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破碎与飞溅:材料的机械性能和光学性能对软硬易碎材料感知的影响

Shatter and splatter: The contribution of mechanical and optical properties to the perception of soft and hard breaking materials.

作者信息

Schmid Alexandra C, Doerschner Katja

机构信息

Department of Psychology, Justus-Liebig-University, Giessen, Germany.

出版信息

J Vis. 2018 Jan 1;18(1):14. doi: 10.1167/18.1.14.

DOI:10.1167/18.1.14
PMID:29362807
Abstract

Research on the visual perception of materials has mostly focused on the surface qualities of rigid objects. The perception of substance like materials is less explored. Here, we investigated the contribution of, and interaction between, surface optics and mechanical properties to the perception of nonrigid, breaking materials. We created novel animations of materials ranging from soft to hard bodies that broke apart differently when dropped. In Experiment 1, animations were rendered as point-light movies varying in dot density, as well as "full-cue" optical versions ranging from translucent glossy to opaque matte under a natural illumination field. Observers used a scale to rate each substance on different attributes. In Experiment 2 we investigated how much shape contributed to ratings of the full-cue stimuli in Experiment 1, by comparing ratings when observers were shown movies versus one frame of the animation. The results showed that optical and mechanical properties had an interactive effect on ratings of several material attributes. We also found that motion and static cues each provided a lot of information about the material qualities; however, when combined, they influenced observers' ratings interactively. For example, in some conditions, motion dominated over optical information; in other conditions, it enhanced the effect of optics. Our results suggest that rating multiple attributes is an effective way to measure underlying perceptual differences between nonrigid breaking materials, and this study is the first to our knowledge to show interactions between optical and mechanical properties in a task involving judgments of perceptual qualities.

摘要

关于材料视觉感知的研究大多集中在刚性物体的表面特性上。对于类似物质的材料的感知研究较少。在此,我们研究了表面光学特性和机械性能对非刚性易碎材料感知的贡献及其相互作用。我们创建了从软体到刚体的新型材料动画,这些材料在掉落时会以不同方式破碎。在实验1中,动画被渲染为点密度不同的点光电影,以及在自然光照场下从半透明光泽到不透明哑光的“全线索”光学版本。观察者使用量表对每种物质的不同属性进行评分。在实验2中,我们通过比较观察者观看电影与动画的一帧时的评分,研究了形状对实验1中全线索刺激评分的贡献程度。结果表明,光学特性和机械性能对几种材料属性的评分有交互作用。我们还发现,动态线索和静态线索都提供了大量有关材料质量的信息;然而,当两者结合时,它们会交互影响观察者的评分。例如,在某些情况下,动态线索比光学信息更具主导性;在其他情况下,它会增强光学效果。我们的结果表明,对多种属性进行评分是衡量非刚性易碎材料潜在感知差异的有效方法,据我们所知,本研究首次展示了在涉及感知质量判断的任务中光学特性和机械性能之间的相互作用。

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