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自传体记忆检索过程中小脑活动的特征:激活可能性估计和功能连接性研究。

Characterizing cerebellar activity during autobiographical memory retrieval: ALE and functional connectivity investigations.

作者信息

Addis Donna Rose, Moloney Eleanor E J, Tippett Lynette J, P Roberts Reece, Hach Sylvia

机构信息

School of Psychology and Centre for Brain Research, The University of Auckland, New Zealand; Brain Research New Zealand, New Zealand.

School of Psychology and Centre for Brain Research, The University of Auckland, New Zealand.

出版信息

Neuropsychologia. 2016 Sep;90:80-93. doi: 10.1016/j.neuropsychologia.2016.05.025. Epub 2016 May 25.

Abstract

Previous neuroimaging research has shown that the cerebellum is often activated during autobiographical memory (AM) retrieval. However, the reliability of that activation, its localization within the cerebellum, and its relationship to other areas of the AM network remains unknown. The current study used Activation Likelihood Estimation meta-analysis (ALE) as well as resting-state and task-related functional connectivity analyses to better characterize cerebellar activation in relation to AM. The ALE meta-analysis was run on 32 neuroimaging studies of AM retrieval. The results revealed a cluster of reliable AM-related activity within the Crus I lobule of the right posterior cerebellum. Using the peak ALE coordinate within Crus I as a seed region, both task-related and resting state functional connectivity analyses were run on fMRI data from 38 healthy participants. To determine the specificity of connectivity patterns to Crus I, we also included a cerebellar seed region in right Lobule VI previously identified in an ALE meta-analysis as associated with working memory. Resting-state functional connectivity analyses indicated that Crus I was intrinsically connected with other areas of the AM network as well as surrounding and contralateral cerebellar regions. In contrast, the Lobule VI seed was functionally connected with cerebral and cerebellar regions typically associated with working memory. The task-related connectivity analyses revealed a similar pattern, where the Crus I seed exhibited significant connectivity with key nodes of the AM network while the Lobule IV seed did not. During a semantic control task, both Crus I and Lobule VI showed significant correlations with a network of regions that was largely distinct from the AM network. Together these results indicate that right Crus I lobule is reliably engaged during AM retrieval and is functionally connected to the AM network both during rest, and more importantly, during AM retrieval.

摘要

以往的神经影像学研究表明,在自传体记忆(AM)检索过程中小脑常常被激活。然而,这种激活的可靠性、其在小脑中的定位以及它与AM网络其他区域的关系仍不清楚。当前的研究使用激活可能性估计元分析(ALE)以及静息态和任务相关功能连接分析,以更好地描述与AM相关的小脑激活特征。对32项关于AM检索的神经影像学研究进行了ALE元分析。结果显示,在右后小脑的 Crus I小叶内有一组可靠的与AM相关的活动。以Crus I内的ALE峰值坐标作为种子区域,对38名健康参与者的功能磁共振成像(fMRI)数据进行了任务相关和静息态功能连接分析。为了确定与Crus I连接模式的特异性,我们还纳入了先前在一项ALE元分析中确定与工作记忆相关的右小叶VI中的一个小脑种子区域。静息态功能连接分析表明,Crus I与AM网络的其他区域以及周围和对侧小脑区域存在内在连接。相比之下,小叶VI种子与通常与工作记忆相关的大脑和小脑区域存在功能连接。任务相关连接分析显示了类似的模式,其中Crus I种子与AM网络的关键节点表现出显著连接,而小叶IV种子则没有。在语义控制任务期间,Crus I和小叶VI均与一个在很大程度上与AM网络不同的区域网络显示出显著相关性。这些结果共同表明,右Crus I小叶在AM检索过程中被可靠激活,并且在静息时,更重要的是在AM检索期间与AM网络存在功能连接。

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