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纵向色差与正视化:来自鸡眼的研究结果

Longitudinal chromatic aberration and emmetropization: results from the chicken eye.

作者信息

Rohrer B, Schaeffel F, Zrenner E

机构信息

University Eye Hospital, Department of Experimental Ophthalmology, Tuebingen, FRG.

出版信息

J Physiol. 1992 Apr;449:363-76. doi: 10.1113/jphysiol.1992.sp019090.

Abstract
  1. Due to the chromatic dispersion of the ocular media, the focal length of the optics of the eye is about 3 diopters longer for red light than for blue light. Because emmetropization in the chicken (Gallus domesticus) does not require colour cues and operates properly in monochromatic light, one can, therefore, expect that chickens raised in red light become more myopic (with longer eyes) than chicks raised in short wavelength light. Prior to conducting this experiment, we matched the brightness of both light conditions by means of flicker electroretinograms such that equiluminance was obtained for the chickens. 2. Unexpectedly, refractive development was not different from controls in white light for either red or near-ultraviolet light. 3. We tested whether the visual mechanisms guiding refractive development were still sensitive to defocus under both illuminations by treating the chicks with spectacle lenses. 4. Similar to a previous experiment in white light, the growth of the eye in red light also changed such that it compensated for the imposed defocus. It failed to do so, however, in near-ultraviolet light. 5. A histological analysis of the sampling intervals for the ultraviolet receptor system revealed that its spatial resolving power was too low to detect the defocus imposed by the lenses, whereas the long wavelength receptors provided sufficiently good visual acuity. 6. The results show that, during emmetropization, the chicken eye elegantly bypasses the problem of multiple chromatic focal planes by having a low sensitivity to defocus in the blue end of the spectrum. Because the chromatic dispersion function is steep in the blue range but flat at the red end of the spectrum, the remaining chromatic defocus in the spectral range of high visual acuity is low and may match the depth of field of the eye.
摘要
  1. 由于眼内介质的色散,眼睛光学系统对红光的焦距比对蓝光的焦距长约3屈光度。因为家鸡(Gallus domesticus)的正视化过程不需要颜色线索,并且在单色光下能正常进行,所以可以预期,在红光下饲养的鸡比在短波长光下饲养的雏鸡更容易近视(眼睛更长)。在进行该实验之前,我们通过闪光视网膜电图使两种光照条件的亮度匹配,从而使鸡获得等亮度。2. 出乎意料的是,无论是红光还是近紫外光下,屈光发育与白光对照组并无差异。3. 我们通过给雏鸡佩戴眼镜镜片来测试在两种光照条件下引导屈光发育的视觉机制是否仍对散焦敏感。4. 与之前在白光下的实验类似,红光下眼睛的生长也发生了变化,从而补偿了施加的散焦。然而,在近紫外光下却未能如此。5. 对紫外线受体系统采样间隔的组织学分析表明,其空间分辨能力过低,无法检测到镜片施加的散焦,而长波长受体提供了足够好的视敏度。6. 结果表明,在正视化过程中,鸡眼通过对光谱蓝端的散焦低敏感性巧妙地绕过了多色焦平面的问题。由于色散函数在蓝光范围内陡峭而在光谱红端平坦,高视敏度光谱范围内剩余的色散焦较低,可能与眼睛的景深相匹配。

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