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DAMAGE THRESHOLDS FOR IRREGULARLY PULSED EXPOSURE OF THE RETINA

机译:视网膜不规则脉冲曝光的损伤阈值

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The international laser safety standard 1EC 60825-1 in its second edition does not provide a method on how to analyse pulse trains with irregular pulse peak, powers. A retinal thermal injury model is used to study examples of pulse trains with irregular peak powers. It is shown that if an individual pulse is only a factor of 1.5 higher in power than the other pulses of the train, for the conditions studied (small source, 532 nm wavelength, cooling between pulses) the retinal damage is induced solely by the one higher pulse and the other pulses do not contribute to the damage process. For this case, the N~(-1/4) rule is overrestrictive and the Total-On-Time-Pulse rule can seriously understimate the risk and shall not be applied to analyse pulse trains with varying pulse peak power. As any standardised method to analyse irregular pulse patterns that will be developed in the future will be rather a worst case approach, the retinal thermal damage model developed by the Austrian Research Centers Seibersdorf can be used as a validated tool for hazard analysis of specific emission patterns for pulse durations in the millisecond regime.
机译:国际激光安全标准1EC 60825-1在其第二版中未提供有关如何分析具有不规则脉冲峰值功率的脉冲序列的方法。视网膜热损伤模型用于研究具有不规则峰值功率的脉冲序列的示例。结果表明,如果单个脉冲的功率仅比火车的其他脉冲高1.5倍,则对于所研究的条件(小光源,532 nm波长,脉冲之间的冷却),视网膜损伤仅由一个脉冲引起较高的脉冲和其他脉冲无助于损坏过程。在这种情况下,N〜(-1/4)规则过于严格,并且“总按时脉冲”规则会严重降低风险,因此不得用于分析具有不同脉冲峰值功率的脉冲序列。由于将来将要开发的任何分析不规则脉冲模式的标准化方法都将是最坏的情况,因此奥地利研究中心塞伯斯多夫开发的视网膜热损伤模型可以用作对特定排放模式进行危害分析的有效工具。以毫秒为单位的脉冲持续时间。

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