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THE VISUAL ACUITY OF THE FIDDLER-CRAB UCA PUGNAX

机译:UCA PUGNAX滤镜-蟹的视敏度

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摘要

The visual acuity of the fiddler-crab can be measured at various illuminations by means of its response to a moving visual pattern. The method, although similar to that used by Hecht and Wolf for the bee and Hecht and Wald for Drosophila, must be modified to give consistent results. An explanation of the response to a visual pattern is given in terms of the structure of the eye. Visual acuity of the crab varies with log I as in man, the bee, and Drosophila. Hecht and Wolf's explanation of the varying visual acuity with illumination in terms of the distribution of functional ommatidia in the eye is supported to that extent. In the fiddler-crab as in man, monocular and binocular visual acuity is similar with a maximum of 0.0042 for the fiddler-crab. This agrees fairly well with visual acuities of 0.0041, 0.0038, and 0.0032 as found in the field. In man and the bee, the minimum visual angle corresponds to the minimum angle of two adjacent receptors; in Drosophila and the fiddler-crab the minimum visual angle corresponds to approximately twice the minimum angle between two adjacent receptors.
机译:提琴蟹的视力可以通过其对运动的视觉模式的响应在各种照明下进行测量。尽管该方法与Hecht和Wolf用于蜜蜂的方法以及Hecht和Wald用于果蝇的方法相似,但必须对其进行修改以提供一致的结果。根据眼睛的结构给出了对视觉模式响应的解释。螃蟹的视力随人,蜜蜂和果蝇的log I而变化。在这种程度上,赫克特和沃尔夫(Hecht and Wolf)关于照度变化的视敏度在眼中功能性眼炎的分布方面的解释得到了支持。在人类中,提琴蟹的单眼和双眼视力相似,提琴蟹的最大视力为0.0042。这与现场发现的0.0041、0.0038和0.0032的视敏度非常吻合。在人和蜜蜂中,最小视角对应于两个相邻受体的最小角度。在果蝇和提琴蟹中,最小视角大约等于两个相邻受体之间最小角度的两倍。

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