Left motor cortex contributes to auditory phonological discrimination.

IF 2.9 2区 医学 Q2 NEUROSCIENCES Cerebral cortex Pub Date : 2024-09-03 DOI:10.1093/cercor/bhae369
Maxime Perron, Bernhard Ross, Claude Alain
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Abstract

Evidence suggests that the articulatory motor system contributes to speech perception in a context-dependent manner. This study tested 2 hypotheses using magnetoencephalography: (i) the motor cortex is involved in phonological processing, and (ii) it aids in compensating for speech-in-noise challenges. A total of 32 young adults performed a phonological discrimination task under 3 noise conditions while their brain activity was recorded using magnetoencephalography. We observed simultaneous activation in the left ventral primary motor cortex and bilateral posterior-superior temporal gyrus when participants correctly identified pairs of syllables. This activation was significantly more pronounced for phonologically different than identical syllable pairs. Notably, phonological differences were resolved more quickly in the left ventral primary motor cortex than in the left posterior-superior temporal gyrus. Conversely, the noise level did not modulate the activity in frontal motor regions and the involvement of the left ventral primary motor cortex in phonological discrimination was comparable across all noise conditions. Our results show that the ventral primary motor cortex is crucial for phonological processing but not for compensation in challenging listening conditions. Simultaneous activation of left ventral primary motor cortex and bilateral posterior-superior temporal gyrus supports an interactive model of speech perception, where auditory and motor regions shape perception. The ventral primary motor cortex may be involved in a predictive coding mechanism that influences auditory-phonetic processing.

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左侧运动皮层有助于听觉语音辨别。
有证据表明,发音运动系统以依赖语境的方式促进语音感知。本研究利用脑磁图测试了两个假设:(i) 运动皮层参与语音处理;(ii) 运动皮层有助于补偿噪音中的语音挑战。共有 32 名年轻人在 3 种噪音条件下完成了语音辨别任务,同时使用脑磁图记录了他们的大脑活动。我们观察到,当参与者正确识别出成对的音节时,左侧腹侧初级运动皮层和双侧颞后上回同时激活。与相同的音节对相比,语音上不同的音节对的激活明显更明显。值得注意的是,与左侧颞后上回相比,左侧腹侧初级运动皮层能更快地消除语音差异。相反,噪音水平并不影响额叶运动区的活动,而且在所有噪音条件下,左腹侧初级运动皮层参与语音辨别的程度相当。我们的研究结果表明,腹侧初级运动皮层对语音处理至关重要,但在具有挑战性的听力条件下,它对补偿并不重要。左侧腹侧初级运动皮层和双侧颞后上回的同时激活支持语音感知的交互模型,在该模型中,听觉和运动区域形成了感知。腹侧初级运动皮层可能参与了影响听觉-发音处理的预测编码机制。
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来源期刊
Cerebral cortex
Cerebral cortex 医学-神经科学
CiteScore
6.30
自引率
8.10%
发文量
510
审稿时长
2 months
期刊介绍: Cerebral Cortex publishes papers on the development, organization, plasticity, and function of the cerebral cortex, including the hippocampus. Studies with clear relevance to the cerebral cortex, such as the thalamocortical relationship or cortico-subcortical interactions, are also included. The journal is multidisciplinary and covers the large variety of modern neurobiological and neuropsychological techniques, including anatomy, biochemistry, molecular neurobiology, electrophysiology, behavior, artificial intelligence, and theoretical modeling. In addition to research articles, special features such as brief reviews, book reviews, and commentaries are included.
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