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Structural Variation within the Amygdala and Ventromedial Prefrontal Cortex Predicts Memory for Impressions in Older Adults

机译:杏仁核和前内侧前额叶皮层内的结构变异预测记忆的老年人。

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Research has shown that lesions to regions involved in social and emotional cognition disrupt socioemotional processing and memory. We investigated how structural variation of regions involved in socioemotional memory [ventromedial prefrontal cortex (vmPFC), amygdala], as opposed to a region implicated in explicit memory (hippocampus), affected memory for impressions in young and older adults. Anatomical MRI scans for 15 young and 15 older adults were obtained and reconstructed to gather information about cortical thickness and subcortical volume. Young adults had greater amygdala and hippocampus volumes than old, and thicker left vmPFC than old, although right vmPFC thickness did not differ across the age groups. Participants formed behavior-based impressions and responded to interpersonally meaningful, social but interpersonally irrelevant, or non-social prompts, and completed a memory test. Results showed that greater left amygdala volume predicted enhanced overall memory for impressions in older but not younger adults. Increased right vmPFC thickness in older, but not younger, adults correlated with enhanced memory for impressions formed in the interpersonally meaningful context. Hippocampal volume was not predictive of social memory in young or older adults. These findings demonstrate the importance of structural variation in regions linked to socioemotional processing in the retention of impressions with age, and suggest that the amygdala and vmPFC play integral roles when encoding and retrieving social information.
机译:研究表明,涉及社交和情感认知的区域的病变破坏了社会情感的加工和记忆。我们调查了涉及社会情感记忆[前额叶前皮质(vmPFC),杏仁核]的区域的结构变化,而不是牵涉到显性记忆(海马)的区域,如何影响年轻人和老年人的印象印象。获得并重建了15名年轻人和15名老年人的解剖MRI扫描,以收集有关皮层厚度和皮层下体积的信息。年轻人的杏仁核和海马体体积大于老年人,左侧的vmPFC较老年人的粗壮,尽管各个年龄段的右侧vmPFC的厚度没有差异。参与者形成了基于行为的印象,并对人际上有意义的,社交的但人际上无关的或非社交的提示做出反应,并完成了一项记忆测试。结果显示,较大的左杏仁核体积可预测老年人的印象印象的整体记忆增强,而年轻人则不然。成年人(而不是年轻人)的右vmPFC厚度增加与在人际有意义的背景下形成的印象记忆增强有关。海马体积不能预测年轻人或老年人的社交记忆。这些发现表明,与社会情感处理有关的区域中的结构变异对于随着年龄的增长保留印象非常重要,并表明杏仁核和vmPFC在编码和检索社会信息时起着不可或缺的作用。

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