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Comparing laser-induced retinal damage from ir wavelengths to that from visible wavelengths

机译:比较红外波长与可见光激光诱导的视网膜损伤

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Abstract: An earlier report documented exposure parameters for inducing corneal, lens, and retinal damage with a laser emitting in the `eye-safe' wavelength range (Nd:YAG laser radiation at 1.318 $mu@m and 1.356 $mu@m). Ocular damage thresholds are much higher for these wavelengths than for visible wavelength lasers. However, it was also noted that an exposure in the `eye-safe' wavelength range may result in multiple damage sites throughout the ocular medium and retina/choroid; that seemingly unaffected exposure sites, when monitored over time, may reveal slowly developing (days or longer) tissue degeneration; and, that the tissue degradation may ultimately involve regions greater in area than those directly irradiated by the laser. In order to elucidate the nature of tissue degeneration following IR laser exposure, the comparative pathology of retinal tissues exposed to argon and IR laser radiation is reported. Further, periodic post-exposure exams were conducted using scanning laser ophthalmoscopy to monitor the in vivo progress of the ocular tissue response following IR exposures. These observations are also contrasted to the results of corresponding examinations following visible wavelength laser exposures.!8
机译:摘要:较早的一份报告记录了暴露参数,这些辐射参数可在“对人眼安全”的波长范围内(Nd:YAG激光辐射在1.318μmu@ m和1.356 $ mu @ m处)发射激光,以诱导角膜,晶状体和视网膜损伤。这些波长的眼损伤阈值比可见波长激光的眼损伤阈值高得多。但是,还应注意的是,在“对眼睛安全”的波长范围内进行曝光可能会在整个眼部介质和视网膜/脉络膜中造成多个损伤部位。当长期监测时,看似未受影响的暴露部位可能揭示出组织发育缓慢(数天或更长时间)退化;而且,组织降解最终可能会涉及比激光直接照射的区域更大的区域。为了阐明红外激光照射后组织变性的性质,报道了氩气和红外激光照射下视网膜组织的比较病理学。此外,使用扫描激光检眼镜检查进行定期的暴露后检查,以监测IR暴露后眼组织反应的体内进程。这些观察结果还与可见光激光照射后相应检查的结果形成对比!8

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