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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Projected disparity, not horizontal disparity, predicts stereo depth of 1-D patterns.
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Projected disparity, not horizontal disparity, predicts stereo depth of 1-D patterns.

机译:投影视差而非水平视差可预测一维图案的立体深度。

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Binocular disparities have a straightforward geometric relation to object depth, but the computation that humans use to turn disparity signals into depth percepts is neither straightforward nor well understood. One seemingly solid result, which came out of Wheatstone's work in the 1830s, is that the sign and magnitude of horizontal disparity predict the perceived depth of an object: 'positive' horizontal disparities yield the perception of 'far' depth, 'negative' horizontal disparities yield the perception of 'near' depth, and variations in the magnitude of horizontal disparity monotonically increase or decrease the perceived extent of depth. Here we show that this classic link between horizontal disparity and the perception of 'near' versus 'far' breaks down when the stimuli are one-dimensional. For these stimuli, horizontal is not a privileged disparity direction. Instead of relying on horizontal disparities to determine their depth relative to that of two-dimensional stimuli, the visual system uses a disparity calculation that is non-veridical yet well suited to deal with the joint coding of disparity and orientation.
机译:双目视差与物体深度具有直接的几何关系,但是人们用于将视差信号转换为深度感知的计算既不简单也不容易理解。从惠斯通在1830年代的工作中得出的看似可靠的结果是,水平视差的符号和大小预测了物体的感知深度:“正”水平视差产生对“远”深度,“负”水平的感知视差会产生“接近”深度的感知,而水平视差大小的变化会单调增加或减小感知的深度范围。在这里,我们表明,当一维刺激时,水平差异与“近”对“远”的感知之间的经典联系破裂。对于这些刺激,水平方向不是特权差异方向。视觉系统不是依靠水平视差来确定其相对于二维刺激的深度,而是使用非垂直的视差计算,但非常适合处理视差和方向的联合编码。

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