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用于语音感知的听觉-喉部运动网络的多模态成像

Multi-modal imaging of the auditory-larynx motor network for voicing perception.

作者信息

Tamura Shunsuke, Hirose Nobuyuki, Mitsudo Takako, Hoaki Nobuhiko, Nakamura Itta, Onitsuka Toshiaki, Hirano Yoji

机构信息

Department of Neuropsychiatry, Graduate School of Medical Sciences, Kyushu University, 3-1-1 Maidashi, Higashiku, Fukuoka 812-8582, Japan.

Faculty of Information Science and Electrical Engineering, Kyushu University, Fukuoka, Japan.

出版信息

Neuroimage. 2022 May 1;251:118981. doi: 10.1016/j.neuroimage.2022.118981. Epub 2022 Feb 10.

Abstract

Voicing is one of the most important characteristics of phonetic speech sounds. Despite its importance, voicing perception mechanisms remain largely unknown. To explore auditory-motor networks associated with voicing perception, we firstly examined the brain regions that showed common activities for voicing production and perception using functional magnetic resonance imaging. Results indicated that the auditory and speech motor areas were activated with the operculum parietale 4 (OP4) during both voicing production and perception. Secondly, we used a magnetoencephalography and examined the dynamical functional connectivity of the auditory-motor networks during a perceptual categorization task of /da/-/ta/ continuum stimuli varying in voice onset time (VOT) from 0 to 40 ms in 10 ms steps. Significant functional connectivities from the auditory cortical regions to the larynx motor area via OP4 were observed only when perceiving the stimulus with VOT 30 ms. In addition, regional activity analysis showed that the neural representation of VOT in the auditory cortical regions was mostly correlated with categorical perception of voicing but did not reflect the perception of stimulus with VOT 30 ms. We suggest that the larynx motor area, which is considered to play a crucial role in voicing production, contributes to categorical perception of voicing by complementing the temporal processing in the auditory cortical regions.

摘要

发声是语音中最重要的特征之一。尽管其很重要,但发声感知机制在很大程度上仍然未知。为了探索与发声感知相关的听觉 - 运动网络,我们首先使用功能磁共振成像检查了在发声产生和感知过程中表现出共同活动的脑区。结果表明,在发声产生和感知过程中,听觉和言语运动区域与顶叶岛盖4区(OP4)一起被激活。其次,我们使用脑磁图,并在一个感知分类任务中检查了听觉 - 运动网络的动态功能连接,该任务使用了/da/-/ta/连续刺激,其语音起始时间(VOT)以10毫秒的步长从0变化到40毫秒。仅在感知VOT为30毫秒的刺激时,才观察到从听觉皮层区域通过OP4到喉运动区的显著功能连接。此外,区域活动分析表明,听觉皮层区域中VOT的神经表征大多与发声的分类感知相关,但并未反映对VOT为30毫秒的刺激的感知。我们认为,在发声产生中被认为起关键作用的喉运动区,通过补充听觉皮层区域的时间处理,有助于发声的分类感知。

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