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结构和功能磁共振成像证据表明,内侧颞叶和前额叶在上下文相关的关系记忆中具有不同的作用。

Structural and Functional MRI Evidence for Distinct Medial Temporal and Prefrontal Roles in Context-dependent Relational Memory.

机构信息

University of Illinois at Urbana-Champaign.

University of Delaware.

出版信息

J Cogn Neurosci. 2019 Dec;31(12):1857-1872. doi: 10.1162/jocn_a_01454. Epub 2019 Aug 8.

Abstract

Declarative memory is supported by distributed brain networks in which the medial-temporal lobes (MTLs) and pFC serve as important hubs. Identifying the unique and shared contributions of these regions to successful memory performance is an active area of research, and a growing literature suggests that these structures often work together to support declarative memory. Here, we present data from a context-dependent relational memory task in which participants learned that individuals belonged in a single room in each of two buildings. Room assignment was consistent with an underlying contextual rule structure in which male and female participants were assigned to opposite sides of a building and the side assignment switched between buildings. In two experiments, neural correlates of performance on this task were evaluated using multiple neuroimaging tools: diffusion tensor imaging (Experiment 1), magnetic resonance elastography (Experiment 1), and functional MRI (Experiment 2). Structural and functional data from each individual modality provided complementary and consistent evidence that the hippocampus and the adjacent white matter tract (i.e., fornix) supported relational memory, whereas the ventromedial pFC/OFC (vmPFC/OFC) and the white matter tract connecting vmPFC/OFC to MTL (i.e., uncinate fasciculus) supported memory-guided rule use. Together, these data suggest that MTL and pFC structures differentially contribute to and support contextually guided relational memory.

摘要

陈述性记忆由分布式脑网络支持,其中内侧颞叶(MTLs)和 pFC 作为重要枢纽。确定这些区域对成功记忆表现的独特和共同贡献是一个活跃的研究领域,越来越多的文献表明这些结构经常协同工作以支持陈述性记忆。在这里,我们展示了一项基于情境的关系记忆任务的数据,在该任务中,参与者学习到个体在两座建筑物中的每个房间中属于一个房间。房间分配与底层情境规则结构一致,其中男性和女性参与者被分配到建筑物的两侧,并且建筑物之间的分配方向切换。在两项实验中,使用多种神经影像学工具评估了该任务表现的神经相关物:扩散张量成像(实验 1)、磁共振弹性成像(实验 1)和功能磁共振成像(实验 2)。来自每个单独模态的结构和功能数据提供了互补且一致的证据,表明海马体及其相邻的白质束(即穹窿)支持关系记忆,而腹内侧 pFC/OFC(vmPFC/OFC)和将 vmPFC/OFC 连接到 MTL 的白质束(即钩束)支持记忆引导规则使用。这些数据共同表明,MTL 和 pFC 结构对情境引导的关系记忆有不同的贡献和支持。

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