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Blur discrimination and its relation to blur-mediated depth perception

机译:模糊识别及其与模糊介导的深度感知的关系

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摘要

Retinal images of three-dimensional scenes often contain regions that are spatially blurred by different amounts, owing to depth variation in the scene and depth-of-focus limitations in the eye. Variations in blur between regions in the retinal image therefore offer a cue to their relative physical depths. In the first experiment we investigated apparent depth ordering in images containing two regions of random texture separated by a vertical sinusoidal border. The texture was sharp on one side of the border, and blurred on the other side. In some presentations the border itself was also blurred. Results showed that blur variation alone is sufficient to determine the apparent depth ordering. A subsequent series of experiments measured blur-discrimination thresholds with stimuli similar to those used in the depth-ordering experiment. Weber fractions for blur discrimination ranged from 0.28 to 0.56. It is concluded that the utility of blur variation as a depth cue is constrained by the relatively mediocre ability of observers to discriminate different levels of blur. Blur is best viewed as a relatively coarse, qualitative depth cue.
机译:由于场景中的深度变化和眼睛的景深限制,三维场景的视网膜图像通常包含在空间上被不同数量模糊的区域。因此,视网膜图像区域之间的模糊变化为它们的相对物理深度提供了提示。在第一个实验中,我们研究了图像的明显深度排序,该图像包含两个由垂直正弦曲线边界分隔的随机纹理区域。边框的一侧很明显,另一侧则很模糊。在某些演示中,边界本身也模糊了。结果表明,仅模糊变化足以确定表观深度顺序。随后的一系列实验使用与深度排序实验中使用的相似的刺激来测量模糊判别阈值。用于模糊鉴别的韦伯分数范围为0.28至0.56。结论是,模糊变化作为深度提示的用途受到观察者辨别不同级别模糊的相对中等能力的限制。最好将模糊视为相对粗糙,定性的深度提示。

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