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连贯自发活动识别出海马体-顶叶记忆网络。

Coherent spontaneous activity identifies a hippocampal-parietal memory network.

作者信息

Vincent Justin L, Snyder Abraham Z, Fox Michael D, Shannon Benjamin J, Andrews Jessica R, Raichle Marcus E, Buckner Randy L

机构信息

Mallinckrodt Institute of Radiology, and Department of Neurology, Washington University School of Medicine, 4525 Scott Avenue, St. Louis, MO 63110, USA.

出版信息

J Neurophysiol. 2006 Dec;96(6):3517-31. doi: 10.1152/jn.00048.2006. Epub 2006 Aug 9.

Abstract

Despite traditional theories emphasizing parietal contributions to spatial attention and sensory-motor integration, functional MRI (fMRI) experiments in normal subjects suggest that specific regions within parietal cortex may also participate in episodic memory. Here we examined correlations in spontaneous blood-oxygenation-level-dependent (BOLD) signal fluctuations in a resting state to identify the network associated with the hippocampal formation (HF) and determine whether parietal regions were elements of that network. In the absence of task, stimuli, or explicit mnemonic demands, robust correlations were observed between activity in the HF and several parietal regions (including precuneus, posterior cingulate, retrosplenial cortex, and bilateral inferior parietal lobule). These HF-correlated regions in parietal cortex were spatially distinct from those correlated with the motion-sensitive MT+ complex. Reanalysis of event-related fMRI studies of recognition memory showed that the regions spontaneously correlated with the HF (but not MT+) were also modulated during directed recollection. These regions showed greater activity to successfully recollected items as compared with other trial types. Together, these results associate specific regions of parietal cortex that are sensitive to successful recollection with the HF.

摘要

尽管传统理论强调顶叶对空间注意力和感觉运动整合的贡献,但对正常受试者进行的功能磁共振成像(fMRI)实验表明,顶叶皮质内的特定区域也可能参与情景记忆。在此,我们研究了静息状态下自发的血氧水平依赖(BOLD)信号波动的相关性,以识别与海马结构(HF)相关的网络,并确定顶叶区域是否为该网络的组成部分。在没有任务、刺激或明确记忆要求的情况下,观察到HF活动与几个顶叶区域(包括楔前叶、后扣带回、压后皮质和双侧下顶叶小叶)之间存在强烈的相关性。顶叶皮质中这些与HF相关的区域在空间上与那些与运动敏感的MT+复合体相关的区域不同。对识别记忆的事件相关fMRI研究的重新分析表明,在定向回忆过程中,与HF自发相关(而非与MT+相关)的区域也受到了调节。与其他试验类型相比,这些区域对成功回忆的项目表现出更强的活动。总之,这些结果将顶叶皮质中对成功回忆敏感的特定区域与HF联系起来。

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