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漂移光栅的对比度检测与方向辨别

Contrast detection and direction discrimination of drifting gratings.

作者信息

Green M

出版信息

Vision Res. 1983;23(3):281-9. doi: 10.1016/0042-6989(83)90117-7.

Abstract

Observers performed simple detection and left/right discrimination of drifting sinusoidal gratings. Ratio of detection to discrimination sensitivities was measured under variations in several experimental parameters. In the first experiment, it was found that combinations of spatial and temporal frequency which resulted in the same velocity produced similar detection-discrimination ratios. At an exposure duration of 800 msec, the relationship between the ratio and velocity described a power function with the intercept at 0.6 sec-1. Decreasing duration shifted the curve to higher velocities. I examined the effect of grating orientation in a second experiment. Visual sensitivity was poorer for oblique than for vertical gratings with detection and discrimination exhibiting similar size anisotropies. In a third experiment, observers viewed gratings presented to different retinal loci. Visual performance in both detection and discrimination fell with greater eccentricity. However, motion discrimination fell more steeply resulting in an increase in the ratio. The results demonstrate that form and motion analyzing mechanisms cannot be distinguished by their response to changes of spatial frequency, orientation or retinal locus.

摘要

观察者对漂移的正弦光栅进行简单检测以及左右辨别。在几个实验参数变化的情况下,测量检测灵敏度与辨别灵敏度的比率。在第一个实验中,发现导致相同速度的空间频率和时间频率组合产生相似的检测 - 辨别比率。在800毫秒的曝光持续时间下,该比率与速度之间的关系描述为幂函数,其截距为0.6秒-1。持续时间的减少使曲线向更高速度移动。在第二个实验中,我研究了光栅方向的影响。对于倾斜光栅,视觉灵敏度比对垂直光栅差,检测和辨别表现出相似的大小各向异性。在第三个实验中,观察者观察呈现给不同视网膜位点的光栅。随着离心率增大,检测和辨别的视觉表现均下降。然而,运动辨别下降得更陡峭,导致比率增加。结果表明,形状和运动分析机制无法通过它们对空间频率、方向或视网膜位点变化的反应来区分。

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