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Relations among musical skills, phonological processing, and early reading ability in preschool children

, , , and . Journal of Experimental Child Psychology, 83 (2): 111--30 (October 2002)

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Mismatch Responses to Pitch Changes in Early Infancy., , and . J. Cognitive Neuroscience, 19 (5): 878-892 (2007)A comparison of infants' and adults' sensitivity to Western musical structure, and . Journal of Experimental Psychology: Human Perception and Performance, 18 (2): 394--402 (1992)If Turing played piano with an artificial partner., , , , , and . CoRR, (2024)Iterative enhancement of event related potentials through sparsity constraints., , , and . EUSIPCO, page 1-5. IEEE, (2008)Quantifying Sources of Variability in Infancy Research Using the Infant-Directed-Speech Preference, , , , , , , , , and 139 other author(s). Advances in Methods and Practices in Psychological Science, 3 (1): 24--52 (March 2020)Development of a flexible, realistic hearing in noise test environment (R-HINT-E)., , , , , , , and . Signal Process., 84 (2): 299-309 (2004)Automatic and controlled processing of melodic contour brain activity, , and . Journal of Cognitive Neuroscience, (1998)Enhancement of neuroplastic P2 and N1c auditory evoked potentials in musicians, , , and . Journal of Neuroscience, 23 (13): 5545--52 (July 2003)Rhythmicity facilitates pitch discrimination: Differential roles of low and high frequency neural oscillations., , and . NeuroImage, (2019)A comparison of contour and interval processing in musicians and nonmusicians using event-related potentials, , and . Australian Journal of Psychology, 51 (3): 147--153 (1999)