Distinct Processing of Selection and Execution Errors in Neural Signatures of Outcome Monitoring
Mushtaq, F.; McDougle, S. D.; Craddock, M. P.; Parvin, D.; Brookes, J.; Schaefer, A.; Mon-Williams, M.; Taylor, J. A.; Ivry, R. B.
Show abstract
Losing a point in tennis could result from poor shot selection or faulty stroke execution. To explore how the brain responds to these different types of errors, we examined feedback-locked EEG activity while participants completed a modified version of a standard three-armed bandit probabilistic reward task. Our task framed unrewarded outcomes as either the result of errors of selection or errors of execution. We examined whether amplitude of a medial frontal negativity (the Feedback-Related Negativity; FRN) was sensitive to the different forms of error attribution. Consistent with previous reports, selection errors elicited a large FRN relative to rewards and amplitude of this signal correlated behavioral adjustment following these errors. A different pattern was observed in response to execution errors. These outcomes produced a larger FRN, a frontocentral attenuation in activity preceding this component, and a subsequent enhanced error positivity in parietal sites. Notably, the only correlations with behavioral adjustment were with the early frontocentral attenuation and amplitude of the parietal signal; FRN differences between execution errors and rewarded trials did not correlate with subsequent changes in behavior. Our findings highlight distinct neural correlates of selection and execution error processing, providing insight into how the brain responds to the different classes of error that determine future action.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The Electrophysiological Markers of Statistically Learned Attentional Enhancement: Evidence for a Saliency Based Mechanism 97%
- Neural repetition suppression modulates time perception: evidence from electrophysiology and pupillometry 97%
- Neural signatures of competition between voluntary and involuntary influences over the focus of attention in visual working memory 96%
Similar papers in this journal
- An automatic domain-general error signal is shared across tasks and predicts confidence in different sensory modalities 96%
- Alpha-band lateralization and microsaccades elicited by exogenous cues do not track attentional orienting 96%
- Theta-phase connectivity between medial prefrontal and posterior areas underlies novel instructions implementation 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.