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在假词重复过程中,来自 SMA 前区到左侧背侧运动前皮质的易化连通性增加。

Increased facilitatory connectivity from the pre-SMA to the left dorsal premotor cortex during pseudoword repetition.

机构信息

Christian-Albrechts-University, Kiel, Germany.

出版信息

J Cogn Neurosci. 2013 Apr;25(4):580-94. doi: 10.1162/jocn_a_00342. Epub 2012 Dec 18.

Abstract

Previous studies have demonstrated that the repetition of pseudowords engages a network of premotor areas for articulatory planning and articulation. However, it remains unclear how these premotor areas interact and drive one another during speech production. We used fMRI with dynamic causal modeling to investigate effective connectivity between premotor areas during overt repetition of words and pseudowords presented in both the auditory and visual modalities. Regions involved in phonological aspects of language production were identified as those where regional increases in the BOLD signal were common to repetition in both modalities. We thus obtained three seed regions: the bilateral pre-SMA, left dorsal premotor cortex (PMd), and left ventral premotor cortex that were used to test 63 different models of effective connectivity in the premotor network for pseudoword relative to word repetition. The optimal model was identified with Bayesian model selection and reflected a network with driving input to pre-SMA and an increase in facilitatory drive from pre-SMA to PMd during repetition of pseudowords. The task-specific increase in effective connectivity from pre-SMA to left PMd suggests that the pre-SMA plays a supervisory role in the generation and subsequent sequencing of motor plans. Diffusion tensor imaging-based fiber tracking in another group of healthy volunteers showed that the functional connection between both regions is underpinned by a direct cortico-cortical anatomical connection.

摘要

先前的研究表明,重复伪词会激活用于发音规划和发音的运动前区域网络。然而,在言语产生过程中,这些运动前区域如何相互作用和相互驱动仍不清楚。我们使用功能磁共振成像和动态因果建模来研究在听觉和视觉模态下显性重复单词和伪词时运动前区域之间的有效连接。与两种模态重复都具有共同的局部大脑活动增加的区域被确定为与语言产生的语音方面有关的区域。因此,我们获得了三个种子区域:双侧前 SMA、左背侧运动前皮质 (PMd) 和左腹侧运动前皮质,用于测试伪词相对于单词重复时运动前网络中 63 种不同的有效连接模型。最优模型是通过贝叶斯模型选择确定的,反映了一个网络,在重复伪词时,预 SMA 有驱动输入,预 SMA 到 PMd 的促进驱动增加。来自预 SMA 到左 PMd 的任务特异性有效连接增加表明,预 SMA 在运动计划的生成和随后的排序中起着监督作用。另一组健康志愿者的弥散张量成像纤维追踪显示,两个区域之间的功能连接是由直接的皮质-皮质解剖连接支撑的。

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