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The visual perception of length along intrinsically curved surfaces

机译:沿固有曲面的长度的视觉感知

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The ability of observers to perceive three-dimensional (3-D) distances or lengths along intrinsically curved surfaces was investigated in three experiments. Three physically curved surfaces were used: convex and/or concave hemispheres (Experiments 1 and 3) and a hyperbolic paraboloid (Experiment 2). The first two experiments employed a visual length-matching task, but in the final experiment the observers estimated the surface lengths motorically by varying the separation between their two index fingers. In general, the observers' judgments of surface length in both tasks (perceptual vs. motoric matching) were very precise but were not necessarily accurate. Large individual differences (overestimation, underestimation, etc.) in the perception of length occurred. There were also significant effects of viewing distance, type of surface, and orientation of the spatial intervals on the observers' judgments of surface length. The individual differences and failures of perceptual constancy that were obtained indicate that there is no single relationship between physical and perceived distances on 3-D surfaces that is consistent across observers.
机译:在三个实验中研究了观察者感知本征曲面的三维(3-D)距离或长度的能力。使用了三个物理弯曲的表面:凸和/或凹半球(实验1和3)和双曲线抛物面(实验2)。前两个实验采用视觉上的长度匹配任务,但在最后一个实验中,观察者通过改变两个食指之间的间距来动态估算表面长度。通常,观察者在两个任务(感性对运动匹配)中对表面长度的判断非常精确,但不一定准确。在长度感方面,个体差异很大(高估,低估等)。观察距离,表面类型和空间间隔的方向对观察者对表面长度的判断也有重大影响。获得的个体差异和感知稳定性的失败表明,在3-D表面上的物理距离与感知距离之间没有在观察者之间一致的单一关系。

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