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一项关于运动前区侧化和小脑在音素和音节产生过程中参与情况的神经影像学研究。

A neuroimaging study of premotor lateralization and cerebellar involvement in the production of phonemes and syllables.

作者信息

Ghosh Satrajit S, Tourville Jason A, Guenther Frank H

机构信息

Speech Communication Group, Research Laboratory of Electronics, Room 36-547, Massachusetts Institute of Technology, 50 Vassar Street, Cambridge, MA 02139, USA.

出版信息

J Speech Lang Hear Res. 2008 Oct;51(5):1183-202. doi: 10.1044/1092-4388(2008/07-0119). Epub 2008 Jul 29.

Abstract

PURPOSE

This study investigated the network of brain regions involved in overt production of vowels, monosyllables, and bisyllables to test hypotheses derived from the Directions Into Velocities of Articulators (DIVA) model of speech production (Guenther, Ghosh, & Tourville, 2006). The DIVA model predicts left lateralized activity in inferior frontal cortex when producing a single syllable or phoneme and increased cerebellar activity for consonant-vowel syllables compared with steady-state vowels.

METHOD

Sparse sampling functional magnetic resonance imaging (fMRI) was used to collect data from 10 right-handed speakers of American English while producing isolated monosyllables (e.g., "ba," "oo"). Data were analyzed using both voxel-based and participant-specific anatomical region-of-interest-based techniques.

RESULTS

Overt production of single monosyllables activated a network of brain regions, including left ventral premotor cortex, left posterior inferior frontal gyrus, bilateral supplementary motor area, sensorimotor cortex, auditory cortex, thalamus, and cerebellum. Paravermal cerebellum showed greater activity for consonant-vowel syllables compared to vowels.

CONCLUSIONS

The finding of left-lateralized premotor cortex activity supports the DIVA model prediction that this area contains cell populations representing syllable motor programs without regard for semantic content. Furthermore, the superior paravermal cerebellum is more active for consonant-vowel syllables compared with vowels, perhaps due to increased timing constraints for consonant production.

摘要

目的

本研究调查了参与元音、单音节和双音节明显发声的脑区网络,以检验从言语产生的发音器速度方向(DIVA)模型得出的假设(Guenther、Ghosh和Tourville,2006年)。DIVA模型预测,在发出单个音节或音素时,额下回会出现左侧化活动,与稳态元音相比,辅音 - 元音音节的小脑活动会增加。

方法

使用稀疏采样功能磁共振成像(fMRI)从10名以英语为母语的右利手说话者在发出孤立的单音节(如“ba”、“oo”)时收集数据。使用基于体素和基于参与者特定解剖感兴趣区域的技术对数据进行分析。

结果

明显发出单个单音节激活了一个脑区网络,包括左腹侧运动前皮层、左后下额回、双侧辅助运动区、感觉运动皮层、听觉皮层、丘脑和小脑。与元音相比,旁中央小叶对辅音 - 元音音节表现出更大的活动。

结论

左外侧化运动前皮层活动的发现支持了DIVA模型的预测,即该区域包含代表音节运动程序的细胞群,而不考虑语义内容。此外,与元音相比,上旁中央小叶对辅音 - 元音音节更活跃,这可能是由于辅音产生时时间限制增加所致。

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