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Representing Representation: Integration between the Temporal Lobe and the Posterior Cingulate Influences the Content and Form of Spontaneous Thought

机译:代表性代表:颞叶与后扣带的融合影响自发性思想的内容和形式

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摘要

When not engaged in the moment, we often spontaneously represent people, places and events that are not present in the environment. Although this capacity has been linked to the default mode network (DMN), it remains unclear how interactions between the nodes of this network give rise to particular mental experiences during spontaneous thought. One hypothesis is that the core of the DMN integrates information from medial and lateral temporal lobe memory systems, which represent different aspects of knowledge. Individual differences in the connectivity between temporal lobe regions and the default mode network core would then predict differences in the content and form of people’s spontaneous thoughts. This study tested this hypothesis by examining the relationship between seed-based functional connectivity and the contents of spontaneous thought recorded in a laboratory study several days later. Variations in connectivity from both medial and lateral temporal lobe regions was associated with different patterns of spontaneous thought and these effects converged on an overlapping region in the posterior cingulate cortex. We propose that the posterior core of the DMN acts as a representational hub that integrates information represented in medial and lateral temporal lobe and this process is important in determining the content and form of spontaneous thought.
机译:当不参与此刻时,我们经常自发地代表环境中不存在的人,地点和事件。尽管此功能已链接到默认模式网络(DMN),但尚不清楚在自发思考期间此网络的节点之间的交互如何产生特定的心理体验。一种假设是DMN的核心整合了来自内侧和外侧颞叶记忆系统的信息,这些信息代表了知识的不同方面。然后,颞叶区域和默认模式网络核心之间的连接性的个体差异将预测人们自发性思想的内容和形式的差异。这项研究通过检查基于种子的功能连接与几天后的实验室研究中记录的自发性思想内容之间的关系,检验了该假设。来自内侧和外侧颞叶区域的连通性的变化与自发性思维的不同模式相关,并且这些效应集中在后扣带回皮质的重叠区域上。我们建议DMN的后核心充当一个代表枢纽,该枢纽整合以内侧和外侧颞叶表示的信息,并且此过程对于确定自发性思维的内容和形式很重要。

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