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The effects of longitudinal chromatic aberration and a shift in the peak of the middle-wavelength sensitive cone fundamental on cone contrast

机译:纵向色差和中波敏感圆锥基波峰的偏移对圆锥对比度的影响

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摘要

Longitudinal chromatic aberration is a well-known imperfection of visual optics, but the consequences in natural conditions, and for the evolution of receptor spectral sensitivities are less well understood. This paper examines how chromatic aberration affects image quality in the middle-wavelength sensitive (M-) cones, viewing broad-band spectra, over a range of spatial frequencies and focal planes. We also model the effects on M-cone contrast of moving the M-cone fundamental relative to the long- and middle-wavelength (L- and M-cone) fundamentals, while the eye is accommodated at different focal planes or at a focal plane that maximizes luminance contrast.When the focal plane shifts towards longer (650 nm) or shorter wavelengths (420 nm) the effects on M-cone contrast are large: longitudinal chromatic aberration causes total loss of M-cone contrast above 10 to 20 c/d. In comparison, the shift of the M-cone fundamental causes smaller effects on M-cone contrast. At 10 c/d a shift in the peak of the M-cone spectrum from 560 nm to 460 nm decreases M-cone contrast by 30%, while a 10 nm blue-shift causes only a minor loss of contrast. However, a noticeable loss of contrast may be seen if the eye is focused at focal planes other than that which maximizes luminance contrast.The presence of separate long- and middle-wavelength sensitive cones therefore has a small, but not insignificant cost to the retinal image via longitudinal chromatic aberration. This aberration may therefore be a factor limiting evolution of visual pigments and trichromatic color vision.
机译:纵向色差是视觉光学的众所周知的缺陷,但是人们对在自然条件下以及对接收器光谱灵敏度的演变所产生的后果知之甚少。本文研究了色差如何在一定范围的空间频率和焦平面上观察中波敏感(M-)锥中的图像质量,并观察宽带光谱。我们还模拟了将M圆锥基本面相对于长波和中波长(L圆锥和M圆锥)基本面移动时对M圆锥对比度的影响,同时将眼睛容纳在不同的焦平面或焦平面上当焦平面移向更长(650 nm)或更短波长(420 nm)时,对M锥对比度的影响很大:纵向色差会导致10到20 c /以上的M锥对比度总损失。 d。相比之下,M锥基本面的移动对M锥对比度的影响较小。在10 c / d时,M锥光谱的峰从560 nm移到460 nm会使M锥对比度降低30%,而10 nm蓝移仅引起很小的对比度损失。但是,如果将眼睛聚焦在焦平面上而不是使亮度对比度最大化的焦平面上,则可能会看到明显的对比度损失,因此存在单独的长波和中波敏感视锥对视网膜的代价很小,但并不是微不足道的通过纵向色差成像。因此,该像差可能是限制视觉颜料和三色彩色视觉发展的因素。

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