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Disparity sensitivity in man and owl: Psychophysical evidence for equivalent perception of shape-from-stereo

机译:人和猫头鹰之间的视差敏感性:等同于立体感的心理物理学证据

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The perception of shape-from-stereo is best characterized by the spatial disparity-contrast sensitivity function (DSF). This is the stereo analogue of the well-known luminance-contrast sensitivity function (CSF). In principle, the DSF and CSF portray a visual system`s ability to detect spatial modulation as specified by changes in binocular disparity and luminance, respectively. In humans, less fine detail is visible in the stereo domain than is possible in the luminance domain. Here, we characterize for the first time the DSF in a non-human species, viz. the barn owl. At the same time, we re-examined the human DSF with identical apparatus and methods to directly compare between two vertebrate species that evolved stereovision independently. We discovered a close relationship between the owl and human ability to detect shape-from-stereo. In particular, the shift in absolute position between the human and owl DSF, as measured here, closely corresponds to the shift in absolute position between their respective CSFs, as known from the literature. In conclusion, our study establishes unprecedented experimental proof of a striking similarity in the prowess of humans and owls to achieve shape-from-stereo.
机译:立体感的最佳体现是空间差异对比敏感度函数(DSF)。这是众所周知的亮度对比灵敏度函数(CSF)的立体声模拟。原则上,DSF和CSF描绘了视觉系统检测空间调制的能力,分别由双目视差和亮度的变化指定。在人类中,与在亮度域中相比,在立体域中看不到的精细细节要少。在这里,我们首次表征了非人类物种的DSF。仓。同时,我们用相同的仪器和方法重新检查了人类DSF,以直接比较独立进化立体视觉的两个脊椎动物。我们发现猫头鹰与人类从立体检测形状的能力之间有着密切的关系。特别地,如从文献中已知的,如本文所测量的,人和猫头鹰DSF之间的绝对位置的偏移紧密对应于它们各自的CSF之间的绝对位置的偏移。总而言之,我们的研究建立了前所未有的实验证据,证明了人类和猫头鹰在实现立体造型方面的惊人相似性。

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