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功能磁共振成像揭示的视觉空间n-back任务期间皮质激活的分布。

Distribution of cortical activation during visuospatial n-back tasks as revealed by functional magnetic resonance imaging.

作者信息

Carlson S, Martinkauppi S, Rämä P, Salli E, Korvenoja A, Aronen H J

机构信息

Institute of Biomedicine, Department of Physiology, University of Helsinki, Finland.

出版信息

Cereb Cortex. 1998 Dec;8(8):743-52. doi: 10.1093/cercor/8.8.743.

Abstract

Human neuroimaging studies conducted during visuospatial working memory tasks have inconsistently detected activation in the prefrontal cortical areas depending presumably on the type of memory and control tasks employed. We used functional magnetic resonance imaging to study brain activation related to the performance of a visuospatial n-back task with different memory loads (0-back, 1-back and 2-back tasks). Comparison of the 2-back versus 0-back tasks revealed consistent, bilateral activation in the medial frontal gyrus (MFG), superior frontal sulcus and adjacent cortical tissue (SFS/SFG) in all subjects and in six out of seven subjects in the intraparietal sulcus (IPS). Activation was also detected in the inferior frontal gyrus, medially in the superior frontal gyrus, precentral gyrus, superior and inferior parietal lobuli, occipital visual association areas, anterior and posterior cingulate areas and in the insula. Comparison between the 1-back versus 0-back tasks revealed activation only in a few brain areas. Activation in the MFG, SFS/SFG and IPS appeared dependent on memory load. The results suggest that the performance of a visuospatial working memory task engages a network of distributed brain areas and that areas in the dorsal visual pathway are engaged in mnemonic processing of visuospatial information.

摘要

在视觉空间工作记忆任务期间进行的人类神经影像学研究,根据所采用的记忆和控制任务类型,在前额叶皮质区域检测到的激活情况并不一致。我们使用功能磁共振成像来研究与具有不同记忆负荷(0-back、1-back和2-back任务)的视觉空间n-back任务表现相关的大脑激活情况。2-back任务与0-back任务的比较显示,所有受试者的内侧额回(MFG)、额上沟及相邻皮质组织(SFS/SFG)以及七名受试者中的六名在顶内沟(IPS)出现了一致的双侧激活。在额下回、额上回内侧、中央前回、顶叶上下小叶、枕叶视觉联合区、前扣带回和后扣带回以及脑岛也检测到了激活。1-back任务与0-back任务的比较仅在少数脑区发现了激活。MFG、SFS/SFG和IPS中的激活似乎取决于记忆负荷。结果表明,视觉空间工作记忆任务的执行涉及一个分布式脑区网络,并且背侧视觉通路中的区域参与了视觉空间信息的记忆处理。

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