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Common Intrinsic Connectivity States Among Posteromedial Cortex Subdivisions: Insights From Analysis of Temporal Dynamics

机译:后内侧皮层细分中常见的内在连通性状态:时间动态分析的见解

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摘要

Perspectives of human brain functional connectivity continue to evolve. Static representations of functional interactions between brain regions are rapidly giving way to dynamic perspectives, which emphasizes non-random temporal variations in intrinsic functional connectivity (iFC) patterns. Here, we bring this dynamic perspective to our understanding of iFC patterns for posteromedial cortex (PMC), a cortical hub known for its functional diversity. Previous work has consistently differentiated iFC patterns among PMC subregions, though assumed static iFC over time. Here, we assessed iFC as a function of time utilizing a sliding-window correlation approach, and applied hierarchical clustering to detect representative iFC states from the windowed iFC. Across subregions, five iFC states were detected over time. Although with differing frequencies, each subregion was associated with each of the states, suggesting that these iFC states are “common” to PMC subregions. Importantly, each subregion possessed a unique preferred state(s) and distinct transition patterns, explaining previously observed iFC differentiations. These results resonate with task-based fMRI studies suggesting that large-scale functional networks can be flexibly reconfigured in response to changing task-demands. Additionally, we used retest scans (~1 week later) to demonstrate the reproducibility of the iFC states identified, and establish moderate to high test-retest reliability for various metrics used to quantify switching behaviors. We also demonstrate the ability of dynamic properties in the visual PMC subregion to index inter-individual differences in a measure of concept formation and mental flexibility. These findings suggest functional relevance of dynamic iFC and its potential utility in biomarker identification over time, as d-iFC methodologies are refined and mature.
机译:人脑功能连接的观点不断发展。大脑区域之间功能交互的静态表示正在迅速被动态观点所取代,动态观点强调了内在功能连接(iFC)模式中的非随机时间变化。在这里,我们将这种动态的观点带入了对后内侧皮质(PMC)的iFC模式的理解,PMC是一种以功能多样性而闻名的皮质枢纽。先前的工作一直假设PMC子区域之间的iFC模式有所不同,尽管假设随着时间的推移静态iFC。在这里,我们使用滑动窗口相关方法将iFC评估为时间的函数,并应用分层聚类从窗口iFC中检测代表性iFC状态。在整个次区域中,随着时间的推移检测到五个iFC状态。尽管频率不同,但每个子区域与每个州相关联,这表明这些iFC状态与PMC子区域“共通”。重要的是,每个子区域都具有唯一的首选状态和不同的过渡模式,这解释了先前观察到的iFC差异。这些结果与基于任务的功能磁共振成像研究产生了共鸣,表明基于任务需求的变化,可以灵活地重新配置大型功能网络。此外,我们使用重新测试扫描(约1周后)来证明所确定的iFC状态的可重复性,并为用于量化开关行为的各种指标建立了中等到较高的重新测试可靠性。我们还展示了视觉PMC子区域中动态属性的能力,以在概念形成和心理灵活性方面衡量个体差异。这些发现表明,随着d-iFC方法的完善和成熟,动态iFC的功能相关性及其在生物标志物鉴定中的潜在效用。

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