Brain Plasticity Reflects Specialized Cognitive Development Induced by Musical Training.

Cerebral cortex communications Pub Date : 2021-05-31 eCollection Date: 2021-01-01 DOI:10.1093/texcom/tgab037
Uk-Su Choi, Yul-Wan Sung, Seiji Ogawa
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引用次数: 2

Abstract

Learning a musical instrument requires a long period of training and might induce structural and functional changes in the brain. Previous studies have shown brain plasticity resulting from training with a musical instrument. However, these studies did not distinguish the effects on brain plasticity of specific musical instruments as they examined the brain of musicians who had learned a single musical instrument/genre and did not control for confounding factors, such as common or interactive effects involved in music training. To address this research gap, the present work investigated musicians who had experience with both a piano and a wind instrument, for example, flute, trumpet, clarinet etc. By examining the difference between the 2 musical instruments in the same subject, we avoided the effects common to all musical instruments and the confounding factors. Therefore, we identified several high-tier brain areas displaying a brain plasticity specific to each musical instrument. Our findings show that learning a musical instrument might result in the development of high cognitive functions reflecting the skills/abilities unique to the instrument played.

大脑可塑性反映了音乐训练引起的特殊认知发展。
学习一种乐器需要长时间的训练,可能会引起大脑结构和功能的变化。先前的研究表明,使用乐器训练会导致大脑的可塑性。然而,这些研究并没有区分特定乐器对大脑可塑性的影响,因为他们检查的是学习过单一乐器/流派的音乐家的大脑,并且没有控制混杂因素,例如音乐训练中涉及的共同或互动影响。为了解决这一研究差距,目前的工作调查了有钢琴和管乐器经验的音乐家,例如,长笛,小号,单簧管等。通过检查同一科目中两种乐器之间的差异,我们避免了所有乐器共同的影响和混淆因素。因此,我们确定了几个高级大脑区域,显示出每种乐器特有的大脑可塑性。我们的研究结果表明,学习一种乐器可能会导致高级认知功能的发展,这反映了所演奏乐器所特有的技能/能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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