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Two spatially distinct posterior alpha sources fulfill different functional roles in attention

Sokoliuk, R.; Mayhew, S.D.; Aquino, K.M.; Wilson, R.; Brookes, M.J.; Francis, S.T.; Hanslmayr, S.; Mullinger, K.J.

Authors

R. Sokoliuk

S.D. Mayhew

K.M. Aquino

R. Wilson

S. Hanslmayr



Abstract

Directing attention helps extracting relevant information and suppressing distracters. Alpha brain oscillations (8-12Hz) are crucial for this process, with power decreases facilitating processing of important information and power increases inhibiting brain regions processing irrelevant information. Evidence for this phenomenon arises from visual attention studies (Worden et al., 2000b), however, the effect also exists in other modalities, including the somatosensory system (Haegens et al., 2011) and inter-sensory attention tasks (Foxe and Snyder, 2011). We investigated in human participants (10 females, 10 males) the role of alpha oscillations in focused (0/100%) vs. divided (40/60%) attention, both across modalities (visual/somatosensory; Experiment 1) and within the same modality (visual domain: across hemifields; Experiment 2) while recording EEG over 128 scalp electrodes. In Experiment 1 participants divided their attention between visual and somatosensory modality to determine the temporal/spatial frequency of a target stimulus (vibrotactile stimulus/Gabor grating). In Experiment 2, participants divided attention between two visual hemifields to identify the orientation of a Gabor grating. In both experiments, pre-stimulus alpha power in visual areas decreased linearly with increasing attention to visual stimuli. In contrast, pre-stimulus alpha power in parietal areas was lower when attention was divided between modalities/hemifields, compared to focused attention. These results suggest there are two alpha sources, where one reflects the ‘visual spotlight of attention’ and the other reflects attentional effort. To our knowledge, this is the first study to show that attention recruits two spatially distinct alpha sources in occipital and parietal brain regions, acting simultaneously but serving different functions in attention.

Citation

Sokoliuk, R., Mayhew, S., Aquino, K., Wilson, R., Brookes, M., Francis, S., …Mullinger, K. (2019). Two spatially distinct posterior alpha sources fulfill different functional roles in attention. Journal of Neuroscience, 39(36), 7183-7194. https://doi.org/10.1523/jneurosci.1993-18.2019

Journal Article Type Article
Acceptance Date May 17, 2019
Online Publication Date Jul 24, 2019
Publication Date Sep 4, 2019
Deposit Date Jun 25, 2019
Publicly Available Date Jul 24, 2019
Journal The Journal of Neuroscience
Electronic ISSN 1529-2401
Publisher Society for Neuroscience
Peer Reviewed Peer Reviewed
Volume 39
Issue 36
Pages 7183-7194
DOI https://doi.org/10.1523/jneurosci.1993-18.2019
Keywords General Neuroscience
Public URL https://nottingham-repository.worktribe.com/output/2226031
Publisher URL https://www.jneurosci.org/content/early/2019/07/24/JNEUROSCI.1993-18.2019

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