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幻觉光驱动灵长类动物的瞳孔反应。

Illusory light drives pupil responses in primates.

机构信息

Université de Toulouse, Centre de Recherche Cerveau et Cognition, Toulouse, France.

Centre National de la Recherche Scientifique, Toulouse, France.

出版信息

J Vis. 2024 Jul 2;24(7):14. doi: 10.1167/jov.24.7.14.

Abstract

In humans, the eye pupils respond to both physical light sensed by the retina and mental representations of light produced by the brain. Notably, our pupils constrict when a visual stimulus is illusorily perceived brighter, even if retinal illumination is constant. However, it remains unclear whether such perceptual penetrability of pupil responses is an epiphenomenon unique to humans or whether it represents an adaptive mechanism shared with other animals to anticipate variations in retinal illumination between successive eye fixations. To address this issue, we measured the pupil responses of both humans and macaque monkeys exposed to three chromatic versions (cyan, magenta, and yellow) of the Asahi brightness illusion. We found that the stimuli illusorily perceived brighter or darker trigger differential pupil responses that are very similar in macaques and human participants. Additionally, we show that this phenomenon exhibits an analogous cyan bias in both primate species. Beyond evincing the macaque monkey as a relevant model to study the perceptual penetrability of pupil responses, our results suggest that this phenomenon is tuned to ecological conditions because the exposure to a "bright cyan-bluish sky" may be associated with increased risks of dazzle and retinal damages.

摘要

在人类中,眼睛瞳孔会对视网膜感知到的物理光和大脑产生的光的心理表象做出反应。值得注意的是,即使视网膜照明保持不变,当视觉刺激被错觉感知为更亮时,我们的瞳孔会收缩。然而,目前尚不清楚这种瞳孔反应的感知渗透性是人类特有的现象,还是代表了与其他动物共享的一种适应机制,以预测连续眼注视之间视网膜照明的变化。为了解决这个问题,我们测量了暴露在三种颜色(青色、品红色和黄色)朝日亮度错觉下的人类和猕猴的瞳孔反应。我们发现,被错觉感知为更亮或更暗的刺激会引发非常相似的瞳孔反应,无论是在猕猴还是人类参与者中。此外,我们还表明,这种现象在两种灵长类动物中都表现出类似的青色偏差。除了证明猕猴是研究瞳孔反应感知渗透性的相关模型外,我们的结果还表明,这种现象是针对生态条件进行调整的,因为暴露在“明亮的青蓝色天空”下可能与眩光和视网膜损伤的风险增加有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c61/11271809/caae0434da33/jovi-24-7-14-f001.jpg

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