首页> 外文会议>International Laser Safety Conference(ILSC 2005); 20050307-10; Marina del Rey,CA(US) >WAVELENGTH DEPENDENCE OF OCULAR DAMAGE THRESHOLDS IN THE NEAR-IR TO FAR-IR TRANSITION REGION (PROPOSED REVISIONS TO MPEs)
【24h】

WAVELENGTH DEPENDENCE OF OCULAR DAMAGE THRESHOLDS IN THE NEAR-IR TO FAR-IR TRANSITION REGION (PROPOSED REVISIONS TO MPEs)

机译:近红外到远红外过渡区的眼损伤阈值的波长相关性(对MPE的建议修订)

获取原文
获取原文并翻译 | 示例

摘要

We have previously reported on unique aspects of the laser-tissue interactions associated with penetrating laser wavelengths in the near-IR to far-IR transition region. Retinal, lens, and corneal effects have been described following 1.3-1.4 μm laser exposures with exposure durations ranging from cw to sub-millisecond. The puslewidth range studied has now been extended down to the nanosecond regime using a Q-switched, 1.319-μm, Nd:YAG laser. This paper presents the Q-switched data and discusses the wavelength dependence of the IR thresholds across all pulsewidth regimes. The corneal and retinal thresholds are contrasted to laser safety standard maximum permissible exposure (MPE) limits and changes suggested to the existing MPEs with the objectives of: (1) relaxing the standards over wavelength ranges where unusually high safety margins may unnecessarily hinder applications of recently developed military and telecommunications laser systems and; (2) replacing step-function discontinuities in the MPEs by more gradually changing functions of wavelength which follow the trends of the retinal and corneal ED_(50) threshold data. Based on these considerations, revisions to laser safety standard MPEs are proposed over the wavelength range from 1.15 μm to 2.6 μm.
机译:我们以前曾报道过与近红外到远红外过渡区域中穿透激光波长相关的激光-组织相互作用的独特方面。已经描述了在1.3-1.4μm激光照射后的视网膜,晶状体和角膜效果,其持续时间范围为连续波至亚毫秒。现在,已使用调Q的1.319μmNd:YAG激光器将研究的脉宽范围扩展至纳秒范围。本文介绍了调Q数据,并讨论了在所有脉宽范围内IR阈值的波长依赖性。角膜和视网膜阈值与激光安全标准最大允许暴露(MPE)限值和现有MPE的更改建议形成对比,其目的是:(1)在波长范围内放宽标准,在此范围内异常高的安全裕度可能不必要地阻碍了最近的应用开发军事和电信激光系统;以及(2)通过逐渐改变波长函数来替代MPE中的阶跃函数不连续性,该函数应遵循视网膜和角膜ED_(50)阈值数据的趋势。基于这些考虑,建议在1.15μm至2.6μm的波长范围内对激光安全标准MPE进行修订。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号