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Light dosimetry in photodynamic therapy using optical fiber delivery

机译:使用光纤传输的光动力疗法中的光剂量学

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摘要

Abstract: This paper considers rapid calculations of light distributions in a tissue for photodynamic therapy. The delivery system considered is a single optical fiber, although other configurations are easily modeled. The influence of optical heterogeneities in the tissue is considered. The optical distributions surrounding an optical fiber within a tissue can be well approximated by a point source of light placed one 'reduced mean free path' (MFP) in front of the fiber tip. One MFP equals 1/($mu$-a$/ $PLU $mu$- s$/(1$MIN@g)). Then the simple diffusion theory expression for 3D diffusion from a point source predicts the light distribution in the tissue. The influence of optical heterogeneities in the tissue can also be well approximated. A method is described for representing regions of increased absorption (such as a region with increased vascularity) as virtual sources of 'negative radiant power' such that linear superposition of the true primary source and the virtual sources yields the net light distribution in the heterogeneous tissue. The method is rapid, flexible, and generally accurate to within about 15% error. The method yields light distributions in optically complex issues. !0
机译:摘要:本文考虑了光动力学治疗中组织中光分布的快速计算。尽管其他配置很容易建模,但考虑的传输系统是单根光纤。考虑了组织中光学异质性的影响。围绕组织内光纤的光学分布可以通过在光纤尖端前面放置一个“减少的平均自由程”(MFP)的点光源来很好地近似。一个MFP等于1 /($ mu $ -a $ / $ PLU $ mu $ -s $ /(1 $ MIN @ g))。然后,用于从点光源进行3D扩散的简单扩散理论表达式可预测组织中的光分布。也可以很好地估计组织中光学异质性的影响。描述了一种用于将吸收增加的区域(例如具有增加的血管性的区域)表示为“负辐射功率”的虚拟光源的方法,以使真实的主光源和虚拟光源的线性叠加产生异质组织中的净光分布。该方法是快速,灵活的,并且通常精确到大约15%的误差内。该方法产生光学复杂问题中的光分布。 !0

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