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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >The effect of ocular aberrations on retinal laser damage thresholds in the human eye.
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The effect of ocular aberrations on retinal laser damage thresholds in the human eye.

机译:眼像差对人眼视网膜激光损伤阈值的影响。

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摘要

For the dark-adapted human eye the diffraction limited retinal image is approximately 2.8 microm in diameter for green light, although the estimation of the size of the retinal image resulting from the incidence of a collimated beam on the cornea is problematical and has been estimated to be anywhere from 10 to 30 microm. The resolution of this difference is important for the accurate determination of the retinal hazards of optical sources and for setting safety limits for laser-retinal exposure. Using literature results for the aberrations measured in a population of healthy young adults, beam propagation calculations of retinal images are presented for different pupil diameters. Using the concept of a generalized Strehl ratio, retinal damage thresholds, EDx, are derived for exposures in the thermal confinement regime (exposure times approximately less than 10 micros). The most vulnerable eyes are predicted to be those with pupil sizes 2-3 mm such as would be found under daylight illumination. The results also suggest that populations with particularly small ocular aberrations and correspondingly high visual acuity may be significantly more vulnerable than a "normal" population.
机译:对于适应黑暗的人眼,衍射限制的视网膜图像直径约为2.8微米(绿光),尽管由于准直光束入射到角膜上而导致的视网膜图像尺寸估计存在问题,并且估计为范围从10到30微米。这种差异的解决方案对于准确确定光源的视网膜危害和设置激光视网膜暴露的安全极限非常重要。使用文献结果对在健康的年轻成年人中测量的像差进行分析,得出了针对不同瞳孔直径的视网膜图像的光束传播计算。使用广义Strehl比率的概念,可以得出在热限制条件下(曝光时间约小于10微米)的曝光的视网膜损伤阈值EDx。预计最脆弱的眼睛是瞳孔大小为2-3 mm的眼睛,例如在日光照射下会发现的眼睛。结果还表明,眼像差特别小且视敏度相应较高的人群可能比“正常”人群更加脆弱。

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