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Direct Assessment of Thermal Lensing in Ocular Media Using an Artificial Eye

机译:使用人工眼直接评估眼介质中的热透镜

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摘要

A new fibe -based imaging system has been incorporated into a modifie artificia eye for direct measurement of the thermal lensing effect induced by an infrared laser (1319 nm) to correlate changes in the visible wavefront to visual distortions observed by human subjects. The response of a visible beam, 632 nm, was observed with respect to various exposures of the infrared light under different power levels and exposure durations. Infrared irradiance levels between 0.57 and 4.56 W • cm~(-2) were used with exposure durations of 0.25, 0.50, 0.75, 1, and 2 seconds in order to observe the optimal level of radiant energy needed to bloom a visible beam at the retinal plane. Results show that deformation of the visible beam focused on the retina begins at irradiance levels of 2.28 W • cm~(-2) with significan blurring (10 times larger than the original size) at 3.80 W • cm~(-2). A maximum visible beam size at the retina is achieved with exposure durations of 0.75 seconds, and no observable change was reported for longer exposure durations. These results strongly correlate to the previously determined threshold for visual distortion in human subjects using infrared lasers of 2.98 W • cm~(-2). Based on these results, the visible wavefront will need to expand four times its original size in order to overcome any accommodation effects and induce an observable visual disruption in human subjects.
机译:一种新的基于纤维的成像系统已被并入修饰的人工眼中,用于直接测量由红外激光(1319 nm)引起的热透镜效应,以将可见波前的变化与人类受试者观察到的视觉畸变相关联。对于在不同功率水平和曝光持续时间下的红外光的各种曝光,观察到了632 nm的可见光束的响应。为了观察在该处发出可见光束所需的最佳辐射能水平,使用了0.57至4.56 W•cm〜(-2)之间的红外辐照度,曝光时间为0.25、0.50、0.75、1和2秒。视网膜平面。结果表明,聚焦在视网膜上的可见光束的变形始于2.28 W•cm〜(-2)的辐照度水平,并在3.80 W•cm〜(-2)处显着模糊(比原始尺寸大10倍)。曝光时间为0.75秒时,可达到视网膜上的最大可见光束大小,并且更长的曝光时间未见可观察到的变化。这些结果与先前使用2.98 W•cm〜(-2)的红外激光确定的人类受试者视觉畸变的阈值高度相关。根据这些结果,可见波前将需要扩展其原始大小的四倍,以克服任何调节效应并在人类对象中引起可观察到的视觉干扰。

著录项

  • 来源
    《Optical interactions with tissue and cells XXIII》|2012年|p.822106.1-822106.6|共6页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Air Force Research Laboratory, Fort Sam Houston TX,The University of Texas at Austin, Department of Biomedical Engineering, Austin TX,Consortium Research Fellowship Program, Alexandria VA;

    TASC Inc., Biomedical Sciences and Technologies Department, San Antonio TX;

    The University of Texas at Austin, Department of Biomedical Engineering, Austin TX;

    The University of Texas at Austin, Department of Biomedical Engineering, Austin TX;

    Air Force Research Laboratory, Fort Sam Houston TX;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医用物理学;
  • 关键词

  • 入库时间 2022-08-26 13:44:40

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