Cross-modal alterations of Alpha Activity do not reflect inhibition of early sensory processing: A frequency tagging study
Brickwedde, M.; Limachya, R.; Markiewicz, R.; Sutton, E.; Shapiro, K.; Jensen, O.; Mazaheri, A.
Show abstract
Selective attention involves prioritizing relevant sensory input while suppressing irrelevant stimuli. It has been proposed that oscillatory alpha-band activity ([~]10 Hz) aids this process by functionally inhibiting early sensory regions. However, recent studies have challenged this notion. Our EEG and MEG studies aimed to investigate whether alpha oscillations serve as a gatekeeper for downstream signal transmission. We first observed these effects in an EEG study and then replicated them using MEG, which allowed us to localize the sources. We employed a cross-modal paradigm where visual cues indicated whether upcoming targets required visual or auditory discrimination. To assess inhibition, we utilized frequency-tagging, simultaneously flickering the fixation cross at 36 Hz and playing amplitude-modulated white noise at 40 Hz during the cue-to-target interval. Consistent with prior research, we observed an increase in posterior alpha activity following cues signalling auditory targets. However, remarkably, both visual and auditory frequency tagged responses amplified in anticipation of auditory targets, correlating with alpha activity amplitude. Our findings suggest that when attention shifts to auditory processing, the visual stream remains responsive and is not hindered by occipital alpha activity. This implies that alpha modulation does not solely regulate gain control in early visual areas but rather orchestrates signal transmission to later stages of the processing stream.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Oscillatory Multi-Timescale Mechanisms Underlying Audiovisual Sequence Prediction 97%
- Task-related modulation of event-related potentials does not reflect changes to sensory representations 97%
- Characterising time-on-task effects on oscillatory and aperiodic EEG components and their co-variation with visual task performance. 96%
Similar papers in this journal
- Distinct roles of forward and backward alpha-band waves in spatial visual attention 97%
- Local cortical desynchronization and pupil-linked arousal differentially shape brain states for optimal sensory performance 97%
- Modulation of aperiodic EEG activity provides sensitive index of cognitive state changes during working memory task 97%
"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.