Kingdom F A, Simmons D R, Rainville S
McGill Vision Research Unit, Montréal, Québec, Canada.
Vision Res. 1999 Jun;39(12):2127-41. doi: 10.1016/s0042-6989(98)00257-0.
We have investigated the apparent collapse of stereopsis obtained with random-dot-stereograms at isoluminance. Contrast thresholds for both depth and form discrimination of targets in random-dot- and figural stereograms were measured at a number of disparitics, using both isoluminant and isochromatic stimuli. All contrast thresholds for stereoscopic tasks were normalised to contrast thresholds for detecting the appropriate stimulus. We found that at isoluminance contrast thresholds for depth judgements were not higher for random-dot compared to figural stereograms, even when normalised to the same thresholds obtained with isochromatic stimuli. On the other hand contrast thresholds for three-dimensional form judgements were much higher than those for depth judgements in isoluminant, compared to isochromatic random-dot-stereograms. This specific impairment of stereoscopic form (as opposed to depth) processing at isoluminance was confirmed in a further experiment in which subjects were required to judge the presence and orientation of depth corrugations in a disparity-modulated random-dot-stereogram.
我们研究了在等亮度条件下用随机点立体图获得的立体视觉明显衰退的情况。使用等亮度和等色刺激,在多个视差条件下测量了随机点立体图和图形立体图中目标深度和形状辨别的对比度阈值。将所有立体视觉任务的对比度阈值归一化为检测适当刺激的对比度阈值。我们发现,在等亮度条件下,即使将随机点立体图的深度判断对比度阈值归一化为与等色刺激获得的相同阈值,与图形立体图相比也不会更高。另一方面,与等色随机点立体图相比,在等亮度条件下三维形状判断的对比度阈值比深度判断的对比度阈值高得多。在进一步的实验中证实了等亮度条件下立体形状(与深度相对)处理的这种特定损伤,在该实验中,要求受试者判断视差调制随机点立体图中深度波纹的存在和方向。