 (2):311-345.
  • An Integrative Theory of Prefrontal Cortex Function.Earl K. Miller & Jonathan D. Cohen - 2001 - Annual Review of Neuroscience 24 (1):167-202.
    The prefrontal cortex has long been suspected to play an important role in cognitive control, in the ability to orchestrate thought and action in accordance with internal goals. Its neural basis, however, has remained a mystery. Here, we propose that cognitive control stems from the active maintenance of patterns of activity in the prefrontal cortex that represent goals and the means to achieve them. They provide bias signals to other brain structures whose net effect is to guide the flow of (...)
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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.
  • Memory for serial order.Stephan Lewandowsky & Bennet B. Murdock - 1989 - Psychological Review 96 (1):25-57.
  • 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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  • Dynamic binding in a neural network for shape recognition.John E. Hummel & Irving Biederman - 1992 - Psychological Review 99 (3):480-517.