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Does the default-mode functional connectivity of the brain correlate with working-memory performances?

机译:大脑的默认模式功能连接性是否与工作记忆性能相关?

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The "default-mode" network is an ensemble of cortical regions that are typically deactivated during demanding cognitive tasks in functional magnetic resonance imaging (fMRI) studies. Using functional connectivity analysis, this network can be studied as a "stand-alone' brain system whose functional role is supposed to consist in the dynamic control of intrinsic processing activities like attention focusing and task-unrelated thought generation and suppression. Independent component analysis (ICA) is the method of choice for generating a statistical image of the "default-mode" network (DMN) using a task- and seed-independent distributed model of fMRI functional connectivity without prior specification of node region extent and timing of neural activation. We used a standard graded working-memory task (n-back) to induce fMRI changes in the default-mode regions and ICA to evaluate to DMN functional connectivity in nineteen healthy volunteers. Based on the known spatial variability of the ICA-DMN maps with the task difficulty levels, we hypothesized the ICA-DMN may also correlated with the subject performances. We confirmed that the relative extent of the anterior and posterior midline spots within the DMN were oppositely (resp. positively in the anterior and negatively in the posterior cingulate cortex) correlated with the level of task difficulty and found out that the spatial distribution of DMN also correlates with the individual task performances. We conclude that the working-memory function is related to a spatial re-configuration of the DMN functional connectivity, and that the relative involvement of the cingulate regions within the DMN might function as a novel predictor of the working-memory efficiency.
机译:“默认模式”网络是皮质区域的集合,这些区域通常在功能磁共振成像(fMRI)研究中的苛刻认知任务期间被停用。使用功能连通性分析,可以将此网络研究为“独立”的大脑系统,其功能作用应该在于对内在处理活动的动态控制,例如注意力集中以及与任务无关的思想的产生和抑制。 ICA)是一种选择方法,它使用任务和种子无关的fMRI功能连通性分布式模型来生成“默认模式”网络(DMN)的统计图像,而无需事先指定节点区域范围和神经激活的时间。我们使用标准的分级工作记忆任务(n-back)诱导默认模式区域的功能磁共振成像变化,并使用ICA评估19名健康志愿者的DMN功能连通性。在任务难度水平上,我们假设ICA-DMN也可能与受试者的表现有关。 DMN内的后中线斑点相反(res。在前扣带回皮层中呈正相关,在后扣带回皮层中呈负相关),这与任务难度有关,并且发现DMN的空间分布也与单个任务的执行情况相关。我们得出的结论是,工作记忆功能与DMN功能连通性的空间重新配置有关,并且DMN内扣带区域的相对参与可能充当了工作记忆效率的新型预测因子。

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