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当前的硅水凝胶 UVR 阻断镜片及其相关防护因子。

Current silicone hydrogel UVR blocking lenses and their associated protection factors.

机构信息

Texas Eye Research and Technology Center, University of Houston College of Optometry, 4901 Calhoun Road, Houston, TX 770204, United States.

出版信息

Cont Lens Anterior Eye. 2010 Jun;33(3):136-40. doi: 10.1016/j.clae.2009.11.003. Epub 2009 Dec 29.

Abstract

PURPOSE

Ultraviolet radiation (UVR) blocking contact lenses provides ocular protection factors (PF) that vary with lens thickness and the nature of the polymer dopant. This study measured the UVR PF of silicone hydrogel lenses outdoors and compares this to known methods for determining PF mathematically.

METHODS

Ambient measurements were taken using an UVA-B radiometer, adapted to hold the test lenses over its sensor to quantify their UVR blocking capabilities. The UVR blocking silicone hydrogel lenses tested included galyfilcon A, senofilcon A, and enfilcon A. The first UVR blocking hydrogel lens, vasurfilcon A, and a non-blocking silicone hydrogel lens, lotrafilcon B, served as a comparison. Lens transmittance at the centre and periphery was measured and PF calculated to predict signal reduction for comparison with field measurements.

RESULTS

There was a significant range of cut-off wavelengths across the lenses, ranging from 370nm for enfilcon A to 390nm for vasurfilcon A, with lotrafilcon B transmitting down to 265nm, with a 3nm shift from centre to periphery across the -3.00 D UVR blockers. The UVR reduction calculated from the transmittance data correlates well with field data, ranging from 90-98% for the UVR blockers to 13% for the non-blocker.

CONCLUSIONS

The silicone hydrogel lenses showed a wide range of transmittance curves with increasing PF from centre to periphery. PF calculations work well but do not always compare precisely with measured data due to factors such as sensor spectral response and the nature of the incident solar spectrum.

摘要

目的

紫外线(UVR)阻断隐形眼镜提供的眼部保护因子(PF)因镜片厚度和聚合物掺杂剂的性质而异。本研究测量了户外硅水凝胶隐形眼镜的 UVR PF,并将其与数学上确定 PF 的已知方法进行了比较。

方法

使用 UVA-B 辐射计进行环境测量,该辐射计经过改装,可以将测试镜片固定在传感器上,以量化其 UVR 阻断能力。测试的 UVR 阻断硅水凝胶镜片包括 galyfilcon A、senofilcon A 和 enfilcon A。作为比较,使用了第一种 UVR 阻断水凝胶镜片 vasurfilcon A 和非阻断硅水凝胶镜片 lotrafilcon B。测量了镜片中心和周边的透光率,并计算了 PF,以预测信号衰减,与现场测量进行比较。

结果

镜片的截止波长范围很广,从 enfilcon A 的 370nm 到 vasurfilcon A 的 390nm,而 lotrafilcon B 则可透射至 265nm,-3.00 D 的 UVR 阻断镜片从中心到周边的透光率有 3nm 的偏移。从透光率数据计算出的 UVR 减少量与现场数据相关性很好,UVR 阻断镜片的范围从 90-98%到非阻断镜片的 13%。

结论

硅水凝胶镜片的透光率曲线随 PF 从中心到周边逐渐增加,呈现出广泛的范围。PF 计算效果很好,但由于传感器光谱响应和入射太阳光谱的性质等因素,并不总是与实测数据精确匹配。

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