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环境窄带长波长光对树鼩形觉剥夺性近视和透镜诱导性近视的影响。

The effects of ambient narrowband long-wavelength light on lens-induced myopia and form-deprivation myopia in tree shrews.

机构信息

Department of Optometry and Vision Science, University of Alabama at Birmingham, 1716 University Blvd, HPB 528, Birmingham, AL, 35294, UK.

Georgia Cancer Center, Augusta University. Dr. Ward Contributed to This Work During His Graduate Training at the University of Alabama at Birmingham, UK.

出版信息

Exp Eye Res. 2023 Sep;234:109593. doi: 10.1016/j.exer.2023.109593. Epub 2023 Jul 22.

Abstract

Here we examine the effects of ambient red light on lens-induced myopia and diffuser-induced myopia in tree shrews, small diurnal mammals closely related to primates. Starting at 24 days of visual experience (DVE), seventeen tree shrews were reared in red light (624 ± 10 or 634 ± 10 nm, 527-749 human lux) for 12-14 days wearing either a -5D lens (RL-5D, n = 5) or a diffuser (RLFD, n = 5) monocularly, or without visual restriction (RL-Control, n = 7). Refractive errors and ocular dimensions were compared to those obtained from tree shrews raised in broad-spectrum white light (WL-5D, n = 5; WLFD, n = 10; WL Control, n = 7). The RL-5D tree shrews developed less myopia in their lens-treated eyes than WL-5D tree shrews at the end of the experiment (-1.1 ± 0.9D vs. -3.8 ± 0.3D, p = 0.007). The diffuser-treated eyes of the RLFD tree shrews were near-emmetropic (-0.3 ± 0.6D, vs. -5.4 ± 0.7D in the WLFD group). Red light induced hyperopia in control animals (RL-vs. WL-Control, +3.0 ± 0.7 vs. +1.0 ± 0.2D, p = 0.02), the no-lens eyes of the RL-5D animals, and the no-diffuser eyes of the RLFD animals (+2.5 ± 0.5D and +2.3 ± 0.3D, respectively). The refractive alterations were consistent with the alterations in vitreous chamber depth. The lens-induced myopia developed in red light suggests that a non-chromatic cue could signal defocus to a less accurate extent, although it could also be a result of "form-deprivation" caused by defocus blur. As with previous studies in rhesus monkeys, the ability of red light to promote hyperopia appears to correlate with its ability to retard lens-induced myopia and form-deprivation myopia, the latter of which might be related to non-visual ocular mechanisms.

摘要

在这里,我们研究了环境红光对树鼩(与灵长类动物关系密切的小型昼行性哺乳动物)的晶状体诱导性近视和扩散器诱导性近视的影响。从 24 天视觉经验(DVE)开始,17 只树鼩在红光(624 ± 10 或 634 ± 10nm,527-749 人勒克斯)中佩戴-5D 透镜(RL-5D,n=5)或扩散器(RLFD,n=5)单眼饲养 12-14 天,或不进行视觉限制(RL-Control,n=7)。比较了屈光不正和眼球尺寸与在广谱白光(WL-5D,n=5;WLFD,n=10;WL-Control,n=7)中饲养的树鼩的结果。实验结束时,与在白光中饲养的树鼩相比,佩戴-5D 透镜的 RL-5D 树鼩的眼内屈光度较小(-1.1 ± 0.9D 与-3.8 ± 0.3D,p=0.007)。在 RLFD 组中,佩戴扩散器的 RLFD 树鼩的眼睛接近正视眼(-0.3 ± 0.6D,而在 WLFD 组中为-5.4 ± 0.7D)。红光诱导对照动物(RL-vs.WL-Control,+3.0 ± 0.7 vs.+1.0 ± 0.2D,p=0.02)、佩戴-5D 透镜的 RL-5D 动物的无透镜眼和佩戴 RLFD 的 RLFD 动物的无扩散器眼发生远视(+2.5 ± 0.5D 和+2.3 ± 0.3D)。屈光变化与玻璃体腔深度的变化一致。在红光中发展的晶状体诱导性近视表明,非色觉线索可以在一定程度上更不准确地发出离焦信号,尽管这也可能是由离焦模糊引起的“形态剥夺”造成的。与之前在恒河猴中的研究一样,红光促进远视的能力似乎与其抑制晶状体诱导性近视和形态剥夺性近视的能力相关,后者可能与非视觉眼机制有关。

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