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  1. Impaired statistical learning of non-adjacent dependencies in adolescents with specific language impairment.Hsinjen J. Hsu, J. Bruce Tomblin & Morten H. Christiansen - 2014 - Frontiers in Psychology 5.
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  • Infant memory for musical experiences.Jenny R. Saffran, Michelle M. Loman & Rachel R. W. Robertson - 2000 - Cognition 77 (1):B15-B23.
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  • The discrimination of speech sounds within and across phoneme boundaries.Alvin M. Liberman, Katherine Safford Harris, Howard S. Hoffman & Belver C. Griffith - 1957 - Journal of Experimental Psychology 54 (5):358.
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  • The faculty of language: What is it, who has it, and how did it evolve?Hauser Marc, D. Chomsky, Noam Fitch & W. Tecumseh - 2002 - Science 298 (22):1569-1579.
    We argue that an understanding of the faculty of language requires substantial interdisciplinary cooperation. We suggest how current developments in linguistics can be profitably wedded to work in evolutionary biology, anthropology, psychology, and neuroscience. We submit that a distinction should be made between the faculty of language in the broad sense (FLB)and in the narrow sense (FLN). FLB includes a sensory-motor system, a conceptual-intentional system, and the computational mechanisms for recursion, providing the capacity to generate an infinite range of expressions (...)
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  • The relative importance of local and global structures in music perception.Barbara Tillmann & Emmanuel Bigand - 2004 - Journal of Aesthetics and Art Criticism 62 (2):211–222.
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  • The relationship between the neural computations for speech and music perception is context-dependent: an activation likelihood estimate study.Arianna LaCroix, Alvaro F. Diaz & Corianne Rogalsky - 2015 - Frontiers in Psychology 6:144900.
    The relationship between the neurobiology of speech and music has been investigated for more than a century. There remains no widespread agreement regarding how (or to what extent) music perception utilizes the neural circuitry that is engaged in speech processing, particularly at the cortical level. Prominent models such as Patel’s Shared Syntactic Integration Resource Hypothesis (SSIRH) and Koelsch’s neurocognitive model of music perception suggest a high degree of overlap, particularly in the frontal lobe, but also perhaps more distinct representations in (...)
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  • An empirical comparison of rhythm in language and music.Aniruddh D. Patel & Joseph R. Daniele - 2003 - Cognition 87 (1):B35-B45.
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  • Perceiving temporal regularity in music.Edward W. Large & Caroline Palmer - 2002 - Cognitive Science 26 (1):1-37.
    We address how listeners perceive temporal regularity in music performances, which are rich in temporal irregularities. A computational model is described in which a small system of internal self‐sustained oscillations, operating at different periods with specific phase and period relations, entrains to the rhythms of music performances. Based on temporal expectancies embodied by the oscillations, the model predicts the categorization of temporally changing event intervals into discrete metrical categories, as well as the perceptual salience of deviations from these categories. The (...)
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  • The tonal function of a task-irrelevant chord modulates speed of visual processing.N. Escoffier & B. Tillmann - 2008 - Cognition 107 (3):1070-1083.
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  • (1 other version)Prosodic phrasing is central to language comprehension.Lyn Frazier, Katy Carlson & Charles Clifton Jr - 2006 - Trends in Cognitive Sciences 10 (6):244-249.
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  • Musical structure modulates semantic priming in vocal music.Bénédicte Poulin-Charronnat, Emmanuel Bigand, François Madurell & Ronald Peereman - 2005 - Cognition 94 (3):B67-B78.
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