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言语序列产生的皮质-小脑监测

Cortico-Cerebellar Monitoring of Speech Sequence Production.

作者信息

Todorović Snežana, Anton Jean-Luc, Sein Julien, Nazarian Bruno, Chanoine Valérie, Rauchbauer Birgit, Kotz Sonja A, Runnqvist Elin

机构信息

Laboratoire Parole et Langage, CNRS-Aix-Marseille Université, Aix-en-Provence, France.

Institute of Language, Communication and the Brain, Aix-en-Provence, France.

出版信息

Neurobiol Lang (Camb). 2024 Aug 15;5(3):701-721. doi: 10.1162/nol_a_00113. eCollection 2024.

Abstract

In a functional magnetic resonance imaging study, we examined speech error monitoring in a cortico-cerebellar network for two contrasts: (a) correct trials with high versus low articulatory error probability and (b) overtly committed errors versus correct trials. Engagement of the cognitive cerebellar region Crus I in both contrasts suggests that this region is involved in overarching performance monitoring. The activation of cerebellar motor regions (superior medial cerebellum, lobules VI and VIII) indicates the additional presence of a sensorimotor driven implementation of control. The combined pattern of pre-supplementary motor area (active across contrasts) and anterior cingulate cortex (only active in the contrast involving overt errors) activations suggests sensorimotor driven feedback monitoring in the medial frontal cortex, making use of proprioception and auditory feedback through overt errors. Differential temporal and parietal cortex activation across contrasts indicates involvement beyond sensorimotor driven feedback in line with speech production models that link these regions to auditory target processing and internal modeling-like mechanisms. These results highlight the presence of multiple, possibly hierarchically interdependent, mechanisms that support the optimizing of speech production.

摘要

在一项功能磁共振成像研究中,我们针对两种对比情况,在一个皮质-小脑网络中检查了言语错误监测:(a)发音错误概率高与低的正确试验,以及(b)明显出现的错误与正确试验。在这两种对比中,认知小脑区域 Crus I 的参与表明该区域参与了总体表现监测。小脑运动区域(小脑上内侧、小叶 VI 和 VIII)的激活表明还存在感觉运动驱动的控制实施。补充运动前区(在各种对比中均活跃)和前扣带回皮质(仅在涉及明显错误的对比中活跃)激活的联合模式表明,内侧额叶皮质存在感觉运动驱动的反馈监测,通过明显错误利用本体感觉和听觉反馈。不同对比中颞叶和顶叶皮质的差异激活表明,除了感觉运动驱动的反馈之外,还涉及与言语产生模型一致的其他机制,这些模型将这些区域与听觉目标处理和类似内部建模的机制联系起来。这些结果突出了存在多种可能层次相互依存的机制,这些机制支持言语产生的优化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cb9/11338302/5b366528bc8a/nol-5-3-701-g001.jpg

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