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From optics to attention: visual perception in barn owls

机译:从光学到关注:谷仓猫头鹰的视觉感知

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摘要

Barn owls are nocturnal predators which have evolved specific sensory and morphological adaptations to a life in dim light. Here, some of the most fundamental properties of spatial vision in barn owls are reviewed. The eye with its tubular shape is rigidly integrated in the skull so that eye movements are very much restricted. The eyes are oriented frontally, allowing for a large binocular overlap. Accommodation, but not pupil dilation, is coupled between the two eyes. The retina is rod dominated and lacks a visible fovea. Retinal ganglion cells form a marked region of highest density that extends to a horizontally oriented visual streak. Behavioural visual acuity and contrast sensitivity are poor, although the optical quality of the ocular media is excellent. A low f-number allows high image quality at low light levels. Vernier acuity was found to be a hyperacute percept. Owls have global stereopsis with hyperacute stereo acuity thresholds. Neurons of the visual Wulst are sensitive to binocular disparities. Orientation based saliency was demonstrated in a visual-search experiment, and higher cognitive abilities were shown when the owl’s were able to use illusory contours for object discrimination.
机译:仓n是夜间捕食者,它们已经进化出对昏暗光线下的生活有特殊的感觉和形态适应性。在此,对仓n中空间视觉的一些最基本属性进行了回顾。管状的眼睛牢固地整合在头骨中,因此眼睛的运动受到很大限制。眼睛正面朝上,可实现大双眼重叠。两只眼睛之间有调节作用,而不是瞳孔扩张作用。视网膜以视杆为主,缺乏可见的中央凹。视网膜神经节细胞形成最高密度的标记区域,该区域延伸至水平方向的视觉条纹。行为视觉敏锐度和对比敏感度较差,尽管眼介质的光学质量非常好。 f值低可以在低照度下获得高质量的图像。发现游标敏锐度是一种超急性的感觉。猫头鹰的立体视觉具有超急性的立体敏锐度阈值。视觉沃斯特的神经元对双眼视差敏感。在视觉搜索实验中证明了基于定向的显着性,并且当猫头鹰能够使用虚幻的轮廓进行物体辨别时,其显示出更高的认知能力。

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