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Baseline EEG theta/beta ratio and punishment sensitivity as biomarkers for feedback-related negativity (FRN) and risk-taking

机译:基线脑电图theta / beta比率和惩罚敏感性作为与反馈相关的阴性(FRN)和冒险的生物标志物

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摘要

Objective: Feedback-related negativity (FRN) is associated with reinforcement learning and punishment sensitivity. Furthermore, reinforcement learning proficiency can be predicted from pre-task baseline EEG theta/beta ratio. In this study it was examined whether there was a relation between baseline theta/beta ratio in rest and FRN amplitude during a gambling task, and if such a correlation would be related to theta activity or to beta activity. Methods: Baseline EEG and a self-report measure of punishment sensitivity (BIS) were obtained from 52 healthy volunteers. FRN was recorded during a gambling task. Results: FRN amplitude was negatively correlated with theta/beta ratio in high BIS individuals. Furthermore, source localization indicated that baseline theta activity generated in the anterior cingulate cortex (ACC) accounted for this correlation. For low BIS individuals no correlation was found. Conclusions: An association between high baseline theta/beta ratio with low amplitude FRN and high risk-taking can be found in individuals who score sufficiently high on the BIS scale. This relationship is carried mostly by baseline theta activity, but not by beta activity. Significance: This link between baseline brain activity, self-report measures and feedback processing may contribute to further understanding the biological basis of conditions that are accompanied by abnormal theta/beta ratio and reward processing, such as attention deficit hyper activity disorder (ADHD).
机译:目的:与反馈相关的消极情绪(FRN)与强化学习和惩罚敏感性相关。此外,可以从任务前基线脑电图theta / beta比预测强化学习水平。在这项研究中,研究了赌博任务中静止的基线theta / beta比值与FRN振幅之间是否存在关联,以及这种关联是否与theta活动或beta活动有关。方法:从52名健康志愿者中获得了基线脑电图和自我报告的惩罚敏感性(BIS)。在赌博任务中记录了FRN。结果:高BIS患者中FRN振幅与theta / beta比值呈负相关。此外,来源定位表明在前扣带回皮层(ACC)中产生的基线theta活性解释了这种相关性。对于低BIS个体,未发现相关性。结论:在BIS量表上得分足够高的个体中,可以发现高基线theta / beta比与低幅度FRN与高冒险之间的关联。这种关系主要由基线theta活性承载,而不由beta活性承载。启示:基线大脑活动,自我报告措施和反馈处理之间的这种联系可能有助于进一步理解伴随异常θ/β比值和奖励处理(例如注意力缺陷多动障碍(ADHD))的疾病的生物学基础。

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