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非对称阴影的深度结构支持面孔辨别。

Depth structure from asymmetric shading supports face discrimination.

机构信息

Department of Psychology, National Taiwan University, Taipei, Taiwan.

出版信息

PLoS One. 2013;8(2):e55865. doi: 10.1371/journal.pone.0055865. Epub 2013 Feb 14.

Abstract

To examine the effect of illumination direction on the ability of observers to discriminate between faces, we manipulated the direction of illumination on scanned 3D face models. In order to dissociate the surface reflectance and illumination components of front-view face images, we introduce a symmetry algorithm that can separate the symmetric and asymmetric components of the face in both low and high spatial frequency bands. Based on this approach, hybrid faces stimuli were constructed with different combinations of symmetric and asymmetric spatial content. Discrimination results with these images showed that asymmetric illumination information biased face perception toward the structure of the shading component, while the symmetric illumination information had little, if any, effect. Measures of perceived depth showed that this property increased systematically with the asymmetric but not the symmetric low spatial frequency component. Together, these results suggest that (1) the asymmetric 3D shading information dramatically affects both the perceived facial information and the perceived depth of the facial structure; and (2) these effects both increase as the illumination direction is shifted to the side. Thus, our results support the hypothesis that face processing has a strong 3D component.

摘要

为了研究光照方向对面孔识别能力的影响,我们对面部的三维扫描模型进行了光照方向的操作。为了分离正面人脸图像的表面反射和光照成分,我们引入了一种对称算法,该算法可以分离低频和高频带宽中人脸的对称和非对称成分。基于这种方法,构建了具有不同对称和非对称空间内容组合的混合人脸刺激。对这些图像的识别结果表明,非对称光照信息会使面孔感知偏向阴影成分的结构,而对称光照信息的影响很小。感知深度的测量结果表明,这种特性随着非对称但不是对称的低频空间成分而系统地增加。总之,这些结果表明:(1)非对称的 3D 阴影信息极大地影响了感知到的面部信息和面部结构的感知深度;(2)这些影响随着光照方向向侧面的偏移而增加。因此,我们的结果支持这样一种假设,即面部处理具有很强的三维成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f43/3573058/21852a021b91/pone.0055865.g001.jpg

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