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Activity in the human brain predicting differential heart rate responses to emotional facial expressions.

机译:人脑中的活动预测了不同心率对情绪面部表情的反应。

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The James-Lange theory of emotion proposes that automatically generated bodily reactions not only color subjective emotional experience of stimuli, but also necessitate a mechanism by which these bodily reactions are differentially generated to reflect stimulus quality. To examine this putative mechanism, we simultaneously measured brain activity and heart rate to identify regions where neural activity predicted the magnitude of heart rate responses to emotional facial expressions. Using a forewarned reaction time task, we showed that orienting heart rate acceleration to emotional face stimuli was modulated as a function of the emotion depicted. The magnitude of evoked heart rate increase, both across the stimulus set and within each emotion category, was predicted by level of activity within a matrix of interconnected brain regions, including amygdala, insula, anterior cingulate, and brainstem. We suggest that these regions provide a substrate for translating visual perception of emotional facial expression into differential cardiac responses and thereby represent an interface for selective generation of visceral reactions that contribute to the embodied component of emotional reaction.
机译:詹姆士-朗格的情感理论提出,自动产生的身体反应不仅会使刺激的主观情感体验变色,而且还需要一种机制,通过这些机制有差别地产生这些身体反应来反映刺激的质量。为了检查这种假定的机制,我们同时测量了大脑活动和心率,以识别神经活动预测心率对情绪面部表情的反应程度的区域。使用预知的反应时间任务,我们表明,将心率加速度定向到情绪化的面部刺激是根据所描述的情绪进行调节的。在相互刺激的大脑区域(包括杏仁核,岛状,前扣带回和脑干)的矩阵内的活动水平,可以预测整个刺激集和每个情感类别中诱发的心率增加的幅度。我们建议这些区域提供了将情感面部表情的视觉感知转换为差异性心脏反应的基质,从而代表了选择性产生内脏反应的界面,内脏反应有助于情感反应的具体组成部分。

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