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Partitioning Contrast or Luminance Disparity into Perceived Intensity and Rotation

机译:将对比度或亮度差异划分为感知的强度和旋转

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摘要

While most of the work on stereopsis focuses on geometric disparities, humans also respond to intensity (contrast or luminance) disparities in the absence of geometric disparities. A rectangular-wave grating viewed with an intensity disparity engenders two perceptions: a perceived intensity, and a perceived rotation of the individual bars of the grating (the Venetian blind effect). Measuring perceived intensity and perceived rotation in gratings with intensity disparities, we found that the two degrees of freedom from the intensities presented to each eye are conserved in the form of two perceptions: perceived intensity is related to the sum of the grating intensities and perceived rotation is related to the difference. Perceived rotation as a function of intensity disparity was then modeled as a simple difference in the neural response of each eye. Perceived contrast and brightness as a function of intensity disparity were modeled using the two-stage gain-control model.
机译:尽管关于立体视的大多数工作都集中在几何差异上,但是在没有几何差异的情况下,人类也会对强度(对比度或亮度)差异做出反应。观察到具有强度差异的矩形波光栅会产生两种感觉:感知到的强度和光栅各个条的感知到的旋转(百叶帘效应)。测量具有强度差异的光栅中的感知强度和感知旋转,我们发现从呈现给每只眼睛的强度得到的两个自由度以两种感知的形式得以保留:感知强度与光栅强度和感知旋转的总和相关与差异有关。然后将感知到的旋转作为强度差异的函数,建模为每只眼睛神经反应的简单差异。使用两级增益控制模型对感知到的对比度和亮度作为强度差异的函数进行建模。

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