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材料特性对三维物体感知形状的影响。

The Effect of Material Properties on the Perceived Shape of Three-Dimensional Objects.

作者信息

Ohara Masakazu, Kim Juno, Koida Kowa

机构信息

Department of Computer Science and Engineering, Toyohashi University of Technology, Toyohashi, Japan.

Sensory Processes Research Laboratory, School of Optometry and Vision Science, University of New South Wales, Sydney, Australia.

出版信息

Iperception. 2020 Dec 26;11(6):2041669520982317. doi: 10.1177/2041669520982317. eCollection 2020 Nov-Dec.

Abstract

Perceiving the shape of three-dimensional objects is essential for interacting with them in daily life. If objects are constructed from different materials, can the human visual system accurately estimate their three-dimensional shape? We varied the thickness, motion, opacity, and specularity of globally convex objects rendered in a photorealistic environment. These objects were presented under either dynamic or static viewing condition. Observers rated the overall convexity of these objects along the depth axis. Our results show that observers perceived solid transparent objects as flatter than the same objects rendered with opaque reflectance properties. Regional variation in local root-mean-square image contrast was shown to provide information that is predictive of perceived surface convexity.

摘要

感知三维物体的形状对于在日常生活中与它们进行交互至关重要。如果物体由不同材料构成,人类视觉系统能否准确估计其三维形状?我们改变了在逼真环境中渲染的全局凸面物体的厚度、运动、不透明度和镜面反射率。这些物体在动态或静态观察条件下呈现。观察者对这些物体沿深度轴的整体凸度进行评分。我们的结果表明,观察者认为实心透明物体比具有不透明反射特性的相同物体更扁平。局部均方根图像对比度的区域变化被证明提供了可预测感知表面凸度的信息。

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