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The independence of channels in human vision selective for direction of movement.

机译:人类视觉中通道的独立性对运动方向具有选择性。

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摘要

1. Human visual selectivity for direction of movement was determined using a subthreshold summation technique. 2. The threshold contrast for detecting a drifting sinusoidal grating was found to be independent of the contrast of an added subthreshold grating which moved in the opposite direction. 3. The detection threshold for a counterphase flickering grating is twice that for a moving grating, suggesting that the visual system analyses a counterphase grating as the sum of two half-contrast gratings which move in opposite directions. 4. Threshold for a counterphase grating may be linearly reduced by the addition of subthreshold background gratings drifting in either direction. Additivity between counterphase grating and moving background is complete. 5. After adaptation to a drifting grating, the behaviour of counterphase detection threshold as a function of the contrast of a moving subthreshold background depends upon the direction of background movement. When the background moves in a direction opposite that of the adaptation stimulus, complete linear additivity results. When the background moves in the same direction as the adapting grating, counterphase threshold is constant for low background contrasts, but drops linearly for higher background contrasts. 6. The results support the hypothesis that directionally selective channels in human vision are independent contrast detectors. Counterphase gratings are detected by one or the other of these direction-specific mechanisms, whichever is momentarily the more sensitive.
机译:1.使用亚阈值求和技术确定了人类对运动方向的视觉选择性。 2.发现用于检测漂移正弦光栅的阈值对比度与添加的沿相反方向移动的亚阈值光栅的对比度无关。 3.反相闪烁光栅的检测阈值是移动光栅的检测阈值的两倍,这表明视觉系统将反相光栅分析为两个沿相反方向移动的半对比度光栅之和。 4.通过添加沿任一方向漂移的亚阈值背景光栅,可以线性降低反相光栅的阈值。反相光栅​​与运动背景之间的可加性完成。 5.适应漂移光栅后,根据运动的亚阈值背景的对比度,反相检测阈值的行为取决于背景运动的方向。当背景沿与适应刺激相反的方向移动时,将导致完全线性相加。当背景沿与自适应光栅相同的方向移动时,对于较低的背景对比度,反相阈值是恒定的,而对于较高的背景对比度则线性下降。 6.结果支持这样的假设,即人类视觉中的方向选择性通道是独立的对比度检测器。反相光栅​​是通过这些方向特定的机制中的一个或另一个来检测的,无论哪个瞬间都比较敏感。

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