Ng H B Tommy, Kao K-L Cathy, Chan Y C, Chew Effie, Chuang K H, Chen S H Annabel
Division of Psychology, School of Humanities and Social Sciences, Nanyang Technological University, 637332, Singapore.
Division of Neurology, University Medicine Cluster, National University Health System, Singapore; Department of Medicine, Yong Loo Lin School of Medicine, National University of Singapore, Singapore.
Behav Brain Res. 2016 May 15;305:164-73. doi: 10.1016/j.bbr.2016.02.027. Epub 2016 Feb 27.
Previous studies have suggested cerebro-cerebellar circuitry in working memory. The present fMRI study aims to distinguish differential cerebro-cerebellar activation patterns in verbal and visual working memory, and employs a quantitative analysis to deterimine lateralization of the activation patterns observed. Consistent with Chen and Desmond (2005a,b) predictions, verbal working memory activated a cerebro-cerebellar circuitry that comprised left-lateralized language-related brain regions including the inferior frontal and posterior parietal areas, and subcortically, right-lateralized superior (lobule VI) and inferior cerebellar (lobule VIIIA/VIIB) areas. In contrast, a distributed network of bilateral inferior frontal and inferior temporal areas, and bilateral superior (lobule VI) and inferior (lobule VIIB) cerebellar areas, was recruited during visual working memory. Results of the study verified that a distinct cross cerebro-cerebellar circuitry underlies verbal working memory. However, a neural circuitry involving specialized brain areas in bilateral neocortical and bilateral cerebellar hemispheres subserving visual working memory is observed. Findings are discussed in the light of current models of working memory and data from related neuroimaging studies.
先前的研究表明工作记忆中存在脑-小脑神经回路。目前的功能磁共振成像(fMRI)研究旨在区分言语和视觉工作记忆中不同的脑-小脑激活模式,并采用定量分析来确定所观察到的激活模式的偏侧化情况。与Chen和Desmond(2005a,b)的预测一致,言语工作记忆激活了一个脑-小脑神经回路,该回路包括左侧与语言相关的脑区,如额下回和顶叶后部区域,以及皮层下右侧的小脑上叶(小叶VI)和下叶(小叶VIIIA/VIIB)区域。相比之下,在视觉工作记忆过程中,双侧额下回和颞下回区域以及双侧小脑上叶(小叶VI)和下叶(小叶VIIB)区域组成的分布式网络被激活。该研究结果证实了一个独特的跨脑-小脑神经回路是言语工作记忆的基础。然而,观察到一个涉及双侧新皮层和双侧小脑半球中专门脑区的神经回路参与视觉工作记忆。研究结果将根据当前的工作记忆模型以及相关神经影像学研究的数据进行讨论。