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Asymmetry in resting intracortical activity as a buffer to social threat

机译:静止的皮质内活动的不对称性是社会威胁的缓冲

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摘要

Social rejection can create powerful changes in people's brains and bodies. In the study reported here, we examined brain-based individual differences associated with buffering against cardiovascular threat responses to social rejection. Using EEG source-localization techniques, we examined differences in intracortical asymmetry. We predicted that individuals with greater left relative to right dorsolateral prefrontal activity would show a more approach-motivated response to social rejection. Eighty-four female participants were randomly assigned to one of three stressful situations: social rejection, social evaluation without rejection, or self-evaluation. Among participants assigned to the social-rejection condition, greater left relative to right prefrontal intracortical activity at baseline was associated with more adaptive cardiovascular profiles and more self-reported approach-oriented emotions. Participants in the other conditions did not show these relationships. Our data are the first to show that social context matters when attempting to link individual differences in cortical asymmetry with approach-related cardiovascular and emotional outcomes.
机译:社会排斥会在人们的大脑和身体中产生强大的变化。在这里报告的研究中,我们研究了与缓冲针对社会排斥反应的心血管威胁反应相关的基于大脑的个体差异。使用脑电图源定位技术,我们检查了皮质内不对称性的差异。我们预测,相对于右侧背外侧前额叶活动量更大的个体将对社交排斥表现出更趋于主动的反应。八十四名女性参与者被随机分配到以下三种压力情况中的一种:社交排斥,无排斥的社会评估或自我评估。在被分配为社会排斥状况的参与者中,基线时左前额皮层内活动相对于右前额皮层内活动更大,这与更适应的心血管特征和更多自我报告的进路为导向的情绪有关。其他条件下的参与者没有显示这些关系。我们的数据首次表明,在尝试将皮层不对称的个体差异与进路相关的心血管和情绪结果联系起来时,社交环境至关重要。

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