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功能磁共振成像与工作记忆的关联:运动和位置信息的特定后部表示部位。

fMRI correlates of working memory: specific posterior representation sites for motion and position information.

机构信息

Brain and Cognition Unit, Department of Psychology, Saarland University, Saarbrücken, Germany.

出版信息

Brain Res. 2011 Mar 25;1382:206-18. doi: 10.1016/j.brainres.2011.01.052. Epub 2011 Jan 26.

DOI:10.1016/j.brainres.2011.01.052
PMID:21276432
Abstract

We assume that working memory is provided by a network comprising domain-general anterior and different domain-specific posterior brain areas depending on the type of stimulus and the task demands. Based on imaging studies from perception, we hypothesized that dynamic spatial (motion) and static spatial (position) information can be dissociated during retention in working memory. Participants were presented with a moving dot. About one second after stimulus presentation, a cue indicated whether its motion or end position should be held in memory. Six seconds later, a second stimulus was shown which was to be compared with the first one with respect to identity on the cued dimension. In the baseline condition, the cue indicated that no memory task would follow. We contrasted activity during maintenance of the different features. Differential activations in regions related to motion perception (area hMT/V5+, superior temporal sulcus) were observed in the motion working memory task. For position working memory, enhanced activations in a right brain region at the temporo-parieto-occipital junction emerged. The results are discussed with respect to domain-specific regions active in perception and how they can be also involved in short term retention for those very features. It is suggested that two types of spatial information categories can be dissociated: dynamic spatial (motion) and static spatial (position) information seem to be processed by different working memory structures.

摘要

我们假设工作记忆是由一个网络提供的,该网络由依赖于刺激类型和任务要求的一般领域的前脑区和不同的特定领域的后脑区组成。基于来自感知的成像研究,我们假设在工作记忆中保留期间,可以区分动态空间(运动)和静态空间(位置)信息。参与者被呈现一个移动的点。大约在刺激呈现一秒钟后,一个提示指示其运动或终点位置应该保存在记忆中。六秒钟后,显示第二个刺激,与第一个刺激在提示维度上的身份进行比较。在基线条件下,提示表示不会有后续的记忆任务。我们对比了不同特征保持期间的活动。在运动工作记忆任务中,观察到与运动感知相关的区域(hMT/V5+,颞上沟)的差异激活。对于位置工作记忆,在颞顶枕叶交界处的右侧大脑区域出现增强的激活。结果与感知中活跃的特定领域区域进行了讨论,以及它们如何也可以参与这些特征的短期保留。建议可以区分两种类型的空间信息类别:动态空间(运动)和静态空间(位置)信息似乎由不同的工作记忆结构处理。

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