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动态瞳孔交流涉及编码社会显著性的脑区。

Dynamic pupillary exchange engages brain regions encoding social salience.

作者信息

Harrison Neil A, Gray Marcus A, Critchley Hugo D

机构信息

University College London, London, UK.

出版信息

Soc Neurosci. 2009;4(3):233-43. doi: 10.1080/17470910802553508. Epub 2008 Dec 1.

Abstract

Covert exchange of autonomic responses may shape social affective behavior, as observed in mirroring of pupillary responses during sadness processing. We examined how, independent of facial emotional expression, dynamic coherence between one's own and another's pupil size modulates regional brain activity. Fourteen subjects viewed pairs of eye stimuli while undergoing fMRI. Using continuous pupillometry biofeedback, the size of the observed pupils was varied, correlating positively or negatively with changes in participants' own pupils. Viewing both static and dynamic stimuli activated right fusiform gyrus. Observing dynamically changing pupils activated STS and amygdala, regions engaged by non-static and salient facial features. Discordance between observed and observer's pupillary changes enhanced activity within bilateral anterior insula, left amygdala and anterior cingulate. In contrast, processing positively correlated pupils enhanced activity within left frontal operculum. Our findings suggest pupillary signals are monitored continuously during social interactions and that incongruent changes activate brain regions involved in tracking motivational salience and attentionally meaningful information. Naturalistically, dynamic coherence in pupillary change follows fluctuations in ambient light. Correspondingly, in social contexts discordant pupil response is likely to reflect divergence of dispositional state. Our data provide empirical evidence for an autonomically mediated extension of forward models of motor control into social interaction.

摘要

自主反应的隐蔽交流可能会塑造社会情感行为,正如在悲伤情绪处理过程中瞳孔反应的镜像现象中所观察到的那样。我们研究了在不考虑面部表情的情况下,自身与他人瞳孔大小之间的动态一致性如何调节大脑区域活动。14名受试者在接受功能磁共振成像(fMRI)时观看成对的眼部刺激。使用连续瞳孔测量生物反馈,观察到的瞳孔大小发生变化,与参与者自身瞳孔的变化呈正相关或负相关。观看静态和动态刺激均激活了右侧梭状回。观察动态变化的瞳孔激活了颞上沟(STS)和杏仁核,这些区域参与处理非静态和显著的面部特征。观察到的瞳孔变化与观察者瞳孔变化之间的不一致增强了双侧前脑岛、左侧杏仁核和前扣带回的活动。相反,处理正相关的瞳孔增强了左侧额下回的活动。我们的研究结果表明,在社交互动过程中会持续监测瞳孔信号,不一致的变化会激活参与追踪动机显著性和注意力有意义信息的脑区。自然情况下,瞳孔变化的动态一致性会随着环境光的波动而变化。相应地,在社交情境中,不一致的瞳孔反应可能反映了性格状态的差异。我们的数据为运动控制前向模型在自主介导下扩展到社会互动提供了实证证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e2c/2913324/92c1f8ffea5a/psns4-233_f1.jpg

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