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首页> 外文期刊>Vision Research: An International Journal in Visual Science >The efficiency of depth discrimination for non-transparent and transparent stereoscopic surfaces.
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The efficiency of depth discrimination for non-transparent and transparent stereoscopic surfaces.

机译:非透明和透明立体表面的深度判别效率。

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摘要

The perception of transparency in binocular vision presents a challenge for any model of stereopsis. We investigate here how well human observers cope with stereo transparency by comparing their efficiency between transparent and opaque depth judgments. In two experiments, the efficiency measure was computed relative to an ideal observer to take into account the larger correspondence ambiguity in the transparent condition. We found that thresholds for human and ideal observers were consistently higher in the transparent condition than in the opaque condition, across a range of dot densities (Experiment 1) and disparity ratios (Experiment 2). Efficiencies (the ratio of human to ideal performance) were approximately equivalent for the opaque and transparent conditions across all stimulus conditions. Therefore, the cost for stereoscopic transparency can be accounted for by the greater correspondence problem in that condition. Indeed, the fact that efficiencies were very low, around 1%, and decreased with increasing dot density demonstrates that human observers use far less information than is available to perform the task. This account contrasts with previous interpretations for the cost in stereoscopic transparency in terms of inhibitory interactions specific to transparent configurations. We relate our findings to a previous and comparable study of motion efficiency, and discuss our findings in terms of a physiologically plausible model.
机译:双目视觉的透明感对任何立体视模型都提出了挑战。我们在这里通过比较透明和不透明深度判断的效率来研究人类观察者如何很好地应对立体透明度。在两个实验中,相对于理想观察者计算了效率度量,以考虑透明条件下较大的对应歧义。我们发现,在一系列点密度(实验1)和视差比(实验2)中,透明条件下人类和理想观察者的阈值始终高于不透明条件下的阈值。在所有刺激条件下,不透明和透明条件的效率(人与理想性能的比率)大致相等。因此,在那种情况下更大的对应性问题可以解决立体透明性的成本。实际上,效率非常低,大约为1%,并且随着点密度的增加而降低,这一事实表明,人类观察者使用的信息远远少于执行任务所需的信息。该解释与先前对立体透明的成本的解释相反,立体透明的成本是针对透明构造的抑制性相互作用。我们将我们的发现与以前和可比较的运动效率研究联系起来,并根据生理上合理的模型讨论我们的发现。

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