| Literature DB >> 34063798 |
Juliana Teti Mayer1,2, Charline Compagne1,3, Magali Nicolier1,2,3, Yohan Grandperrin1,2, Thibault Chabin1,3, Julie Giustiniani1,2,3, Emmanuel Haffen1,2,3,4, Djamila Bennabi1,2,3,4, Damien Gabriel1,3.
Abstract
Risk-taking is part of the multidimensional nature of impulsivity, consisting of an active engagement in behaviors or choices with potentially undesirable results, with probability as the cost for an expected reward. In order to understand the neurophysiological activity during risky behavior and its relationship with other dimensions of impulsivity, we have acquired event-related-potential (ERP) data and self-reported impulsivity scores from 17 non-clinical volunteers. They underwent high-resolution electroencephalography (HR-EEG) combined with an adapted version of the Balloon Analogue Risk Task (BART), and completed the Barratt Impulsiveness Scale (BIS-10) and the Urgency, Premeditation, Perseverance, Sensation Seeking, Impulsive Behavior Scale (UPPS). The ERP components were sensitive to valence (FRN, P300) and risk/reward magnitude (SPN, RewP). Our main finding evidenced a positive correlation between the amplitude of the P300 component following positive feedback and both the global UPPS score and the (lack of) perseverance UPPS subscale, significant for several adjacent electrodes. This finding might suggest an adaptive form of impulsive behavior, which could be associated to the reduction on the difference of the P300 amplitude following negative and positive feedback. However, further investigation with both larger clinical and non-clinical samples is required.Entities:
Keywords: decision-making; electroencephalography (EEG); event-related potentials (ERPs); feedback processing; impulsivity; risk-taking
Year: 2021 PMID: 34063798 DOI: 10.3390/brainsci11060671
Source DB: PubMed Journal: Brain Sci ISSN: 2076-3425