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光学材料特性会影响对非刚性旋转物体变形的检测,但影响很小。

Optical material properties affect detection of deformation of non-rigid rotating objects, but only slightly.

作者信息

van Zuijlen Mitchell J P, Yang Yung-Hao, van Assen Jan Jaap R, Nishida Shin'ya

机构信息

Cognitive Informatics Lab, Graduate School of Informatics, Kyoto University, Kyoto, Japan.

https://mitchellvanzuijlen.github.io

出版信息

J Vis. 2025 May 1;25(6):6. doi: 10.1167/jov.25.6.6.

Abstract

Although rigid three-dimensional (3D) motion perception has been extensively studied, the visual detection of non-rigid 3D motion remains underexplored, particularly with regard to its interactions with material perception. In natural environments with various materials, image movements produced by geometry-dependent optical effects, such as diffuse shadings, specular highlights, and transparent glitters, impose computational challenges for accurately perceiving object deformation. This study examines how optical material properties influence human perception of non-rigid deformations. In a two-interval forced choice task, observers were shown a pair of rigid and non-rigid objects and asked to select the one that appeared more deformed. The object deformation varied across six intensity levels, and the stimuli included four materials (dotted matte, glossy, mirror, and transparent). We found that the material has only a small effect on deformation detection, with the threshold being slightly higher for transparent than other materials. The results remained the same regardless of the viewing angles, light field conditions (Experiment 1), and the deformation type (Experiment 2). These results show the robust capacity of the human visual system to perceive non-rigid object motion in complex natural visual environments.

摘要

尽管刚性三维(3D)运动感知已得到广泛研究,但非刚性3D运动的视觉检测仍未得到充分探索,尤其是在其与材质感知的相互作用方面。在包含各种材质的自然环境中,由依赖几何的光学效应产生的图像运动,如漫反射阴影、镜面高光和透明闪烁,给准确感知物体变形带来了计算挑战。本研究考察了光学材质属性如何影响人类对非刚性变形的感知。在一个二间隔迫选任务中,向观察者展示一对刚性和非刚性物体,并要求他们选择看起来变形更明显的那个。物体变形在六个强度级别上变化,刺激物包括四种材质(点状哑光、光泽、镜面和透明)。我们发现材质对变形检测的影响很小,透明材质的阈值仅略高于其他材质。无论视角、光场条件(实验1)和变形类型(实验2)如何,结果均保持不变。这些结果表明,人类视觉系统在复杂自然视觉环境中感知非刚性物体运动的能力很强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7633/12080736/ba6e7ecec414/jovi-25-6-6-f001.jpg

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