Timney B, Lansdown G
Department of Psychology, University of Western Ontario, London, Canada.
Exp Brain Res. 1989;74(2):272-8. doi: 10.1007/BF00248860.
We studied the role of the transcallosal pathway in stereopsis by measuring binocular and monocular depth perception in two cats that had undergone section of the optic chiasm at the age of 21 d. To ensure that the surgery did not impair vision to the extent that depth perception could not be evaluated, visual acuity and visual fields were also measured. In both of the chiasm-sectioned animals the visual fields were reduced and the visual acuity was substantially lower than in normal cats, with a maximum of about 2 cyc deg-1. Binocular depth thresholds of the chiasm-sectioned cats were worse than those of the normal cat but were better than their own monocular thresholds. These results suggest that the chiasm-sectioned animals were still able to use binocular cues to judge depth and indicate that the indirect pathway through the corpus callosum is sufficient to mediate binocular depth perception.
我们通过测量两只在21日龄时接受视交叉切断术的猫的双眼和单眼深度感知,研究了胼胝体通路在立体视觉中的作用。为确保手术不会对视功能造成无法评估深度感知的损害,我们还测量了视力和视野。在两只视交叉切断的动物中,视野均缩小,视力也显著低于正常猫,最大值约为2周/度。视交叉切断猫的双眼深度阈值比正常猫差,但优于它们自己的单眼阈值。这些结果表明,视交叉切断的动物仍然能够利用双眼线索来判断深度,并表明通过胼胝体的间接通路足以介导双眼深度感知。