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MODELING ENERGY DEPOSITION IN VERY THIN LAYERED MEDIA BY MONTE CARLO SIMULATION

机译:Monte Carlo仿真在非常薄的分层媒体中建模能量沉积

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A Monte Carlo model with special features for modeling of radiation transport through very thin layers has been presented. Over the decades traditional Monte Carlo model has been used to model highly scattering thin layers in skin and may inaccurately capture the effect of thin layers since their interfaces are not perfectly planar and thicknesses non-uniform. If the Monte Carlo model is implemented without special features then the results of the simulation would show no effect of the outer thin layer since the path length of most photons would be significantly larger than the layer thickness and the resulting predicted photon travel would simply not notice the presence of the layer. Examples of multi-layered media are considered where the effect of a very thin absorbing layers is systematically examined using both the traditional Monte Carlo and that with new features incorporated. The results have profound implications in the diagnostic and therapeutic applications of laser in biomedicine and surgery.
机译:已经提出了一种具有非常薄层辐射运输的特殊功能的蒙特卡罗模型。几十年来,传统的蒙特卡罗模型已被用于模拟皮肤中高度散射的薄层,并且可能不准确地捕获薄层的效果,因为它们的界面不是完全平面的并且厚度不均匀。如果蒙特卡罗模型在没有特殊特征的情况下实现,则模拟结果将显示外层薄层的影响,因为大多数光子的路径长度明显大于层厚度,并且所得到的预测光子行程将根本不会注意到层的存在。考虑多层介质的实例,其中使用传统的蒙特卡罗和具有包含新特征的传统的蒙特卡罗系统地检查非常薄的吸收层的效果。结果对激光在生物医学和手术中的诊断和治疗应用方面具有深远的影响。

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