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Dynamic Responses in Brain Networks to Social Feedback: A Dual EEG Acquisition Study in Adolescent Couples

机译:脑网络对社会反馈的动态响应:青春期夫妇的双重脑电图获取研究。

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摘要

Adolescence is a sensitive period for the development of romantic relationships. During this period the maturation of frontolimbic networks is particularly important for the capacity to regulate emotional experiences. In previous research, both functional magnetic resonance imaging (fMRI) and dense array electroencephalography (dEEG) measures have suggested that responses in limbic regions are enhanced in adolescents experiencing social rejection. In the present research, we examined social acceptance and rejection from romantic partners as they engaged in a Chatroom Interact Task. Dual 128-channel dEEG systems were used to record neural responses to acceptance and rejection from both adolescent romantic partners and unfamiliar peers (N = 75). We employed a two-step temporal principal component analysis (PCA) and spatial independent component analysis (ICA) approach to statistically identify the neural components related to social feedback. Results revealed that the early (288 ms) discrimination between acceptance and rejection reflected by the P3a component was significant for the romantic partner but not the unfamiliar peer. In contrast, the later (364 ms) P3b component discriminated between acceptance and rejection for both partners and peers. The two-step approach (PCA then ICA) was better able than either PCA or ICA alone in separating these components of the brain's electrical activity that reflected both temporal and spatial phases of the brain's processing of social feedback.
机译:青春期是发展恋爱关系的敏感时期。在此期间,额前网络的成熟对于调节情绪体验的能力尤为重要。在先前的研究中,功能磁共振成像(fMRI)和密集阵列脑电图(dEEG)措施均表明,在经历社会排斥的青少年中,边缘区的反应增强。在本研究中,我们研究了浪漫伴侣在进行“聊天室互动任务”时的社交接受和拒绝。双128通道dEEG系统用于记录青少年浪漫伴侣和陌生同伴(N = 75)对接受和拒绝的神经反应。我们采用了两步式时间主成分分析(PCA)和空间独立成分分析(ICA)方法,以统计方式识别与社会反馈相关的神经成分。结果显示,由P3a组件反映出的在接受和拒绝之间的早期区分(288毫秒)对于浪漫的伴侣很重要,但对陌生的伴侣却没有。相反,后来的(364 ms)P3b组件对伙伴和对等方的接受和拒绝进行了区分。与分离PCA或ICA相比,采用两步法(PCA优于ICA)能够更好地分离大脑电活动的这些成分,这些成分反映了大脑处理社会反馈的时间和空间阶段。

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