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The Default Mode Network and the Working Memory Network are not anti-correlated during all phases of a working memory task

机译:在工作内存任务的所有阶段中,默认模式网络和工作内存网络并不是反相关的

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摘要

The default mode network and the working memory network are known to be anti-correlated during sustained cognitive processing, in a load-dependent manner. We hypothesized that functional connectivity among nodes of the two networks could be dynamically modulated by task phases across time. To address the dynamic links between default mode network and the working memory network, we used a delayed visuo-spatial working memory paradigm, which allowed us to separate three different phases of working memory (encoding, maintenance, and retrieval), and analysed the functional connectivity during each phase within and between the default mode network and the working memory network networks. We found that the two networks are anti-correlated only during the maintenance phase of working memory, i. e. when attention is focused on a memorized stimulus in the absence of external input. Conversely, during the encoding and retrieval phases, when the external stimulation is present, the default mode network is positively coupled with the working memory network, suggesting the existence of a dynamically switching of functional connectivity between “task-positive” and “task-negative” brain networks.udOur results demonstrate that the well-established dichotomy of the human brain (anti-correlated networks during rest and balanced activation-deactivation during cognition) has a more nuanced organization than previously thought and engages in different patterns of correlation and anti-correlation during specific sub-phases of a cognitive task. This nuanced organization reinforces the hypothesis of a direct involvement of the default mode network in cognitive functions, as represented by a dynamic rather than static interaction with specific task-positive networks, such as the working memory network
机译:已知默认模式网络和工作内存网络在持续的认知处理过程中以依赖于负载的方式是反相关的。我们假设两个网络节点之间的功能连通性可以通过跨时间的任务阶段进行动态调节。为了解决默认模式网络和工作内存网络之间的动态链接,我们使用了延迟的视觉空间工作内存范式,该范式允许我们分离工作内存的三个不同阶段(编码,维护和检索),并分析其功能。默认模式网络和工作内存网络之间以及内部之间的每个阶段的连通性。我们发现,这两个网络仅在工作内存的维护阶段才是反相关的。 e。当注意力集中在没有外部输入的情况下的记忆刺激上时。相反,在编码和检索阶段,当存在外部刺激时,默认模式网络与工作内存网络正耦合,这表明在“任务阳性”和“任务阴性”之间存在功能连接的动态切换。 ud我们的研究结果表明,人脑已建立的二分法(休息时的反相关网络和认知时的平衡激活-失活)比以前认为的更具细微差别,并且参与了不同的相关和反抗模式认知任务的特定子阶段的相关性。这种细微差别的组织强化了默认模式网络直接参与认知功能的假设,以与特定任务阳性网络(例如工作记忆网络)的动态而非静态交互为代表

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