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Fujioka, T., Trainor, L. J., Ross, B., Kakigi, R., & Pantev, C. (2004). Musical Training Enhances Automatic Encoding of Melodic Contour and Interval Structure. Journal of Cognitive Neuroscience, 16, 1010-1021.
http://dx.doi.org/10.1162/0898929041502706

被以下文章引用:

  • 标题: 脑与音乐学习Brain and Music Learning

    作者: 南云

    关键字: 脑科学, 音乐学习, 音乐教育Brain Sciences, Music Learning, Music Education

    期刊名称: 《Advances in Psychology》, Vol.6 No.1, 2016-01-29

    摘要: 近年来迅猛发展的脑科学为人们认识经验对于大脑的塑造作用提供了独特而又宝贵的视角,使人们能够在行为研究的基础上,进一步探索脑可塑性相应的神经机理。本文主要综述了脑与音乐学习方面近年来的研究成果,概括了音乐学习对个体脑的重要意义以及相应脑科学方面的认识对音乐学习与教育的启示,倡导“基于脑科学的音乐学习与教育”。 In recent years, the rapidly developing brain science has offered precious and unique perspectives on how experiences modulate the plasticity of human brain. Besides the behavioral methods, we were thus able to further understand the related neural mechanisms underlying brain plasticity. This article reviewed recent findings on brain and music learning, highlighting the importance of music learning to individual brain and the implications of brain sciences for music learning and education, and promoting “brain science-based music learning and education”.

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