运动视差判断的深度作为一个函数的方向和类型的头部运动。

M J Steinbach, H Ono, M E Wolf
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引用次数: 24

摘要

我们比较了旋转或平移头部(水平或垂直)对运动视差产生的深度感知的相对有效性。使用罗杰斯和格雷厄姆(1979)的范例,我们将屏幕上随机点的运动与头部的运动联系起来,模拟波纹表面。在两个实验中,受试者忽略了在显示器上看到的明显深度或运动。无论头部是平移还是旋转,水平的头部运动都能产生最精确的深度判断。运动阈值高于深度阈值,且与头部运动方向无关。在第三个实验中,使用了模拟不同深度的超阈刺激,受试者对深度的感知在所有类型和方向的头部运动中几乎是相同的。在我们的刺激情境中,垂直或水平旋转或平移头部都会产生同样有效的深度运动视差提示。我们的研究结果还表明,在一定范围内,来自头部运动的视网膜图像运动被转换为深度信号,在该范围以上,位置恒定被打破,运动被看到。
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Motion parallax judgements of depth as a function of the direction and type of head movement.

We compared the relative effectiveness of rotating or translating the head, either horizontally or vertically, on the perception of depth resulting from motion parallax. Using Rogers and Graham's (1979) paradigm, we yoked the movement of random dots on a screen to movements of the head, simulating a corrugated surface. In two experiments, subjects nulled the apparent depth or motion seen in the display. Horizontal head movements yielded the most precise depth judgements, irrespective of whether the head translated or rotated. Motion thresholds were higher than those for depth and were independent of direction of head movement. In a third experiment, suprathreshold stimuli that simulated differing amounts of depth were used, and the subjects' perception of depth was virtually the same for all types and directions of head movement. In our stimulus situation, rotating or translating the head either vertically or horizontally produced motion parallax cues for depth that were equally effective. Our results also showed that, within a range, retinal image motion from head movement is converted into a depth signal and that above that range location constancy breaks down and motion is seen.

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