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Spatial frequency-specific visual adaptation may cause paradoxical transient improvements in visual acuity: computer simulation and confirmatory experiments

机译:特定于空间频率的视觉适应可能导致视敏度矛盾的短暂改善:计算机模拟和验证性实验

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In the visual cortex of monkeys and humans, several types of processing are conducted, such as orientation-selective edge detection. It was also reported by Campbell and associates that the cerebral visual cortex conducts processing consisting of spatial-frequency-and-orientation-specific multiple narrow-band channels. It has also been reported that spatial-frequency-and-orientation-specific visual stimuli cause adaptations in the corresponding channels, resulting in reductions of the visual sensitivity around some frequency ranges. In the course of simulation studies using Landolt rings to measure visual acuity, we found that spatial-trequency-specific adaptations would cause paradoxical transient improvements in visual acuity. We therefore conducted perceptual experiments to sec if these improvements in visual acuity take place after spatial-frequency-specific visual adaptation, with positive results. These findings may be significant in designing road information boards for car drivers, because such an adaptation often occurs while driving a car.
机译:在猴子和人类的视觉皮层中,进行了几种类型的处理,例如方向选择性边缘检测。坎贝尔及其同事还报道说,大脑视觉皮层进行的处理包括特定于空间频率和方向的多个窄带通道。还已经报道,特定于空间频率和方向的视觉刺激引起相应通道中的适应,从而导致在某些频率范围内视觉灵敏度的降低。在使用Landolt环测量视敏度的模拟研究过程中,我们发现特定于空间频率的适应将导致视敏度的自相矛盾的短暂改善。因此,如果视敏度的这些改善发生在特定于空间频率的视觉适应之后,我们就进行了感知实验,获得了积极的结果。这些发现对于设计用于汽车驾驶员的道路信息板可能是重要的,因为这种适应通常在驾驶汽车时发生。

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