A transcallosal fibre system between homotopic inferior frontal regions supports complex linguistic processing

P. Kellmeyer, M. Vry, T. Ball
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引用次数: 1

Abstract

Inferior frontal regions in the left and right hemisphere support different aspects of language processing. In the canonical model, left inferior frontal regions are mostly involved in processing based on phonological, syntactic and semantic features of language, whereas the right inferior frontal regions process paralinguistic aspects like affective prosody. Using diffusion tensor imaging (DTI) based probabilistic fiber tracking in 20 healthy volunteers, we identify a callosal fiber system connecting left and right inferior frontal regions that are involved in linguistic processing of varying complexity. Anatomically, we show that the interhemispheric fibers are highly aligned and distributed along a rostral to caudal gradient in the body and genu of the corpus callosum to connect homotopic inferior frontal regions. In light of converging data, taking previous DTI-based tracking studies and clinical case studies into account, our findings suggest that the right inferior frontal cortex not only processes paralinguistic aspects of language (such as affective prosody), as purported by the canonical model, but also supports the computation of linguistic aspects of varying complexity in the human brain. Our model may explain patterns of right hemispheric contribution to stroke recovery as well as disorders of prosodic processing. Beyond language-related brain function, we discuss how interspecies differences in interhemispheric connectivity and fiber density, including the system we described here, may also explain differences in transcallosal information transfer and cognitive abilities across different mammalian species.
同位额叶下区之间的跨胼胝体纤维系统支持复杂的语言处理
左右半球的额叶下区支持语言处理的不同方面。在规范模型中,左侧额叶下区主要参与基于语音、句法和语义特征的语言处理,而右侧额叶下区主要处理情感韵律等副语言方面的信息。利用基于扩散张量成像(DTI)的概率纤维跟踪,我们在20名健康志愿者中发现了一个连接左右额叶下区的胼胝体纤维系统,该系统参与了不同复杂性的语言处理。解剖学上,我们发现胼胝体和膝的半球间纤维高度排列并沿吻侧至尾侧梯度分布,连接同位额下区。根据数据聚合,考虑到之前基于dti的跟踪研究和临床病例研究,我们的研究结果表明,右侧额叶下皮层不仅处理语言的副语言方面(如情感韵律),正如规范模型所声称的那样,而且还支持人脑中不同复杂性的语言方面的计算。我们的模型可以解释右半球对中风恢复的贡献模式以及韵律处理障碍。除了语言相关的大脑功能外,我们还讨论了物种间半球连接和纤维密度的差异,包括我们在这里描述的系统,也可以解释不同哺乳动物物种间跨胼胝体信息传递和认知能力的差异。
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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