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弓状束的微观结构可塑性为音乐家改善噪声环境下的言语感知能力提供支持。

The Microstructural Plasticity of the Arcuate Fasciculus Undergirds Improved Speech in Noise Perception in Musicians.

机构信息

CAS Key Laboratory of Behavioral Science, Institute of Psychology, Chinese Academy of Sciences, Beijing 100101, China.

Department of Psychology, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Cereb Cortex. 2021 Jul 29;31(9):3975-3985. doi: 10.1093/cercor/bhab063.

Abstract

Musical training is thought to be related to improved language skills, for example, understanding speech in background noise. Although studies have found that musicians and nonmusicians differed in morphology of bilateral arcuate fasciculus (AF), none has associated such white matter features with speech-in-noise (SIN) perception. Here, we tested both SIN and the diffusivity of bilateral AF segments in musicians and nonmusicians using diffusion tensor imaging. Compared with nonmusicians, musicians had higher fractional anisotropy (FA) in the right direct AF and lower radial diffusivity in the left anterior AF, which correlated with SIN performance. The FA-based laterality index showed stronger right lateralization of the direct AF and stronger left lateralization of the posterior AF in musicians than nonmusicians, with the posterior AF laterality predicting SIN accuracy. Furthermore, hemodynamic activity in right superior temporal gyrus obtained during a SIN task played a full mediation role in explaining the contribution of the right direct AF diffusivity on SIN performance, which therefore links training-related white matter plasticity, brain hemodynamics, and speech perception ability. Our findings provide direct evidence that differential microstructural plasticity of bilateral AF segments may serve as a neural foundation of the cross-domain transfer effect of musical experience to speech perception amid competing noise.

摘要

音乐训练被认为与语言技能的提高有关,例如,在背景噪音中理解言语。尽管研究发现音乐家和非音乐家的双侧弓状束(AF)形态存在差异,但没有研究将这些白质特征与噪声中的言语感知(SIN)联系起来。在这里,我们使用弥散张量成像技术测试了音乐家和非音乐家的 SIN 和双侧 AF 节段的弥散性。与非音乐家相比,音乐家的右侧直接 AF 的分数各向异性(FA)更高,左侧前 AF 的径向弥散度更低,这与 SIN 表现相关。基于 FA 的侧化指数显示,音乐家的直接 AF 右侧侧化更强,后部 AF 的左侧侧化更强,后部 AF 的侧化预测 SIN 的准确性。此外,在 SIN 任务期间获得的右侧颞上回的血流动力学活动在解释右侧直接 AF 弥散度对 SIN 表现的贡献方面发挥了完全的中介作用,这就将与训练相关的白质可塑性、大脑血流动力学和言语感知能力联系起来。我们的研究结果提供了直接的证据,表明双侧 AF 节段的不同微观结构可塑性可能是音乐经验对竞争噪声中的言语感知的跨域转移效应的神经基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce20/8328222/26e4beeba10f/bhab063f1.jpg

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