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  1. Microstructural musical linguistics: composers' pulses are liked most by the best musicians.Manfred Clynes - 1995 - Cognition 55 (3):269-310.
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  • The perceived intentionality of groups.Paul Bloom & Csaba Veres - 1999 - Cognition 71 (1):B1-B9.
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  • Varieties of musical experience.Jamshed J. Bharucha, Meagan Curtis & Kaivon Paroo - 2006 - Cognition 100 (1):131-172.
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  • From monkey-like action recognition to human language: An evolutionary framework for neurolinguistics.Michael A. Arbib - 2005 - Behavioral and Brain Sciences 28 (2):105-124.
    The article analyzes the neural and functional grounding of language skills as well as their emergence in hominid evolution, hypothesizing stages leading from abilities known to exist in monkeys and apes and presumed to exist in our hominid ancestors right through to modern spoken and signed languages. The starting point is the observation that both premotor area F5 in monkeys and Broca's area in humans contain a “mirror system” active for both execution and observation of manual actions, and that F5 (...)
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  • Infant music perception: Domain-general or domain-specific mechanisms?Sandra E. Trehub & Erin E. Hannon - 2006 - Cognition 100 (1):73-99.
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  • Complexity and the representation of patterned sequences of symbols.Herbert A. Simon - 1972 - Psychological Review 79 (5):369-382.
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  • The faculty of language: what's special about it?Steven Pinker & Ray Jackendoff - 2005 - Cognition 95 (2):201-236.
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  • The capacity for music: What is it, and what’s special about it?Fred Lerdahl & Ray Jackendoff - 2006 - Cognition 100 (1):33-72.
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  • The faculty of language: what's special about it?Ray Jackendoff & Steven Pinker - 2005 - Cognition 95 (2):201-236.
    We examine the question of which aspects of language are uniquely human and uniquely linguistic in light of recent suggestions by Hauser, Chomsky, and Fitch that the only such aspect is syntactic recursion, the rest of language being either specific to humans but not to language (e.g. words and concepts) or not specific to humans (e.g. speech perception). We find the hypothesis problematic. It ignores the many aspects of grammar that are not recursive, such as phonology, morphology, case, agreement, and (...)
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  • The capacity for music: What is it, and what’s special about it?Ray Jackendoff & Fred Lerdahl - 2006 - Cognition 100 (1):33-72.
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  • Frame Analysis: An Essay on the Organization of Experience.Erving Goffman - 1979 - Philosophy and Phenomenological Research 39 (4):601-602.
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  • The evolution of language: A comparative review. [REVIEW]W. Tecumseh Fitch - 2005 - Biology and Philosophy 20 (2-3):193-203.
    For many years the evolution of language has been seen as a disreputable topic, mired in fanciful “just so stories” about language origins. However, in the last decade a new synthesis of modern linguistics, cognitive neuroscience and neo-Darwinian evolutionary theory has begun to make important contributions to our understanding of the biology and evolution of language. I review some of this recent progress, focusing on the value of the comparative method, which uses data from animal species to draw inferences about (...)
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  • The evolution of the language faculty: Clarifications and implications.W. Tecumseh Fitch, Marc D. Hauser & Noam Chomsky - 2005 - Cognition 97 (2):179-210.
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  • Prelinguistic evolution in early hominins: Whence motherese?Dean Falk - 2004 - Behavioral and Brain Sciences 27 (4):491-503.
    In order to formulate hypotheses about the evolutionary underpinnings that preceded the first glimmerings of language, mother-infant gestural and vocal interactions are compared in chimpanzees and humans and used to model those of early hominins. These data, along with paleoanthropological evidence, suggest that prelinguistic vocal substrates for protolanguage that had prosodic features similar to contemporary motherese evolved as the trend for enlarging brains in late australopithecines/early Homo progressively increased the difficulty of parturition, thus causing a selective shift toward females that (...)
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  • Coevolution of neocortical size, group size and language in humans.R. I. M. Dunbar - 1993 - Behavioral and Brain Sciences 16 (4):681-694.
    Group size is a function of relative neocortical volume in nonhuman primates. Extrapolation from this regression equation yields a predicted group size for modern humans very similar to that of certain hunter-gatherer and traditional horticulturalist societies. Groups of similar size are also found in other large-scale forms of contemporary and historical society. Among primates, the cohesion of groups is maintained by social grooming; the time devoted to social grooming is linearly related to group size among the Old World monkeys and (...)
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  • The Architecture of Complexity.Herbert A. Simon - 1962 - Proceedings of the American Philosophical Society 106.
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  • Laws of organization in perceptual forms.Max Wertheimer - 1923 - Psycologische Forschung 4:301-350.
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