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Search for gross illumination discrepancies in images of natural objects

机译:搜索自然物体图像中的总照度差异

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Shadows may be “discounted” in human visual perception because they do not provide stable, lighting-invariant, information about the properties of objects in the environment. Using visual search, R. A. Rensink and P. Cavanagh (2004) found that search for an upright discrepant shadow was less efficient than for an inverted one. Here we replicate and extend this work using photographs of real objects (pebbles) and their shadows. The orientation of the target shadows was varied between 30 and 180°. Stimuli were presented upright (light from above, the usual situation in the world) or inverted ( light from below, unnatural lighting). RTs for upright images were slower for shadows angled at 30°, exactly as found by Rensink and Cavanagh. However, for all other shadow angles tested, the RTs were faster for upright images. This suggests, for small discrepancies in shadow orientation, a switch of processing from a relatively coarse-scaled shadow system to other general-purpose visual routines. Manipulations of the visual heterogeneity of the pebbles that cast the shadows differentially influenced performance. For inverted images, heterogeneity had the expected influence: reducing search efficiency and increasing overall search time. This effect was greatly reduced when images were presented upright, presumably when the distractors were processed as shadows. We suggest that shadows may be processed in a functionally separate, spatially coarse, mechanism. The pattern of results suggests that human vision does not use a shadow-suppressing system in search tasks.
机译:在人类的视觉感知中,阴影可能会“折价”,因为它们无法提供有关环境中对象属性的稳定的,不变光照的信息。 R. A. Rensink和P. Cavanagh(2004)使用视觉搜索发现,搜索直立的差异阴影要比搜索反向阴影的效率低。在这里,我们使用真实物体(卵石)及其阴影的照片来复制和扩展这项工作。目标阴影的方向在30至180°之间变化。刺激呈直立状态(从上方发出的光,这是世界上通常的情况),或者呈倒置状态(从下方发出的光,不自然的照明)。正像Rensink和Cavanagh所发现的,对于30度成角度的阴影,直立图像的RT较慢。但是,对于所有其他测试的阴影角度,对于直立图像,RT更快。这表明,对于阴影方向上的微小差异,应将处理从相对粗略的阴影系统切换到其他通用视觉例程。卵石的视觉异质性的操作会产生阴影,对性能产生不同的影响。对于倒置图像,异质性具有预期的影响:降低搜索效率并增加总体搜索时间。当图像竖直放置时,大概是在将干扰物处理为阴影时,这种效果大大降低了。我们建议可以在功能上分开的,空间上粗糙的机制中处理阴影。结果的模式表明,人类视觉在搜索任务中没有使用阴影抑制系统。

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