Ho Arthur, Feng Lisa, Rozema Jos J, Atchison David A
School of Optometry and Vision Science, University of New South Wales, Sydney, New South Wales, Australia.
Brien Holden Vision Institute, Sydney, New South Wales, Australia.
Ophthalmic Physiol Opt. 2025 Jul;45(5):1098-1103. doi: 10.1111/opo.13524. Epub 2025 May 14.
To provide a more sophisticated explanation of the optics involved when retinal 'shadows' are seen in scanning laser ophthalmoscopic images during the wear of multisegment and diffusion optic spectacle lenses.
Images were recorded with a system that uses a scanning broad line fundus imaging principle in participants with undilated pupils wearing a multisegment spectacle lens. The live infra-red preview display of the system was also acquired during image recording. Ray-tracing and image simulations were performed, assuming a Maxwellian illumination system in which a source was refracted first through a lens and then through a model of a multisegment spectacle lens focused onto the pupil of an eye model and hence to the retina. A detector surface was positioned slightly in front of the retina to record the irradiation distribution. The light source was varied from 0.1 μm to 1.8 mm in diameter to investigate the effect of light source size on retinal irradiation distribution.
The retinal shadow pattern was visible on the live infra-red preview display, as reported previously. However, the recorded images of the retina do not exhibit the same shadow pattern. The simulations predict that the circular shadows corresponding to lenslet positions become progressively less discernible with increasing light source size.
An explanation is provided for the shadows on retinal images due to multisegment lenses, which may be observable under certain illumination conditions.
对佩戴多段式和扩散光学眼镜片时在扫描激光检眼镜图像中看到视网膜“阴影”所涉及的光学原理提供更深入的解释。
使用采用扫描宽线眼底成像原理的系统对未散瞳的佩戴多段式眼镜片的参与者进行图像记录。在图像记录过程中还获取了该系统的实时红外预览显示。进行光线追踪和图像模拟,假设采用麦克斯韦照明系统,其中光源首先通过一个透镜折射,然后通过多段式眼镜片模型聚焦到眼模型的瞳孔上,进而到达视网膜。在视网膜前方稍远处放置一个探测器表面以记录照射分布。将光源直径从0.1μm变化到1.8mm,以研究光源大小对视网膜照射分布的影响。
如先前报道的那样,视网膜阴影图案在实时红外预览显示上可见。然而,所记录的视网膜图像并未呈现相同的阴影图案。模拟结果预测,随着光源尺寸增加,对应于小透镜位置的圆形阴影逐渐变得难以辨别。
对多段式镜片导致视网膜图像上出现阴影给出了解释,在某些照明条件下可能会观察到这些阴影。