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Pupil size and social vigilance in rhesus macaques

机译:猕猴的瞳孔大小和社会警惕

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Complex natural environments favor the dynamic alignment of neural processing between goal-relevant stimuli and conflicting but biologically salient stimuli like social competitors or predators. The biological mechanisms that regulate dynamic changes in vigilance have not been fully elucidated. Arousal systems that ready the body to respond adaptively to threat may contribute to dynamic regulation of vigilance. Under conditions of constant luminance, pupil diameter provides a peripheral index of arousal state. Although pupil size varies with the processing of goal-relevant stimuli, it remains unclear whether pupil size also predicts attention to biologically salient objects and events like social competitors, whose presence interferes with current goals. Here we show that pupil size in rhesus macaques both reflects the biological salience of task-irrelevant social distractors and predicts vigilance for these stimuli. We measured pupil size in monkeys performing a visual orienting task in which distractors—monkey faces and phase-scrambled versions of the same images—could appear in a congruent, incongruent, or neutral position relative to a rewarded target. Baseline pupil size under constant illumination predicted distractor interference, consistent with the hypothesis that pupil-linked arousal mechanisms regulate task engagement and distractibility. Notably, pupil size also predicted enhanced vigilance for social distractors, suggesting that pupil-linked arousal may adjust the balance of processing resources between goal-relevant and biologically important stimuli. The magnitude of pupil constriction in response to distractors closely tracked distractor interference, saccade planning and the social relevance of distractors, endorsing the idea that the pupillary light response is modulated by attention. These findings indicate that pupil size indexes dynamic changes in attention evoked by both the social environment and arousal.
机译:复杂的自然环境有利于在与目标相关的刺激和诸如社会竞争者或掠食者之类的相互冲突但具有生物学显着性的刺激之间进行神经处理的动态协调。调节警惕性动态变化的生物学机制尚未完全阐明。准备使机体对威胁做出适应性反应的唤醒系统可能有助于提高警惕性。在恒定亮度的条件下,瞳孔直径提供唤醒状态的周围指标。尽管瞳孔大小随目标相关刺激的处理而变化,但尚不清楚瞳孔大小是否也预示着对生物学上显着的物体和事件(如社会竞争者)的关注,这些事件和存在干扰了当前目标。在这里,我们显示猕猴的瞳孔大小既反映了与任务无关的社会干扰因素的生物学显着性,又预测了这些刺激的警惕性。我们测量了执行视觉定向任务的猴子的瞳孔大小,在这些任务中,相对于奖励目标,干扰物(猴子脸部和同一图像的相位混乱版本)可能出现在一致,不一致或中立的位置。在恒定光照下的基线瞳孔大小可预测干扰因素,这与与瞳孔相关的唤醒机制调节任务参与和干扰能力的假设相一致。值得注意的是,学生的大小也预示着对社交干扰者的警惕性提高,表明与学生相关的唤醒可能会调节与目标相关的刺激和生物学上重要的刺激之间的加工资源平衡。应对干扰物的瞳孔收缩幅度密切跟踪干扰物的干扰,扫视计划和干扰物的社会相关性,从而支持瞳孔光反应受注意力调节的观点。这些发现表明,学生的大小指数反映了社交环境和唤醒引起的注意力动态变化。

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