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首页> 外文期刊>NeuroImage >Structural white matter asymmetries in relation to functional asymmetries during speech perception and production
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Structural white matter asymmetries in relation to functional asymmetries during speech perception and production

机译:语音感知和产生过程中与功能不对称有关的结构性白质不对称

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摘要

Functional hemispheric asymmetries of speech production and perception are a key feature of the human language system, but their neurophysiological basis is still poorly understood. Using a combined fMRI and tract-based spatial statistics approach, we investigated the relation of microstructural asymmetries in language-relevant white matter pathways and functional activation asymmetries during silent verb generation and passive listening to spoken words. Tract-based spatial statistics revealed several leftward asymmetric clusters in the arcuate fasciculus and uncinate fasciculus that were differentially related to activation asymmetries in the two functional tasks. Frontal and temporal activation asymmetries during silent verb generation were positively related to the strength of specific microstructural white matter asymmetries in the arcuate fasciculus. In contrast, microstructural uncinate fasciculus asymmetries were related to temporal activation asymmetries during passive listening. These findings suggest that white matter asymmetries may indeed be one of the factors underlying functional hemispheric asymmetries. Moreover, they also show that specific localized white matter asymmetries might be of greater relevance for functional activation asymmetries than microstructural features of whole pathways.
机译:语音产生和知觉的功能性半球不对称是人类语言系统的关键特征,但对它们的神经生理学基础仍知之甚少。使用结合功能磁共振成像和基于道的空间统计方法,我们研究了与语言相关的白质途径中的微结构不对称性与无声动词生成和被动听口语过程中功能激活不对称性的关系。基于区域的空间统计数据显示,在两个功能性任务中,与激活不对称性相关的弓形束和未束状束中有几个向左不对称的簇。沉默动词生成过程中的额度和时间激活不对称与弓形束中特定的微结构白质不对称强度呈正相关。相反,在被动聆听期间,微结构束状筋膜不对称与时间激活不对称有关。这些发现表明,白质不对称确实可能是功能性半球不对称的基础因素之一。此外,他们还表明,特定的局部白质不对称性可能对功能激活不对称性的影响远大于整个途径的微观结构特征。

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