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额叶眼区(FEFs)和顶内沟(IPS)在视觉工作记忆和视觉注意中的不同作用。

Differential roles for frontal eye fields (FEFs) and intraparietal sulcus (IPS) in visual working memory and visual attention.

作者信息

Offen Shani, Gardner Justin L, Schluppeck Denis, Heeger David J

机构信息

Center for Neural Science, NYU, New York, NY 10003, USA.

出版信息

J Vis. 2010 Sep 29;10(11):28. doi: 10.1167/10.11.28.

Abstract

Cortical activity was measured with functional magnetic resonance imaging to probe the involvement of the superior precentral sulcus (including putative human frontal eye fields, FEFs) and the intraparietal sulcus (IPS) in visual short-term memory and visual attention. In two experimental tasks, human subjects viewed two visual stimuli separated by a variable delay period. The tasks placed differential demands on short-term memory and attention, but the stimuli were visually identical until after the delay period. An earlier study (S. Offen, D. Schluppeck, & D. J. Heeger, 2009) had found a dissociation in early visual cortex that suggested different computational mechanisms underlying the two processes. In contrast, the results reported here show that the patterns of activation in prefrontal and parietal cortex were different from one another but were similar for the two tasks. In particular, the FEF showed evidence for sustained delay period activity for both the working memory and the attention task, while the IPS did not show evidence for sustained delay period activity for either task. The results imply differential roles for the FEF and IPS in these tasks; the results also suggest that feedback of sustained activity from frontal cortex to visual cortex might be gated by task demands.

摘要

通过功能磁共振成像测量皮层活动,以探究中央前沟上部(包括假定的人类额叶眼区,FEFs)和顶内沟(IPS)在视觉短期记忆和视觉注意力中的作用。在两项实验任务中,人类受试者观看两个被可变延迟期隔开的视觉刺激。这些任务对短期记忆和注意力提出了不同的要求,但刺激在延迟期结束前在视觉上是相同的。一项早期研究(S. 奥芬、D. 施卢佩克和D. J. 黑格,2009年)发现早期视觉皮层存在分离现象,这表明这两个过程背后存在不同的计算机制。相比之下,此处报告的结果表明,前额叶和顶叶皮层的激活模式彼此不同,但在两项任务中相似。特别是,FEF显示出工作记忆和注意力任务在延迟期均有持续活动的证据,而IPS在两项任务中均未显示出延迟期持续活动的证据。结果暗示了FEF和IPS在这些任务中的不同作用;结果还表明,额叶皮层向视觉皮层的持续活动反馈可能受任务需求的控制。

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