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Using a melanin granule lattice model to study the thermal effects of pulsed and scanning light irradiations through a measurement aperture

机译:使用黑色素颗粒晶格模型研究通过测量孔径的脉冲和扫描光辐照的热效应

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摘要

Optical radiation hazards of scanning light sources are often evaluated using pulsed light source criteria, with the relevant pulse parameter equivalent to the scanning light source determined by the energy delivered through a measurement aperture. However, physical equivalence has not been completely understood: a pulsed light source is temporally dynamic but spatially stationary, while a scanning light source is temporally stationary but spatially dynamic. This study introduces a numerical analysis based upon the melanin granule lattice model to investigate the equivalence of scanning and pulsed light sources through a measurement aperture and their respective thermal effects in the pigmented retinal layer. The numerical analysis calculates the thermal contribution of individual melanin granules with varying temporal sequence, and finds that temperature changes and thermal damage thresholds for the two different types of light sources were not equal. However, dwell times of 40 to 200 μsec did not produce significant differences between pulsed and scanning light sources in temperature change and thermal damage thresholds to the sample tissue.
机译:经常使用脉冲光源标准评估扫描光源的光辐射危害,其相关脉冲参数等效于由通过测量孔传递的能量确定的扫描光源。但是,物理等效性尚未完全理解:脉冲光源在时间上是动态的,但是在空间上是固定的,而扫描光源在时间上是固定的,但是在空间上是动态的。这项研究引入了基于黑色素颗粒晶格模型的数值分析,以研究通过测量孔径的扫描和脉冲光源的等效性及其在色素视网膜层中的各自热效应。数值分析计算了不同时间序列的单个黑色素颗粒的热贡献,发现两种不同类型光源的温度变化和热损伤阈值不相等。但是,40到200μsec的驻留时间在脉冲光源和扫描光源之间在温度变化和对样品组织的热损伤阈值方面不会产生明显差异。

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