Context Modulates Perceived Fairness in Altruistic Punishment: Neural Signatures from ERPs and EEG Oscillations.

IF 2.3 3区 医学 Q3 CLINICAL NEUROLOGY Brain Topography Pub Date : 2024-09-01 Epub Date: 2024-03-06 DOI:10.1007/s10548-024-01039-1
Lei Yang, Yuan Gao, Lihong Ao, He Wang, Shuhang Zhou, Yingjie Liu
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Abstract

Social norms and altruistic punitive behaviours are both based on the integration of information from multiple contexts. Individual behavioural performance can be altered by loss and gain contexts, which produce different mental states and subjective perceptions. In this study, we used event-related potential and time-frequency techniques to examine performance on a third-party punishment task and to explore the neural mechanisms underlying context-dependent differences in punishment decisions. The results indicated that individuals were more likely to reject unfairness in the context of loss (vs. gain) and to increase punishment as unfairness increased. In contrast, fairness appeared to cause an early increase in cognitive control signal enhancement, as indicated by the P2 amplitude and theta oscillations, and a later increase in emotional and motivational salience during decision-making in gain vs. loss contexts, as indicated by the medial frontal negativity and beta oscillations. In summary, individuals were more willing to sanction violations of social norms in the loss context than in the gain context and rejecting unfair losses induced more equity-related cognitive conflict than accepting unfair gains, highlighting the importance of context (i.e., gain vs. loss) in equity-related social decision-making processes.

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情境调节利他主义惩罚中的公平感:ERPs和脑电图振荡的神经信号
社会规范和利他主义惩罚行为都是基于对多种情境信息的整合。个体的行为表现会因损失和收益情境而改变,而损失和收益情境会产生不同的心理状态和主观感受。在这项研究中,我们使用了事件相关电位和时间频率技术来检测第三方惩罚任务的表现,并探索惩罚决策中依赖于情境差异的神经机制。结果表明,在损失(相对于收益)的情况下,个体更有可能拒绝不公平,并随着不公平程度的增加而加大惩罚力度。相反,公平似乎会导致认知控制信号的早期增强,如P2振幅和θ振荡所示,以及在收益与损失情境下决策过程中情绪和动机显著性的后期增强,如内侧额叶负性和贝塔振荡所示。总之,在损失情境中,个体比在收益情境中更愿意制裁违反社会规范的行为;与接受不公平的收益相比,拒绝不公平的损失会引发更多与公平相关的认知冲突,这凸显了情境(即收益与损失)在与公平相关的社会决策过程中的重要性。
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来源期刊
Brain Topography
Brain Topography 医学-临床神经学
CiteScore
4.70
自引率
7.40%
发文量
41
审稿时长
3 months
期刊介绍: Brain Topography publishes clinical and basic research on cognitive neuroscience and functional neurophysiology using the full range of imaging techniques including EEG, MEG, fMRI, TMS, diffusion imaging, spectroscopy, intracranial recordings, lesion studies, and related methods. Submissions combining multiple techniques are particularly encouraged, as well as reports of new and innovative methodologies.
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