van der Willigen R F, Frost B J, Wagner H
Institut für Biologie II, RWTH Aachen, Germany.
Neuroreport. 1998 Apr 20;9(6):1233-7. doi: 10.1097/00001756-199804200-00050.
It is unclear whether the neural algorithm that underlies stereoscopic vision in birds incorporates both low level (camouflage breaking) and high level (depth ordering) comparisons of information available to each of the eyes. Both visual functions were successfully tested by examining transitive inference performance in two barn owls trained to discriminate static Julesz random dot stereograms, thus demonstrating a capacity to detect relative depth using fine retinal disparity as the sole cue for discrimination. Our behavioral tests provide strong evidence that the barn owl possesses global stereopsis comparable to that found in the macaque monkey--the owl's best stereoacuity was 2 min of arc.
目前尚不清楚鸟类立体视觉所基于的神经算法是否结合了每只眼睛可用信息的低级(打破伪装)和高级(深度排序)比较。通过检查两只接受训练以辨别静态朱尔斯随机点立体图的仓鸮的传递性推理表现,这两种视觉功能都得到了成功测试,从而证明了利用精细视网膜视差作为唯一辨别线索来检测相对深度的能力。我们的行为测试提供了有力证据,表明仓鸮拥有与猕猴相当的整体立体视觉——仓鸮的最佳立体视敏度为2角分。