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前扣带皮层和顶内沟在视觉工作记忆中的功能分离。

Functional dissociation of anterior cingulate cortex and intraparietal sulcus in visual working memory.

机构信息

Department of Developmental Psychology, University of Padova, Padova, Italy.

Department of General Psychology, University of Padova, Padova, Italy.

出版信息

Cortex. 2019 Dec;121:277-291. doi: 10.1016/j.cortex.2019.09.009. Epub 2019 Oct 4.

Abstract

Previous electrophysiological studies of lateralized visual working memory (VWM) identified an ERP component, defined as contralateral delay activity (CDA), directly modulated by the number of items held in memory. One of the main candidate as the cortical source of this ERP component is the inferior intraparietal sulcus (IPS). Moreover, previous neuroimaging studies put forth evidence for the presence of a distributed VWM network involving also prefrontal areas and in particular the anterior cingulate cortex (ACC). Nonetheless, the understanding of the functional role of ACC is still debated. We recorded the high-density EEG in 20 healthy participants undergoing a VWM and a control task. Explorative cluster-based permutation statistics confirmed the posterior memory load dependent CDA modulation, but also identified an additional anterior cluster of electrodes whose amplitude was modulated by memory load. The source reconstruction revealed a memory load dependent activation in the IPS but also in the ACC, suggesting that these two areas might be nodes of a fronto-parietal circuit underlying VWM maintenance. Crucially, parietal and prefrontal areas showed a temporal dissociation, since IPS was more engaged in the early phase of visual information storage while the ACC was more active during the late phase. This pattern suggests a functional dissociation between the parietal cortex, which is involved in encoding and storage of information, and prefrontal areas, subserving cognitive control processes, including the boosting and protection of information from decay. Remarkably, the connection strength between IPS and ACC predicted the individual number of items held in memory. These findings are discussed within the theoretical account of a neural distributed model of VWM.

摘要

先前关于偏侧视觉工作记忆(VWM)的电生理研究确定了一个 ERP 成分,称为对侧延迟活动(CDA),其直接受记忆中存储项目数量的调制。作为该 ERP 成分的皮质源的主要候选之一是下顶内沟(IPS)。此外,先前的神经影像学研究提出了存在涉及额前区域尤其是前扣带皮层(ACC)的分布式 VWM 网络的证据。尽管如此,对于 ACC 的功能作用的理解仍存在争议。我们在 20 名健康参与者中记录了高分辨率 EEG,他们进行了 VWM 和对照任务。探索性基于聚类的置换统计确认了后部记忆负载相关的 CDA 调制,但也确定了一个额外的电极前部簇,其幅度受记忆负载调制。源重建显示 IPS 以及 ACC 中的记忆负载依赖性激活,表明这两个区域可能是支持 VWM 维持的额顶叶回路的节点。至关重要的是,顶叶和前额区域显示出时间上的分离,因为 IPS 在视觉信息存储的早期阶段更活跃,而 ACC 在晚期阶段更活跃。这种模式表明,顶叶皮层参与信息的编码和存储,而前额区域则参与认知控制过程,包括增强和保护信息免受衰减,这两者之间存在功能分离。值得注意的是,IPS 和 ACC 之间的连接强度预测了个体记忆中存储的项目数量。这些发现是在 VWM 的神经分布式模型的理论解释框架内讨论的。

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