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通过记忆提取和维持过程中的神经振荡,绘制内颞叶和前额叶皮质之间的信息流图谱。

Mapping information flow between the inferotemporal and prefrontal cortices via neural oscillations in memory retrieval and maintenance.

机构信息

Department of Neurosurgery of the Second Affiliated Hospital and Interdisciplinary Institute of Neuroscience and Technology, School of Brain Science and Brain Medicine, Zhejiang University, Hangzhou, China; MOE Frontier Science Center for Brain Science and Brain-Machine Integration, School of Brain Science and Brain Medicine, Zhejiang University, Hangzhou, China.

Department of Physiology, Niigata University School of Medicine, Niigata, Niigata 951-8501, Japan.

出版信息

Cell Rep. 2023 Oct 31;42(10):113169. doi: 10.1016/j.celrep.2023.113169. Epub 2023 Sep 25.

Abstract

Interaction between the inferotemporal (ITC) and prefrontal (PFC) cortices is critical for retrieving information from memory and maintaining it in working memory. Neural oscillations provide a mechanism for communication between brain regions. However, it remains unknown how information flow via neural oscillations is functionally organized in these cortices during these processes. In this study, we apply Granger causality analysis to electrocorticographic signals from both cortices of monkeys performing visual association tasks to map information flow. Our results reveal regions within the ITC where information flow to and from the PFC increases via specific frequency oscillations to form clusters during memory retrieval and maintenance. Theta-band information flow in both directions increases in similar regions in both cortices, suggesting reciprocal information exchange in those regions. These findings suggest that specific subregions function as nodes in the memory information-processing network between the ITC and the PFC.

摘要

颞下回(ITC)和前额叶(PFC)皮质之间的相互作用对于从记忆中检索信息和在工作记忆中保持信息至关重要。神经振荡为脑区之间的通讯提供了一种机制。然而,在这些过程中,通过神经振荡的信息流如何在这些皮质中进行功能组织尚不清楚。在这项研究中,我们应用格兰杰因果分析方法对执行视觉联想任务的猴子的皮质脑电图信号进行分析,以绘制信息流图谱。我们的结果揭示了在记忆检索和维持过程中,通过特定的频率振荡,信息流在 PFC 内的特定区域增加,并形成簇。在两个皮质中,双向的 theta 波段信息流在相似的区域增加,这表明在这些区域存在着相互的信息交换。这些发现表明,特定的亚区在 ITC 和 PFC 之间的记忆信息处理网络中充当节点。

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