首页> 外文期刊>Frontiers in Human Neuroscience >Real-Time Eye-to-Eye Contact Is Associated With Cross-Brain Neural Coupling in Angular Gyrus
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Real-Time Eye-to-Eye Contact Is Associated With Cross-Brain Neural Coupling in Angular Gyrus

机译:实时的眼睛对眼接触与角度转象中的跨脑神经耦合有关

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Direct eye contact between two individuals is a salient social behavior known to initiate and promote interpersonal interaction. However, the neural processes that underlie these live interactive behaviors and eye-to-eye contact are not well understood. The Dynamic Neural Coupling Hypothesis presents a general theoretical framework proposing that shared interactive behaviors are represented by cross-brain signal coherence. Using functional near-infrared spectroscopy (fNIRS) adapted for hyper scanning, we tested this hypothesis specifically for neural mechanisms associated with eye-to-eye gaze between human participants compared to similar direct eye-gaze at a dynamic video of a face and predicted that the coherence of neural signals between the two participants during reciprocal eye-to-eye contact would be greater than coherence observed during direct eye-gaze at a dynamic video for those signals originating in social and face processing systems. Consistent with this prediction cross-brain coherence was increased for signals within the angular gyrus (AG) during eye-to-eye contact relative to direct eye-gaze at a dynamic face video ( p & 0.01). Further, activity in the right temporal-parietal junction (TPJ) was increased in the real eye-to-eye condition ( p & 0.05, FDR corrected). Together, these findings advance a functional and mechanistic understanding of the AG and cross-brain neural coupling associated with real-time eye-to-eye contact.
机译:两个人之间的直接目光接触是已知发起和促进人际关系的突出的社会行为。然而,基于这些现场互动行为和眼睛接触的神经过程并不充分了解。动态神经耦合假设提出了一种普遍的理论框架,提出共享的交互行为由跨脑信号相干表示。使用适用于超扫描的功能近红外光谱(FNIR),我们测试了该假设,具体用于与人类参与者之间与人类参与者之间的眼睛凝视相关联的神经机制,与相似的直视凝视在脸部的动态视频中,并预测在往复眼睛接触期间两位参与者之间的神经信号之间的连贯性将大于在动态视频中观察到的动态视频,用于源自社交和面部处理系统的那些信号。对于在动态面部视频的直接眼睛凝视(P <0.01)中,在眼睛对角接触期间的角度触发期间的信号(AG)内的信号(AG)内的信号(P <0.01)的直接眼睛凝视,增加了与这种预测的横脑相干性的一致性增加。此外,在真正的眼睛对眼条件下增加了右颞旁角交界处(TPJ)的活性(P <0.05,FDR校正)。这些发现在一起推进了与实时眼睛接触相关的AG和跨脑神经耦合的功能和机械理解。

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