Department of Psychology, University of Hong Kong, Hong Kong.
J Exp Psychol Hum Percept Perform. 2013 Aug;39(4):1193-204. doi: 10.1037/a0030837. Epub 2012 Dec 31.
We tested whether the presence of symmetry improves shape discrimination across changes in viewpoint and lighting for smoothly curved 3D objects. We constructed symmetric and asymmetric versions of random 3D shapes by manipulating their spherical harmonic representations. Matched objects had the same power spectra and appear highly similar except for the presence of symmetry. Observers discriminated sequentially presented pairs of either symmetric or asymmetric objects. Objects were presented in conditions that provided different 3D cues: shading only, stereo only, and combined shading and stereo. To control for 2D cues, standard and test objects had matched boundary contours and were rendered with different light sources. Test objects were also rotated in depth by variable amounts (0° to 60°). Across all viewpoint and 3D cue conditions, we found that shape discrimination for symmetric objects was better than for asymmetric objects. The symmetry benefit was not limited to monocular viewing or to conditions with large rotations in depth. In a second experiment, we blocked trials by viewpoint rotation to eliminate uncertainty in object orientation. This improved performance for asymmetric objects relative to symmetric objects, suggesting that symmetry contributes by providing a cue to object orientation. However, a symmetry advantage was still observed in all shape cue conditions, so this was not the sole source of benefit. Our results demonstrate that symmetry improves shape constancy for smooth 3D objects and suggest that one role of symmetry is to provide a reference orientation for an object.
我们测试了在视角和光照变化下,对称的存在是否会改善对平滑弯曲的 3D 对象的形状辨别。我们通过操纵它们的球谐表示来构造对称和非对称的随机 3D 形状。匹配的物体具有相同的功率谱,除了对称的存在之外,它们看起来非常相似。观察者依次辨别成对的对称或非对称物体。物体在不同的 3D 线索条件下呈现:仅阴影、仅立体、以及阴影和立体的组合。为了控制 2D 线索,标准和测试物体具有匹配的边界轮廓,并使用不同的光源进行渲染。测试物体还以不同的深度旋转(0°到 60°)。在所有视角和 3D 线索条件下,我们发现对称物体的形状辨别优于非对称物体。对称的优势不仅限于单眼观察或深度旋转较大的条件。在第二个实验中,我们通过视角旋转来阻止试验,以消除对象方向的不确定性。这相对于对称物体提高了非对称物体的性能,表明对称通过提供对象方向的线索来做出贡献。然而,在所有形状线索条件下仍然观察到对称优势,因此这不是唯一的受益来源。我们的结果表明,对称可以提高光滑 3D 对象的形状恒常性,并表明对称的一个作用是为对象提供参考方向。