2022
DOI: 10.1101/2022.12.13.520297
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Multimodal measures of spontaneous brain activity reveals both common and divergent patterns of cortical functional organization

Abstract: Understanding the organization of large-scale brain networks remains a central problem in neuroscience. Work in both humans and rodents shows that the brain can be decomposed in terms of several networks (e.g., "default network"). Whereas the bulk of what we know is based on the blood-oxygenation level-dependent (BOLD) signal, the relationship between BOLD and neuronal activity is complex, which poses several challenges to interpreting networks revealed by this technique. To resolve these challenges, here we e… Show more

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Cited by 3 publications
(12 citation statements)
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References 148 publications
(421 reference statements)
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“…al. revealed notable differences in functional connectivity strength measured by fMRI and calcium imaging, despite an overlapping spatial pattern of cortical networks identified by both modalities (Vafaii et al, 2024). These findings collectively suggest that while the temporal correlation between electrophysiology and rsfMRI signals is significant, the effect size of this correlation might be small.…”
Section: Discussionmentioning
confidence: 80%
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“…al. revealed notable differences in functional connectivity strength measured by fMRI and calcium imaging, despite an overlapping spatial pattern of cortical networks identified by both modalities (Vafaii et al, 2024). These findings collectively suggest that while the temporal correlation between electrophysiology and rsfMRI signals is significant, the effect size of this correlation might be small.…”
Section: Discussionmentioning
confidence: 80%
“…Moreover, voltagesensitive dye imaging in mice has unveiled comparable sensory-evoked and hemisphere-wide activity motifs represented in spontaneous activity in both lightly anesthetized and awake states (Mohajerani et al, 2013). Furthermore, in a more recent study by Vafaii and colleagues, overlapping cortical networks were identified using both fMRI and calcium imaging modalities, suggesting that networks observable in fMRI studies exhibit corresponding neural activity spatial patterns (Vafaii et al, 2024). These results align well with the notion that RSN spatial patterns are highly consistent with known functional systems and activation patterns observed in task-based studies (Biswal et al, 1995;Glasser et al, 2016;Hampson et al, 2002;Lowe et al, 1998;Smith et al, 2009), as well as patterns of structural networks (Andrews-Hanna et al, 2010;Greicius et al, 2009;Lowe et al, 2008).…”
Section: Discussionmentioning
confidence: 95%
“…Prior to imaging, all animals undergo a minimally invasive surgical procedure [31][32][33] , where a head-plate is affixed to the skull a month prior to any imaging (timeline, Fig. 1).…”
Section: Resultsmentioning
confidence: 99%
“…Thirty-minutes of resting-state BOLD-fMRI data, together with structural images for data registration, are collected at each timepoint under low-dose isoflurane (0.5-0.75%). Data are processed and registered to a common space 31,33,34 . A small fraction of the fMRI data (9%) are excluded based on quality control standards 16,[34][35][36] .…”
Section: Resultsmentioning
confidence: 99%
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