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首页> 外文期刊>Journal of Cognitive Neuroscience >The Encoding/Retrieval Flip: Interactions between Memory Performance and Memory Stage and Relationship to Intrinsic Cortical Networks
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The Encoding/Retrieval Flip: Interactions between Memory Performance and Memory Stage and Relationship to Intrinsic Cortical Networks

机译:编码/检索翻转:内存性能和内存阶段之间的相互作用以及与固有皮质网络的关系

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摘要

fMRI studies have linked the posteromedial cortex to episodic learning (encoding) and remembering (retrieval) processes. The posteromedial cortex is considered part of the default network and tends to deactivate during encoding but activate during retrieval, a pattern known as the encoding/retrieval flip. Yet, the exact relationship between the neural correlates of memory performance (hit/miss) and memory stage (encoding/retrieval) and the extent of overlap with intrinsic cortical networks remains to be elucidated. Using task-based fMRI, we isolated the pattern of activity associated with memory performance, memory stage, and the interaction between both. Using resting-state fMRI, we identified which intrinsic large-scale functional networks overlapped with regions showing task-induced effects. Our results demonstrated an effect of successful memory performance in regions associated with the control network and an effect of unsuccessful memory performance in the ventral attention network. We found an effect of memory retrieval in brain regions that span the default and control networks. Finally, we found an interaction between memory performance and memory stage in brain regions associated with the default network, including the posteromedial cortex, posterior parietal cortex, and parahippocampal cortex. We discuss these findings in relation to the encoding/retrieval flip. In general, the findings demonstrate that task-induced effects cut across intrinsic cortical networks. Furthermore, regions within the default network display functional dissociations, and this may have implications for the neural underpinnings of age-related memory disorders.
机译:功能磁共振成像研究已将后内侧皮层与情节式学习(编码)和记忆(检索)过程联系在一起。后内侧皮层被认为是默认网络的一部分,在编码期间趋于失活,而在检索期间趋于失活,这种模式称为编码/取回翻转。然而,记忆性能(命中/缺失)和记忆阶段(编码/检索)的神经相关以及与固有皮层网络的重叠程度之间的确切关系仍有待阐明。使用基于任务的功能磁共振成像,我们隔离了与记忆性能,记忆阶段以及两者之间的相互作用相关的活动模式。使用静止状态功能磁共振成像,我们确定了哪些固有的大规模功能网络与显示任务诱导效应的区域重叠。我们的结果证明了在与控制网络相关的区域中成功的记忆表现的影响以及在腹侧注意网络中记忆表现不成功的影响。我们发现记忆检索在跨越默认和控制网络的大脑区域中发挥了作用。最后,我们发现与默认网络相关的大脑区域(包括后内侧皮质,顶叶后皮质和海马旁皮质)的记忆性能与记忆阶段之间存在相互作用。我们讨论与编码/检索翻转有关的这些发现。总的来说,研究结果表明,任务诱导的作用跨越了固有的皮质网络。此外,默认网络中的区域显示功能分离,这可能与年龄相关的记忆障碍的神经基础有关。

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