Optical Sensors and Metrology, School of Physics, Dublin Institute of Technology, Ireland.
Eye Contact Lens. 2011 Jul;37(4):267-72. doi: 10.1097/ICL.0b013e3182235777.
The human eye is exposed to toxic ultraviolet radiation (UVR) from sunlight and artificial sources. The UVR-induced damage occurs in ocular tissues from the corneal surface to the retina. Although the cornea and crystalline lens provide inherent UVR protection, the anterior ocular surface and the limbus, which contains stem cells, receive toxic levels of UVR from relatively short solar exposures.
Shading headwear and some UVR-blocking sunglasses are designed to reduce direct solar exposure but may not protect the eye from diffuse ambient and surface reflected light. If the squint mechanism is reduced because of the reduction of visible light, the ocular surface is then exposed to ambient and reflected UVR. In addition, laterally incident radiation that is focused across the cornea onto the limbus, a phenomenon known as peripheral light focusing, can increase the dose at the nasal limbus by a factor of 20.
The UVR-blocking contact lenses that cover the limbus provide protection from all sources of ocularly incident UVR. Although directly relating solar UVR dose to ocular damage is epidemiologically challenging, irradiation of ocular cell cultures can estimate the toxic effects of UVR exposure. The use of UVR-blocking contact lenses greatly increases the time the wearer can be exposed to solar UVR before a toxic ocular dose is reached.
There is a need for the development of a scientifically rigorous, clinically applicable ocular protection factor metric, based not only on the transmittance of eyewear but on the protection afforded from the total UVR field and the length of that exposure.
人眼会受到阳光和人工来源的有毒紫外线(UVR)的照射。这种 UVR 诱导的损伤发生在从角膜表面到视网膜的眼部组织中。虽然角膜和晶状体提供了固有的 UVR 保护,但含有干细胞的前眼部表面和角膜缘会受到来自相对较短的太阳暴露的有毒水平的 UVR 照射。
遮阳头饰和一些 UVR 阻断太阳镜旨在减少直接的太阳暴露,但可能无法保护眼睛免受漫射环境光和表面反射光的伤害。如果由于可见光减少而减少斜视机制,那么眼部表面就会暴露在环境光和反射 UVR 下。此外,横向入射的辐射被聚焦在角膜上的角膜缘上,这种现象称为周边光聚焦,会使鼻侧角膜缘的剂量增加 20 倍。
覆盖角膜缘的 UVR 阻断隐形眼镜可提供对所有眼部入射 UVR 的保护。尽管将太阳 UVR 剂量与眼部损伤直接相关在流行病学上具有挑战性,但对眼部细胞培养物的照射可以估计 UVR 暴露的毒性影响。使用 UVR 阻断隐形眼镜可大大增加佩戴者暴露在太阳 UVR 下的时间,直到达到有毒眼部剂量。
需要开发一种科学严谨、临床适用的眼部保护因子指标,不仅基于眼镜的透过率,还基于整个 UVR 场的保护和暴露长度。