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空间记忆时与前后海马体的功能连接。

Functional connectivity with the anterior and posterior hippocampus during spatial memory.

机构信息

Department of Psychology and Neuroscience, Boston College, Chestnut Hill, Massachusetts, USA.

出版信息

Hippocampus. 2021 Jul;31(7):658-668. doi: 10.1002/hipo.23283. Epub 2020 Nov 18.

Abstract

Evidence of differential connectivity and activity patterns across the long-axis of the hippocampus has led to many hypotheses about functional specialization of the anterior and posterior hippocampus, including a hypothesis linking the anterior hippocampus to memory encoding and the posterior hippocampus to memory retrieval. The hippocampal encoding/retrieval and network (HERNET) model of memory predicts that encoding should engage the anterior hippocampus and the attention network, whereas retrieval should engage the posterior hippocampus and the default network. In a previous fMRI study that employed multivoxel pattern analysis, we found that the patterns of activity in the anterior hippocampus predicted the quadrant of spatial memory encoding. In the current fMRI study, we investigated whether the spatial memory encoding activity in the anterior hippocampus and retrieval activity in the posterior hippocampus had a higher degree of connectivity to the attention network or the default network. During the study phase, abstract shapes were presented in each quadrant of the visual field and participants were instructed to remember each shape's location while maintaining central fixation. During the test phase, the same shapes were presented in the center of the screen and participants identified the previous location of each shape. Generalized psychophysiological interaction analyses were conducted between the anatomically defined anterior and posterior hippocampus and the rest of the brain. This revealed preferential connectivity between the anterior hippocampus and regions of the attention network during encoding and between the posterior hippocampus and regions of the default network during retrieval. In addition, there were location-specific patterns of connectivity with the anterior hippocampus and posterior hippocampus during encoding and retrieval of right visual field items. These results suggest that the anterior and posterior hippocampus interact with regions of the attention network and default network during spatial memory encoding and retrieval, respectively, and support the HERNET model of memory.

摘要

海马体长轴上的连接和活动模式的证据导致了许多关于前海马体和后海马体功能专业化的假设,包括一个将前海马体与记忆编码联系起来,将后海马体与记忆检索联系起来的假设。记忆的海马体编码/检索和网络(HERNET)模型预测,编码应该涉及前海马体和注意网络,而检索应该涉及后海马体和默认网络。在之前的一项使用多体素模式分析的 fMRI 研究中,我们发现前海马体的活动模式可以预测空间记忆编码的象限。在当前的 fMRI 研究中,我们研究了前海马体的空间记忆编码活动和后海马体的检索活动是否与注意网络或默认网络具有更高的连接度。在研究阶段,抽象形状在视野的每个象限中呈现,参与者被指示在保持中心注视的同时记住每个形状的位置。在测试阶段,相同的形状在屏幕中心呈现,参与者识别每个形状的先前位置。对解剖定义的前海马体和后海马体与大脑其他区域之间进行了广义心理生理交互分析。这表明在编码过程中,前海马体与注意网络的区域之间存在优先连接,而在后海马体与默认网络的区域之间存在优先连接。此外,在右视野项目的编码和检索过程中,前海马体和后海马体与特定位置存在连接模式。这些结果表明,前海马体和后海马体在空间记忆编码和检索过程中分别与注意网络和默认网络区域相互作用,并支持记忆的 HERNET 模型。

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