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The retrosplenial cortex: A memory gateway between the cortical default mode network and the medial temporal lobe

机译:Retrosplenial Cortex:皮质默认模式网络与内侧颞叶之间的存储器网关

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The default mode network (DMN) involves interacting cortical areas, including the posterior cingulate cortex (PCC) and the retrosplenial cortex (RSC), and subcortical areas, including the medial temporal lobe (MTL). The degree of functional connectivity (FC) within the DMN, particularly between MTL and medial-parietal subsystems, relates to episodic memory (EM) processes. However, past resting-state studies investigating the link between posterior DMN-MTL FC and EM performance yielded inconsistent results, possibly reflecting heterogeneity in the degree of connectivity between MTL and specific cortical DMN regions. Animal work suggests that RSC has structural connections to both cortical DMN regions and MTL, and may thus serve as an intermediate layer that facilitates information transfer between cortical and subcortical DMNs. We studied 180 healthy old adults (aged 64-68 years), who underwent comprehensive assessment of EM, along with resting-state fMRI. We found greater FC between MTL and RSC than between MTL and the other cortical DMN regions (e.g., PCC), with the only significant association with EM observed for MTL-RSC FC. Mediational analysis showed that MTL-cortical DMN connectivity increased with RSC as a mediator. Further analysis using a graph-theoretical approach on DMN nodes revealed the highest betweenness centrality for RSC, confirming that a high proportion of short paths among DMN regions pass through RSC. Importantly, the degree of RSC mediation was associated with EM performance, suggesting that individuals with greater mediation have an EM advantage. These findings suggest that RSC forms a critical gateway between MTL and cortical DMN to support EM in older adults.
机译:默认模式网络(DMN)涉及交互皮质区域,包括后刺型皮质(PCC)和逆向平面皮质(RSC),以及包括内侧颞叶(MTL)的retroplenial Cortex(RSC)。 DMN内的功能连接(FC),特别是MTL和内侧子系统之间的功能连接程度涉及扩展内存(EM)过程。然而,过去DMN-MTL FC和EM性能之间的链路的过去的休息状态研究产生了不一致的结果,可能反映了MTL和特定皮质DMN区域之间的连接程度的异质性。动物的工作表明RSC具有与皮质DMN区域和MTL的结构连接,因此可以用作促进皮质和皮质点DMN之间的信息传递的中间层。我们研究了180​​名健康的旧成人(年龄64-68岁),他们对EM进行了全面评估,以及休息状态FMRI。我们在MTL和RSC之间找到了比MTL和其他皮质DMN区(例如,PCC)之间的更大的FC,并且对于MTL-RSC FC观察到的唯一与EM相关联。介质分析表明,MTL-皮质DMN连接随着RSC增加而作为介体增加。在DMN节点上使用图的理论方法进一步分析显示RSC的最高中心性,确认DMN区域之间的高比例的短路通过RSC。重要的是,RSC调解程度与EM表现有关,表明具有更大调解的个体具有EM优势。这些发现表明RSC在MTL和皮质DMN之间形成关键网关,以在老年人中支持EM。

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