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Phase-synchronization-based parcellation of resting state fMRI signals reveals topographically organized clusters in early visual cortex

机译:基于相位同步的静止状态的局部FMRI信号显示早期视觉皮层中的地形有组织的簇

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摘要

Resting-state fMRI is widely used to study brain function and connectivity. However, interpreting patterns of resting state (RS) fMRI activity remains challenging as they may arise from different neuronal mechanisms than those triggered by exogenous events. Currently, this limits the use of RS-fMRI for understanding cortical function in health and disease. Here, we examine the phase synchronization (PS) properties of blood-oxygen level dependent (BOLD) signals obtained during visual field mapping (VFM) and RS with 7T fMRI. This data-driven approach exploits spatiotemporal covariations in the phase of BOLD recordings to establish the presence of clusters of synchronized activity. We find that, in both VFM and RS data, selecting the most synchronized neighboring recording sites identifies spatially localized PS clusters that follow the topographic organization of the visual cortex. However, in activity obtained during VFM, PS is spatially more extensive than in RS activity, likely reflecting stimulus-driven interactions between local responses. Nevertheless, the similarity of the PS clusters obtained for RS and stimulus-driven fMRI suggest that they share a common neuroanatomical origin. Our finding justifies and facilitates direct comparison of RS and stimulus-evoked activity. (C) 2017 Elsevier Inc. All rights reserved.
机译:休息状态FMRI广泛用于研究大脑功能和连接。然而,休息状态(RS)FMRI活性的解释模式仍然具有挑战性,因为它们可能来自不同的神经元机制而不是由外源事件引发的不同之处。目前,这限制了RS-FMRI以了解健康和疾病中的皮质功能。这里,我们检查在视野映射(VFM)和7T FMRI期间获得的血氧级相关(粗体)信号的相位同步(PS)属性。这种数据驱动方法利用粗体录制阶段的时空协变量来建立同步活动簇的存在。我们发现,在VFM和RS数据中,选择最同步的相邻录制站点标识了遵循Visual Cortex的地形组织的空间本地化的PS集群。然而,在VFM期间获得的活性,PS在空间上比在RS活动中更广泛,可能反映了局部反应之间的刺激驱动的相互作用。然而,为RS和刺激驱动的FMRI获得的PS簇的相似性表明它们共享常见的神经杀菌原产地。我们的发现是合理的,并促进直接比较卢比和刺激诱发的活动。 (c)2017年Elsevier Inc.保留所有权利。

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