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隧道运动:瞳孔对幻象暗洞中光流的扩张。

Tunnel motion: Pupil dilations to optic flow within illusory dark holes.

机构信息

University of Oslo, Norway; RITMO Centre for Interdisciplinary Studies in Rhythm, Time and Motion, University of Oslo, Norway.

University of Oslo, Norway; University of Sussex, UK.

出版信息

Perception. 2024 Oct;53(10):730-745. doi: 10.1177/03010066241270493. Epub 2024 Aug 28.

Abstract

We showed to the same observers both dynamic and static 2D patterns that can both evoke distinctive perceptions of motion or optic flow, as if moving in a tunnel or into a dark hole. At all times pupil diameters were monitored with an infrared eye tracker. We found a converging set of results indicating stronger pupil dilations to expansive growth of shapes or optic flows evoking a forward motion into a dark tunnel. Multiple regression analyses showed that the pupil responses to the illusory expanding black holes of static patterns were predicted by the individuals' pupil response to optic flows showing spiraling motion or "free fall" into a black hole. Also, individuals' pupil responses to spiraling motion into dark tunnels predicted the individuals' sense of illusory expansion with the static, illusory expanding, dark holes. This correspondence across individuals between their pupil responses to both dynamic and static, illusory expanding, holes suggests that these percepts reflect a common perceptual mechanism, deriving motion from 2D scenes, and that the observers' pupil adjustments reflect the direction and strength of motion they perceive and the expected outcome of an increase in darkness.

摘要

我们向同一批观察者展示了动态和静态的 2D 模式,这些模式都可以引起明显的运动或光流感知,就像在隧道中或进入黑洞中移动一样。在任何时候,我们都使用红外眼动追踪器监测瞳孔直径。我们发现了一系列趋同的结果,表明对于形状或光流的扩展增长,瞳孔扩张更强,这些增长会引起向前运动进入黑暗的隧道。多元回归分析表明,静态模式中虚幻的膨胀黑洞引起的瞳孔反应可以通过个体对显示螺旋运动或“自由落体”进入黑洞的光流的瞳孔反应来预测。此外,个体对进入黑暗隧道的螺旋运动的瞳孔反应可以预测个体对静态、虚幻的膨胀、黑洞的虚幻扩张感。这种个体在对动态和静态、虚幻的膨胀、黑洞的瞳孔反应之间的对应关系表明,这些感知反映了一种共同的感知机制,即从 2D 场景中获取运动,并且观察者的瞳孔调整反映了他们感知到的运动的方向和强度以及黑暗程度增加的预期结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/721a/11451077/32b07dee1dca/10.1177_03010066241270493-fig1.jpg

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