4.7 Article

Multi-band MEG signatures of BOLD connectivity reorganization during visuospatial attention

期刊

NEUROIMAGE
卷 230, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.neuroimage.2021.117781

关键词

Functional connectivity; MEG; fMRI; Band-Limited Power (BLP); Visuospatial attention; Principal components analysis

资金

  1. FLAG-ERA JTC 2017
  2. CARIPARO Foundation 2019 Padova: Dark Energy
  3. Departments of Excellence Italina Ministry of Research (MIUR): NeuroDIP
  4. Ministry of Health Italy: Brain-Conn network abnormalities in stroke
  5. CELEGHIN Foundation Padova: Neuro-Onco Plan
  6. Departments of Excellence 2018-2022 initiative of the Italian Ministry of Education, University and Research

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The study found that the functional architecture of the brain undergoes slight modifications during task performance, with changes in BOLD-FC and neuromagnetic Band-Limited Power (BLP) correlations corresponding to visual attention tasks and central fixation. The results suggest that there is a relationship between BOLD-FC modulations during rest and task performance, with multi-spectral BLP-FC components potentially playing a key role.
The functional architecture of the resting brain, as measured with the blood oxygenation level-dependent functional connectivity (BOLD-FC), is slightly modified during task performance. In previous work, we reported behaviorally relevant BOLD-FC modulations between visual and dorsal attention regions when subjects performed a visuospatial attention task as compared to central fixation (Spadone et al., 2015). Here we use magnetoencephalography (MEG) in the same group of subjects to identify the electrophysiological correlates of the BOLD-FC modulation found in our previous work. While BOLD-FC topography, separately at rest and during visual attention, corresponded to neuromagnetic Band-Limited Power (BLP) correlation in the alpha and beta bands (8-30 Hz), BOLD-FC modulations evoked by performing the visual attention task (Spadone et al. 2015) did not match any specific oscillatory band BLP modulation. Conversely, following the application of an orthogonal spatial decomposition that identifies common inter-subject co-variations, we found that attention-rest BOLD-FC modulations were recapitulated by multi-spectral BLP-FC components. Notably, individual variability of alpha connectivity between Frontal Eye Fields and visual occipital regions, jointly with decreased interaction in the Visual network, correlated with visual discrimination accuracy. In summary, task-rest BOLD connectivity modulations match multi-spectral MEG BLP connectivity.

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