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基底神经节在记忆引导的运动序列中的作用。

Basal ganglia involvement in memory-guided movement sequencing.

作者信息

Menon V, Anagnoson R T, Glover G H, Pfefferbaum A

机构信息

Department of Psychiatry and Behavioral Sciences, Stanford University School of Medicine, CA 94305-5719, USA.

出版信息

Neuroreport. 2000 Nov 9;11(16):3641-5. doi: 10.1097/00001756-200011090-00048.

Abstract

The basal ganglia (BG) are thought to play a critical role in motor planning and movement sequencing. While electrophysiological and imaging studies have shown that the dorso-lateral prefrontal cortex (DLPFC) is involved in working memory (WM), the involvement of the BG in this process is not well understood. We used a motor sequencing task to investigate the differential role of BG nuclei in memory-guided movement. Significant activation was observed in the DLPFC and posterior putamen and globus pallidus (GP), with a trend in the caudate and no differences in the anterior putamen. We then investigated the effect of BG outflow on thalamic activation using functional connectivity analysis. Activation in the posterior putamen + GP was found to be correlated with thalamic activation only in the hemisphere contralateral to movement. These results provide the first fMRI evidence that the BG may modulate activity in the thalamus during working memory-guided movement sequencing. Our findings suggest that the BG activation may reflect increased motor sequencing demands during the memory-guided movement condition and, specifically, that the posterior putamen and GP may play a role in maintenance of representations in WM in a manner that contributes to planning and temporal organization of motor sequencing.

摘要

基底神经节(BG)被认为在运动规划和动作序列中起关键作用。虽然电生理和影像学研究表明背外侧前额叶皮层(DLPFC)参与工作记忆(WM),但BG在此过程中的作用尚不清楚。我们使用一项运动序列任务来研究BG核团在记忆引导运动中的不同作用。在DLPFC以及后壳核和苍白球(GP)中观察到显著激活,尾状核有激活趋势,而前壳核无差异。然后,我们使用功能连接分析研究BG输出对丘脑激活的影响。发现后壳核+GP中的激活仅在与运动对侧的半球中与丘脑激活相关。这些结果提供了首个功能磁共振成像证据,表明BG可能在工作记忆引导的运动序列过程中调节丘脑的活动。我们的研究结果表明,BG激活可能反映了记忆引导运动条件下运动序列需求的增加,具体而言,后壳核和GP可能以有助于运动序列的规划和时间组织的方式在WM表征的维持中发挥作用。

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