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分离网络涉及空间和时间顺序的来源检索。

Dissociable networks involved in spatial and temporal order source retrieval.

机构信息

Center for Neuroscience, University of California, Davis, Davis, CA 95616, USA.

出版信息

Neuroimage. 2011 Jun 1;56(3):1803-13. doi: 10.1016/j.neuroimage.2011.02.033. Epub 2011 Feb 18.

Abstract

Space and time are important components of our episodic memories. Without this information, we cannot determine the "where and when" of our recent memories, rendering it difficult to disambiguate individual episodes from each other. The neural underpinnings of spatial and temporal order memory in humans remain unclear, in part because of difficulties in disentangling the contributions of these two types of source information. To address this issue, we conducted an experiment in which participants first navigated a virtual city, experiencing unique routes in a specific temporal order and learning about the spatial layout of the city. Spatial and temporal order information were dissociated in our task such that learning one type of information did not facilitate the other behaviorally. This allowed us to then address the extent to which the two types of information involved functionally distinct or overlapping brain areas. During functional magnetic resonance imaging (fMRI), participants retrieved information about the relative distance of stores within the city (spatial task) and the temporal order of stores from each other (temporal task). Comparable hippocampal activity was observed during these two tasks, but greater prefrontal activity was seen during temporal order retrieval whereas greater parahippocampal activity was seen during spatial retrieval. We suggest that while the brain possesses dissociable networks for maintaining and representing spatial layout and temporal order components of episodic memory, this information may converge into a common representation for source memory in areas such as the hippocampus.

摘要

空间和时间是我们情景记忆的重要组成部分。没有这些信息,我们就无法确定我们最近记忆的“何时何地”,这使得我们难以将各个事件区分开来。人类的空间和时间顺序记忆的神经基础仍不清楚,部分原因是难以区分这两种类型的源信息的贡献。为了解决这个问题,我们进行了一项实验,参与者首先在虚拟城市中导航,以特定的时间顺序体验独特的路线,并了解城市的空间布局。在我们的任务中,空间和时间顺序信息是分离的,因此学习一种类型的信息不会在行为上促进另一种信息。这使我们能够进一步探讨这两种信息涉及功能上不同还是重叠的大脑区域的程度。在功能磁共振成像(fMRI)期间,参与者检索有关城市内商店相对距离的信息(空间任务)和商店之间的时间顺序(时间任务)。在这两个任务中观察到类似的海马体活动,但在时间顺序检索期间观察到更多的前额叶活动,而在空间检索期间观察到更多的旁海马体活动。我们认为,虽然大脑拥有分离的网络来维持和表示情景记忆的空间布局和时间顺序成分,但这些信息可能会在海马体等区域汇聚到一个共同的源记忆表示中。

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