Hudson Todd E, Matin Leonard, Li Wenxun
Clarence H. Graham Memorial Laboratory of Visual Science, Department of Psychology, Columbia University, New York, NY 10027, USA.
Proc Natl Acad Sci U S A. 2008 Nov 18;105(46):18006-11. doi: 10.1073/pnas.0807385105. Epub 2008 Nov 11.
Although horizontal binocular retinal disparity between images in the two eyes resulting from their different views of the world has long been the centerpiece for understanding the unique characteristics of stereovision, it does not suffice to explain many binocular phenomena. Binocular depth contrast (BDC), the induction of an appearance of visual pitch in a centrally located line by pitched-from-vertical flanking lines, has particularly been the subject of a good deal of attention in this regard. In the present article, we show that BDC does not cross the median plane but is restricted to the side of the visual field containing a unilateral inducer. These results cannot be explained by the use of retinal disparity alone or in combination with any additional factors or processes previously suggested to account for stereovision. We present a two-channel three-stage neuromathematical model that accounts quantitatively for present and previous BDC results and also accounts for a large number of the most prominent features of binocular pitch perception: Stage 1 of the differencing channel obtains the difference between the retinal orientations of the images in the two eyes separately for the inducer and the test line; stage 1 of the summing channel obtains the corresponding sums. Signals from inducer and test stimuli are combined linearly in each channel in stage 2, and in stage 3 the outputs from the two channels are combined along with a bias signal from the body-referenced mechanism to yield ', the model's prediction for the perception of pitch.
尽管长期以来,两只眼睛因对世界的不同视角而产生的水平双眼视网膜视差一直是理解立体视觉独特特征的核心,但它不足以解释许多双眼现象。双眼深度对比(BDC),即由偏离垂直的侧翼线条在位于中央的线条中诱发视觉倾斜感,在这方面尤其受到了大量关注。在本文中,我们表明BDC不会穿过正中面,而是局限于包含单侧诱导物的视野一侧。这些结果无法仅用视网膜视差或与先前提出的用于解释立体视觉的任何其他因素或过程相结合来解释。我们提出了一个双通道三阶段神经数学模型,该模型定量地解释了当前和先前的BDC结果,还解释了双眼倾斜感知的大量最突出特征:差分通道的第一阶段分别针对诱导物和测试线获取两只眼睛中图像视网膜方向之间的差异;求和通道的第一阶段获取相应的总和。在第二阶段,来自诱导物和测试刺激的信号在每个通道中进行线性组合,在第三阶段,两个通道的输出与来自身体参考机制的偏差信号相结合,以产生该模型对倾斜感知的预测。