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瞳孔直径追踪环境中的统计结构以提高视觉敏感性。

Pupil Diameter Tracks Statistical Structure in the Environment to Increase Visual Sensitivity.

机构信息

Neural Circuits and Cognition Lab, European Neuroscience Institute Göttingen-A Joint Initiative of the University Medical Center Göttingen and the Max Planck Society, 37077 Göttingen, Germany

Perception and Plasticity Group, German Primate Center, Leibniz Institute for Primate Research, 37077 Göttingen, Germany.

出版信息

J Neurosci. 2020 Jun 3;40(23):4565-4575. doi: 10.1523/JNEUROSCI.0216-20.2020. Epub 2020 May 5.

Abstract

Pupil diameter determines how much light hits the retina and, thus, how much information is available for visual processing. This is regulated by a brainstem reflex pathway. Here, we investigate whether this pathway is under the control of internal models about the environment. This would allow adjusting pupil dynamics to environmental statistics to augment information transmission. We present image sequences containing internal temporal structure to humans of either sex and male macaque monkeys. We then measure whether the pupil tracks this temporal structure not only at the rate of luminance variations, but also at the rate of statistics not available from luminance information alone. We find entrainment to environmental statistics in both species. This entrainment directly affects visual processing by increasing sensitivity at the environmentally relevant temporal frequency. Thus, pupil dynamics are matched to the temporal structure of the environment to optimize perception, in line with an active sensing account. When light hits the retina, the pupil reflexively constricts. This determines how much light and thus how much information is available for visual processing. We show that the rate at which the pupil constricts and dilates is matched to the temporal structure of our visual environment, although this information is not directly contained in the light variations that usually trigger reflexive pupil constrictions. Adjusting pupil diameter in accordance with environmental regularities optimizes information transmission at ecologically relevant temporal frequencies. We show that this is the case in humans and macaque monkeys, suggesting that the reflex pathways that regulate pupil diameter are under some degree of cognitive control across primate species.

摘要

瞳孔直径决定有多少光打到视网膜上,从而决定了有多少信息可用于视觉处理。这是由脑干反射通路调节的。在这里,我们研究了该通路是否受到环境内部模型的控制。这将允许调整瞳孔动力学以适应环境统计数据,从而增强信息传输。我们向人类和雄性猕猴呈现包含内部时间结构的图像序列。然后,我们测量瞳孔是否不仅以亮度变化的速率,而且以仅从亮度信息不可用的统计信息的速率来跟踪这种时间结构。我们在两种物种中都发现了对环境统计数据的同步。这种同步通过在与环境相关的时间频率上增加敏感性直接影响视觉处理。因此,瞳孔动力学与环境的时间结构相匹配,以优化感知,这与主动感知的解释一致。当光线照射到视网膜上时,瞳孔会反射性地收缩。这决定了有多少光以及有多少信息可用于视觉处理。我们表明,瞳孔收缩和扩张的速度与我们视觉环境的时间结构相匹配,尽管这些信息并不直接包含在通常触发反射性瞳孔收缩的光变化中。根据环境规律调整瞳孔直径可以优化在生态相关时间频率上的信息传输。我们表明,在人类和猕猴中都是如此,这表明调节瞳孔直径的反射通路在灵长类动物中受到一定程度的认知控制。

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