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观察听觉系统的可塑性:有抱负的职业音乐家的体积减小与功能连接增加相伴

Observing Plasticity of the Auditory System: Volumetric Decreases Along with Increased Functional Connectivity in Aspiring Professional Musicians.

作者信息

Wenger Elisabeth, Papadaki Eleftheria, Werner André, Kühn Simone, Lindenberger Ulman

机构信息

Center for Lifespan Psychology, Max Planck Institute for Human Development, 14195 Berlin, Germany.

Lise Meitner Group for Environmental Neuroscience, Max Planck Institute for Human Development, 14195 Berlin, Germany.

出版信息

Cereb Cortex Commun. 2021 Feb 9;2(2):tgab008. doi: 10.1093/texcom/tgab008. eCollection 2021.

Abstract

Playing music relies on several sensory systems and the motor system, and poses strong demands on control processes, hence, offering an excellent model to study how experience can mold brain structure and function. Although most studies on neural correlates of music expertise rely on cross-sectional comparisons, here we compared within-person changes over time in aspiring professionals intensely preparing for an entrance exam at a University of the Arts to skilled amateur musicians not preparing for a music exam. In the group of aspiring professionals, we observed gray-matter volume decrements in left planum polare, posterior insula, and left inferior frontal orbital gyrus over a period of about 6 months that were absent among the amateur musicians. At the same time, the left planum polare, the largest cluster of structural change, showed increasing functional connectivity with left and right auditory cortex, left precentral gyrus, left supplementary motor cortex, left and right postcentral gyrus, and left cingulate cortex, all regions previously identified to relate to music expertise. In line with the expansion-renormalization pattern of brain plasticity (Wenger et al., 2017a. Expansion and renormalization of human brain structure during skill acquisition. Trends Cogn Sci. 21:930-939.), the aspiring professionals might have been in the selection and refinement period of plastic change.

摘要

演奏音乐依赖于多个感觉系统和运动系统,对控制过程提出了很高的要求,因此,它为研究经验如何塑造大脑结构和功能提供了一个绝佳的模型。尽管大多数关于音乐专业技能神经关联的研究依赖于横断面比较,但在这里,我们比较了正在为艺术大学入学考试进行高强度准备的有抱负的专业人士与未准备音乐考试的熟练业余音乐家随时间的个体内部变化。在有抱负的专业人士组中,我们观察到在大约6个月的时间里,左颞极平面、后岛叶和左额下回眶回的灰质体积减少,而业余音乐家中没有这种情况。同时,结构变化最大的左颞极平面与左、右听觉皮层、左中央前回、左辅助运动皮层、左、右中央后回和左扣带回皮层的功能连接增加,所有这些区域之前都被确定与音乐专业技能有关。与大脑可塑性的扩展-重整化模式一致(温格等人,2017a。技能习得过程中人类大脑结构的扩展和重整化。《认知科学趋势》。21:930-939。),有抱负的专业人士可能处于可塑性变化的选择和优化阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa5f/8152844/4f1710a9d671/tgab008f1.jpg

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