Cerebellar and Cortical Correlates of Internal and External Speech Error Monitoring.

Cerebral cortex communications Pub Date : 2021-05-31 eCollection Date: 2021-01-01 DOI:10.1093/texcom/tgab038
Elin Runnqvist, Valérie Chanoine, Kristof Strijkers, Chotiga Pattamadilok, Mireille Bonnard, Bruno Nazarian, Julien Sein, Jean-Luc Anton, Lydia Dorokhova, Pascal Belin, F-Xavier Alario
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Abstract

An event-related functional magnetic resonance imaging study examined how speakers inspect their own speech for errors. Concretely, we sought to assess 1) the role of the temporal cortex in monitoring speech errors, linked with comprehension-based monitoring; 2) the involvement of the cerebellum in internal and external monitoring, linked with forward modeling; and 3) the role of the medial frontal cortex for internal monitoring, linked with conflict-based monitoring. In a word production task priming speech errors, we observed enhanced involvement of the right posterior cerebellum for trials that were correct, but on which participants were more likely to make a word as compared with a nonword error (contrast of internal monitoring). Furthermore, comparing errors to correct utterances (contrast of external monitoring), we observed increased activation of the same cerebellar region, of the superior medial cerebellum, and of regions in temporal and medial frontal cortex. The presence of the cerebellum for both internal and external monitoring indicates the use of forward modeling across the planning and articulation of speech. Dissociations across internal and external monitoring in temporal and medial frontal cortex indicate that monitoring of overt errors is more reliant on vocal feedback control.

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内部和外部语音错误监测的小脑和皮层相关性
一项事件相关功能磁共振成像研究考察了说话者如何检查自己的语音是否有误。具体来说,我们试图评估:1)颞叶皮层在监测语音错误中的作用,这与基于理解的监测有关;2)小脑在内部和外部监测中的参与,这与前向建模有关;3)内侧额叶皮层在内部监测中的作用,这与基于冲突的监测有关。在一项以言语错误为引子的单词生成任务中,我们观察到右侧小脑后部参与了正确的试验,但与非单词错误相比,参与者更有可能在这些试验中出现单词错误(内部监控对比)。此外,在将错误与正确的语句进行比较时(外部监控对比),我们观察到同一小脑区域、内侧小脑上部以及颞叶和内侧额叶皮层区域的激活增加。小脑在内部和外部监控中的存在表明,在语音的规划和发音过程中使用了前向建模。颞叶和额叶内侧皮层内部和外部监控的分离表明,对明显错误的监控更依赖于发声反馈控制。
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