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在雏鸡中,没有空间成分的颞侧全视野锯齿状闪烁,无论波形方向如何,在光学离焦后都会引起近视偏移。

Temporal whole field sawtooth flicker without a spatial component elicits a myopic shift following optical defocus irrespective of waveform direction in chicks.

作者信息

Murphy Melanie J, Riddell Nina, Crewther David P, Simpson David, Crewther Sheila G

机构信息

School of Psychology & Public Health, La Trobe University, Melbourne, Victoria, Australia.

Centre for Human Psychopharmacology, Swinburne University of Technology, Melbourne, Victoria, Australia.

出版信息

PeerJ. 2019 Jan 23;7:e6277. doi: 10.7717/peerj.6277. eCollection 2019.

Abstract

PURPOSE

Myopia (short-sightedness) is the commonest visual disorder and greatest risk factor for sight threatening secondary pathologies. Myopia and hyperopia can be induced in animal models by rearing with optical lens defocus of opposite sign. The degree of refractive compensation to lens-induced defocus in chicks has been shown to be modified by directionally drifting sawtooth spatio-temporal luminance diamond plaids, with Fast-ON sawtooth spatio-temporal luminance profiles inhibiting the myopic shift in response to negative lenses, and Fast-OFF profiles inhibiting the hyperopic shift in response to positive lenses. What is unknown is whether similar sign-of-defocus dependent results produced by spatio-temporal modulation of sawtooth patterns could be achieved by rearing chicks under whole field low temporal frequency sawtooth luminance profiles at 1 or 4 Hz without a spatial component, or whether such stimuli would indiscriminately elicit a myopic shift such as that previously shown with symmetrical (or near-symmetrical) low frequency flicker across a range of species.

METHODS

Hatchling chicks ( = 166) were reared from days five to nine under one of three defocus conditions (No Lens, +10D lens, or -10D lens) and five light conditions (No Flicker, 1 Hz Fast-ON/Slow-OFF sawtooth flicker, 4 Hz Fast-ON/Slow-OFF sawtooth flicker, 1 Hz Fast-OFF/Slow-ON sawtooth flicker, or 4Hz Fast-OFF/Slow-ON sawtooth flicker). The sawtooth flicker was produced by light emitting diodes (white LEDs, 1.2 -183 Lux), and had no measurable dark phase. Biometrics (refraction and ocular axial dimensions) were measured on day nine.

RESULTS

Both 1 Hz and 4 Hz Fast-ON and Fast-OFF sawtooth flicker induced an increase in vitreous chamber depth that was greater in the presence of negative compared to positive lens defocus. Both sawtooth profiles at both temporal frequencies inhibited the hyperopic shift in response to +10D lenses, whilst full myopic compensation (or over-compensation) in response to -10D lenses was observed.

CONCLUSIONS

Whole field low temporal frequency Fast-ON and Fast-OFF sawtooth flicker induces a generalized myopic shift, similar to that previously shown for symmetrical sine-wave and square-wave flicker. Our findings highlight that temporal modulation of retinal ON/OFF pathways per se (without a spatial component) is insufficient to produce strong sign-of-defocus dependent effect.

摘要

目的

近视是最常见的视觉障碍,也是导致视力威胁性继发病变的最大风险因素。近视和远视可通过用具有相反符号的光学透镜散焦饲养在动物模型中诱导产生。已表明,定向漂移的锯齿形时空亮度菱形格子可改变雏鸡对透镜诱导散焦的屈光补偿程度,其中快速开启的锯齿形时空亮度分布可抑制负透镜引起的近视偏移,而快速关闭的分布可抑制正透镜引起的远视偏移。尚不清楚的是,在没有空间成分的1Hz或4Hz全场低频锯齿形亮度分布下饲养雏鸡,是否能通过锯齿形图案的时空调制产生类似的散焦符号依赖性结果,或者这种刺激是否会不加区分地引发近视偏移,就像之前在一系列物种中对称(或接近对称)低频闪烁所显示的那样。

方法

166只刚孵出的雏鸡在5至9日龄期间,在三种散焦条件(无透镜、+10D透镜或-10D透镜)之一和五种光照条件(无闪烁、1Hz快速开启/缓慢关闭锯齿形闪烁、4Hz快速开启/缓慢关闭锯齿形闪烁、1Hz快速关闭/缓慢开启锯齿形闪烁或4Hz快速关闭/缓慢开启锯齿形闪烁)下饲养。锯齿形闪烁由发光二极管(白色LED,1.2 - 183勒克斯)产生,且没有可测量的暗期。在第9天测量生物特征(屈光和眼轴尺寸)。

结果

1Hz和4Hz的快速开启和快速关闭锯齿形闪烁均导致玻璃体腔深度增加,与正透镜散焦相比,负透镜散焦时增加更大。两种时间频率下的两种锯齿形分布均抑制了+10D透镜引起的远视偏移,同时观察到对-10D透镜的完全近视补偿(或过度补偿)。

结论

全场低频快速开启和快速关闭锯齿形闪烁会引发普遍的近视偏移,类似于之前对称正弦波和方波闪烁所显示的情况。我们的研究结果突出表明,视网膜开/关通路本身的时间调制(无空间成分)不足以产生强烈的散焦符号依赖性效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b276/6347968/9eeac70ac989/peerj-07-6277-g001.jpg

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