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激光致眼眩光的波长和环境亮度依赖性

Wavelength and ambient luminance dependence of laser eye dazzle.

作者信息

Williamson Craig A, McLin Leon N, Rickman J Michael, Manka Michael A, Garcia Paul V, Kinerk Wesley T, Smith Peter A

出版信息

Appl Opt. 2017 Oct 10;56(29):8135-8147. doi: 10.1364/AO.56.008135.

Abstract

A series of experiments has been conducted to quantify the effects of laser wavelength and ambient luminance on the severity of laser eye dazzle experienced by human subjects. Eight laser wavelengths in the visible spectrum were used (458-647 nm) across a wide range of ambient luminance conditions (0.1-10,000  cd·m). Subjects were exposed to laser irradiance levels up to 600  μW·cm and were asked to recognize the orientation of optotypes at varying eccentricities up to 31.6 deg of visual angle from the laser axis. More than 40,000 data points were collected from 14 subjects (ages 23-64), and these were consolidated into a series of obscuration angles for comparison to a theoretical model of laser eye dazzle. Scaling functions were derived to allow the model to predict the effects of laser dazzle on vision more accurately by including the effects of ambient luminance and laser wavelength. The updated model provides an improved match to observed laser eye dazzle effects across the full range of conditions assessed. The resulting model will find use in a variety of laser safety applications, including the estimation of maximum dazzle exposure and nominal ocular dazzle distance values.

摘要

已经进行了一系列实验,以量化激光波长和环境亮度对人类受试者所经历的激光致眼眩光严重程度的影响。在广泛的环境亮度条件(0.1-10,000  cd·m)下,使用了可见光谱中的八种激光波长(458-647 nm)。受试者暴露于高达600  μW·cm的激光辐照度水平下,并被要求识别视标在距激光轴高达31.6度视角的不同偏心率下的方向。从14名受试者(年龄23-64岁)收集了超过40,000个数据点,并将这些数据整合为一系列遮蔽角,以便与激光致眼眩光的理论模型进行比较。通过纳入环境亮度和激光波长的影响,推导了缩放函数,以使该模型能够更准确地预测激光眩光对视力的影响。更新后的模型在评估的所有条件范围内,与观察到的激光致眼眩光效果提供了更好的匹配。所得模型将用于各种激光安全应用中,包括最大眩光暴露估计和标称眼眩光距离值。

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