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穹窿和下纵束对情景和语义自传体记忆的独特贡献。

Distinct contributions of the fornix and inferior longitudinal fasciculus to episodic and semantic autobiographical memory.

机构信息

Cardiff University Brain Research Imaging Centre, School of Psychology, Cardiff University, Cardiff, Wales, UK.

Cardiff University Brain Research Imaging Centre, School of Psychology, Cardiff University, Cardiff, Wales, UK; BRAIN Unit, Cardiff University, Cardiff, Wales, UK.

出版信息

Cortex. 2017 Sep;94:1-14. doi: 10.1016/j.cortex.2017.05.010. Epub 2017 Jun 20.

Abstract

Autobiographical memory (AM) is multifaceted, incorporating the vivid retrieval of contextual detail (episodic AM), together with semantic knowledge that infuses meaning and coherence into past events (semantic AM). While neuropsychological evidence highlights a role for the hippocampus and anterior temporal lobe (ATL) in episodic and semantic AM, respectively, it is unclear whether these constitute dissociable large-scale AM networks. We used high angular resolution diffusion-weighted imaging and constrained spherical deconvolution-based tractography to assess white matter microstructure in 27 healthy young adult participants who were asked to recall past experiences using word cues. Inter-individual variation in the microstructure of the fornix (the main hippocampal input/output pathway) related to the amount of episodic, but not semantic, detail in AMs - independent of memory age. Conversely, microstructure of the inferior longitudinal fasciculus, linking occipitotemporal regions with ATL, correlated with semantic, but not episodic, AMs. Further, these significant correlations remained when controlling for hippocampal and ATL grey matter volume, respectively. This striking correlational double dissociation supports the view that distinct, large-scale distributed brain circuits underpin context and concepts in AM.

摘要

自传体记忆(AM)是多方面的,包括对上下文细节的生动检索(情节 AM),以及为过去事件注入意义和连贯性的语义知识(语义 AM)。虽然神经心理学证据强调了海马体和前颞叶(ATL)分别在情节和语义 AM 中的作用,但尚不清楚这些是否构成可分离的大规模 AM 网络。我们使用高角度分辨率扩散加权成像和基于约束球分解的轨迹追踪技术,评估了 27 名健康年轻成年参与者的白质微观结构,这些参与者被要求使用单词提示回忆过去的经历。在 AM 中,穹窿(海马体的主要输入/输出途径)的微观结构的个体间变异性与情节性但不是语义性的细节数量有关——与记忆年龄无关。相反,连接枕颞区域与 ATL 的下纵束的微观结构与语义 AM 相关,而与情节 AM 无关。此外,当分别控制海马体和 ATL 灰质体积时,这些显著的相关性仍然存在。这种引人注目的相关双重分离支持了这样一种观点,即不同的、大规模的分布式大脑回路是 AM 中上下文和概念的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32f6/5576916/0e9571d1046c/gr1.jpg

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