Higher baseline alpha power is associated with faster responses in visual search
Duecker, K.; Shapiro, K. L.; Hanslmayr, S.; Griffiths, B. J.; Quinn, A. J.; Wolfe, J.; Pan, Y.; Pastuszak, A.; Jensen, O.
Show abstract
Visual search models have long emphasised that task-relevant items must be prioritized for optimal performance. While it is known that search efficiency also benefits from active distractor inhibition, the underlying neuronal mechanisms are debated. Neuronal alpha oscillations (7-14 Hz) have been associated with functional inhibition of cortical excitability, as well as distractor suppression in spatial attention and visual working memory tasks. We therefore hypothesised that alpha oscillations similarly support the deselection of distractors in visual search. Using Magnetoencephalography (MEG), we here show that high alpha power before the onset of a complex search display is associated with faster search performance. Crucially, we used a General Linear Model (GLM) approach to control for confounds between alpha power and task duration, ruling out that this result was merely driven by practice effects paired with increased fatigue over time. In addition to spontaneous oscillatory activity, we quantified the cortical excitability to colours of the search stimuli based on Rapid Invisible Frequency Tagging (RIFT) responses. In contrast to our initial hypothesis, increased pre-search alpha power did not correlate with the RIFT response, providing no direct evidence for feature-specific inhibition of distracting stimuli by alpha. Our findings challenge the traditional view of alpha oscillations reducing visual processing, showing instead that increased occipital alpha power can enhance performance in a visual task. We propose that the increase in alpha power may reflect increased top-down control supporting visual search
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Statistical Learning of Distractor Suppression Down-regulates Pre-Stimulus Neural Excitability in Early Visual Cortex 98%
- Predictive distractor processing relies on integrated proactive and reactive attentional mechanisms 97%
- Alpha Activity Reflects the Magnitude of an Individual Bias in Human Perception 97%
Similar papers in this journal
- Distinct roles of forward and backward alpha-band waves in spatial visual attention 97%
- Modulation of aperiodic EEG activity provides sensitive index of cognitive state changes during working memory task 97%
- Neural mechanisms underlying expectation-dependent inhibition of distracting information 97%
Similar papers in this journal
- Task-related modulation of event-related potentials does not reflect changes to sensory representations 97%
- Oscillatory Multi-Timescale Mechanisms Underlying Audiovisual Sequence Prediction 97%
- Multimodal evidence challenges the effectiveness of probabilistic cueing for establishing sensory expectations 96%
Similar papers in this journal
- Linking the brain with behaviour: the neural dynamics of success and failure in goal-directed behaviour 97%
- Spatial predictive context speeds up visual search by biasing local attentional competition 97%
- Comparing Neural Correlates of Memory Encoding and Maintenance for Foveal and Peripheral Stimuli 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.