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Modeling of laser-induced threshold damage in the peripheral retina

机译:外周视网膜激光诱导阈值损伤的建模

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Though allowable (safe) energy doses of pulsed laser radiation have been determined in the central retina, the sensitivity of the peripheral retina to damage must also be assessed. We used results from ray-tracing in an eye model to estimate laser spot size at the retina and recent thermal model computations of damage thresholds to predict off-axis retinal injury from laser irradiation. The predictions were made for threshold exposures with a 532 nm, 10 ns, Nd:YAG laser beam that filled the dilated pupil (7 mm diameter). Results were compared to previously published measured energy doses at the cornea needed to produce a minimally visible lesion (MVL) in the peripheral retina of rhesus subjects. We predicted the threshold for injury at the macula, and at selected portions of peripheral retina out to 60° from the fovea. Both predictions and measured data were normalized to their respective macula values. Normalized predicted thresholds in the peripheral retina increased as a function of angular distance from the macula. This varied from the measured data which, on the other hand, were relatively insensitive to angular position in the peripheral retina. The difference is likely due to improvements in methods of assessing retinal injury that have been incorporated into the model.
机译:虽然在中央视网膜中确定了允许(安全)能量剂量的脉冲激光辐射,但也必须评估外周视网膜对损坏的敏感性。我们使用了眼模型中的光线跟踪结果来估计视网膜的激光光斑尺寸和最近的损伤阈值的热模型计算,以预测激光照射的轴轴视网膜损伤。使用532nm,10ns,nd:填充扩张的瞳孔(直径为7mm)的阈值暴露来进行预测。将结果与先前公布的角膜中的测量能量剂量进行比较,以在恒河猴的外周视网膜中产生最小可见的病变(MVL)。我们预测了黄斑损伤的阈值,以及从FOVEA的外周视网膜的选定部分。预测和测量数据都被标准化为它们各自的黄斑值。外周视网膜中的归一化预测阈值随着距离黄斑的角度距离而增加。这从另一方面的测量数据变化,另一方面,在外周视网膜中对角度位置相对不敏感。差异很可能是由于评估已纳入模型中的视网膜损伤的方法的改进。

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