EEG-Informed fMRI Analysis Reveals Neurovascular Coupling in Motor Execution and Imagery
Bondi, E.; Ding, Y.; Zhang, Y.; Maggioni, E.; He, B.
Show abstract
The complementary strengths of electroencephalography (EEG) and functional magnetic resonance imaging (fMRI) have driven extensive research into integrating these two noninvasive modalities to better understand the neural mechanisms underlying cognitive, sensory, and motor functions. However, the precise neural patterns associated with motor functions, especially imagined movements, remain unclear. Specifically, the correlations between electrophysiological responses and hemodynamic activations during executed and imagined movements have not been fully elucidated at a whole-brain level. In this study, we employed an EEG-informed fMRI approach on concurrent EEG-fMRI data to map hemodynamic changes associated with dynamic EEG temporal features during motor-related brain activities. We localized and differentiated the hemodynamic activations corresponding to continuous EEG temporal dynamics across multiple motor execution and imagery tasks. Validation against conventional block fMRI analysis demonstrated high precision in identifying regions specific to motor activities, underscoring the accuracy of the EEG-driven model. Beyond the expected sensorimotor activations, the integrated analysis revealed supplementary coactivated regions showing significant negative covariation between blood oxygenation level-dependent (BOLD) activities and sensorimotor EEG alpha power, including the cerebellum and insular cortex. These findings confirmed both the colocalization of EEG and fMRI activities in sensorimotor regions and a negative covariation between EEG alpha band power and BOLD changes. Moreover, the results provide novel insights into neurovascular coupling during motor execution and imagery on a brain-wide scale, advancing our understanding of the neural dynamics underlying motor functions. HighlightsO_LIMovement-related EEG alpha activity negatively covaries with BOLD responses C_LIO_LIEEG-informed fMRI maps the neurovascular correlates across the entire brain C_LIO_LIA unified model disentangles multiple motor-related brain activations C_LIO_LIEEG-informed fMRI results highly overlap with conventional block fMRI results C_LI
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Imagined movement modulates cardiac-cortico-cortical and cardiac-cortico-cerebellar oscillatory networks 97%
- Investigating the effects of pre-stimulus cortical synchrony on behavior 96%
- Distinct networks coupled with parietal cortex for spatial representations inside and outside the visual field 96%
Similar papers in this journal
- A thin line between conflict and reaction time effectson EEG and fMRI brain signals 97%
- Neural correlates of kinematic features of passive finger movement revealed by univariate and multivariate fMRI analyses 96%
- Distinguishing the activity of adjacent somatosensory nuclei within the brainstem using 3T fMRI 96%
Similar papers in this journal
- Data-driven beamforming techniques to attenuate ballistocardiogram (BCG) artefacts in EEG-fMRI without detecting cardiac pulses in electrocardiography (ECG) recordings 97%
- Modulation of neural oscillations during working memory update, maintenance, and readout: an hdEEG study 95%
- Principal component analysis reveals multiple consistent responses to naturalistic stimuli in children and adults 95%
Similar papers in this journal
Similar papers in this journal
- Model-based and model-free analyses of the neural correlates of tongue movements 97%
- Neural encoding of reliability of directional information during the preparation of targeted movements 96%
- Modulation of gamma spectral amplitude and connectivity during reaching predicts peak velocity and movement duration 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.