Literature DB >> 28816098

Global fluctuations of cerebral blood flow indicate a global brain network independent of systemic factors.

Li Zhao1, David C Alsop1, John A Detre2, Weiying Dai1,3.   

Abstract

Global synchronization across specialized brain networks is a common feature of network models and in-vivo electrical measurements. Although the imaging of specialized brain networks with blood oxygenation sensitive resting state functional magnetic resonance imaging (rsfMRI) has enabled detailed study of regional networks, the study of globally correlated fluctuations with rsfMRI is confounded by spurious contributions to the global signal from systemic physiologic factors and other noise sources. Here we use an alternative rsfMRI method, arterial spin labeled perfusion MRI, to characterize global correlations and their relationship to correlations and anti-correlations between regional networks. Global fluctuations that cannot be explained by systemic factors dominate the fluctuations in cerebral blood flow. Power spectra of these fluctuations are band limited to below 0.05 Hz, similar to prior measurements of regional network fluctuations in the brain. Removal of these global fluctuations prior to measurement of regional networks reduces all regional network fluctuation amplitudes to below the global fluctuation amplitude and changes the strength and sign of inter network correlations. Our findings support large amplitude, globally synchronized activity across networks that require a reassessment of regional network amplitude and correlation measures.

Keywords:  Resting state functional magnetic resonance imaging; arterial spin labeling; brain network; global synchronization; perfusion

Mesh:

Year:  2017        PMID: 28816098      PMCID: PMC6365600          DOI: 10.1177/0271678X17726625

Source DB:  PubMed          Journal:  J Cereb Blood Flow Metab        ISSN: 0271-678X            Impact factor:   6.200


  53 in total

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5.  Effects of resting state condition on reliability, trait specificity, and network connectivity of brain function measured with arterial spin labeled perfusion MRI.

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6.  Rotated spiral RARE for high spatial and temporal resolution volumetric arterial spin labeling acquisition.

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  6 in total

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