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Analytic function for predicting light fluence rate of circular fields on a semi-infinite turbid medium

机译:预测半无限浑浊介质上圆场光通量率的解析函数

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摘要

Accurate determination of in-vivo light fluence rate is critical for preclinical and clinical studies involving photodynamic therapy (PDT). The light fluence distribution in tissue depends on both the tissue optical properties and the incident field size. This study compares the longitudinal light fluence distribution inside biological tissue in the central axis of circular uniform light field with different radii for a range of in-vivo tissue optical properties (absorption coefficients (µa) between 0.01 and 1 cm−1 and reduced scattering coefficients (µs’) between 2 and 40 cm−1). This was done using Monte-Carlo simulations for a semi-infinite turbid medium in an air-tissue interface. The end goal is to develop simple analytical expressions that would fit the results from the Monte Carlo simulation for circular beams with different radii. A 6-parameter model (ϕ/ϕair = (1 − b ⋅ e−λ1d)(C2e−λ2d + C3eλ3d)) can be used to fit MC simulation. Each of these parameters (b, C2, C3, λ1, λ2, and λ3) is expressed as a function of tissue optical properties and beam radius. These results can then be compared against the existing expressions in the literature for broad beam for analysis in both accuracy and applicable range. The analytical function can be used as rapid guide in PDT to calculate in vivo light fluence distribution for known tissue optical properties.
机译:准确确定体内光通量率对于涉及光动力疗法(PDT)的临床前和临床研究至关重要。组织中的光通量分布取决于组织的光学特性和入射场大小。这项研究比较了在一定范围内的体内组织光学特性(吸收系数(μa)在0.01和1 cm <1之间)的不同半径的圆形均匀光场中心轴中生物组织内部的纵向光通量分布。 / sup>,并在2至40 cm -1 之间减小散射系数(µs')。这是使用Monte-Carlo模拟对空气-组织界面中的半无限浑浊介质完成的。最终目标是开发简单的分析表达式,以适合具有不同半径的圆形光束的蒙特卡洛模拟的结果。 6参数模型(ϕ / ϕair =(1-bb⋅e-λ1d)(C2e -λ2d + C3 e λ 3 d ))可用于拟合MC模拟。这些参数( b C 2, C 3,λ1,λ2和λ3)均表示为组织光学特性的函数和光束半径。然后,可以将这些结果与文献中的现有表达式进行比较,以进行宽范围的光束分析,以进行准确度和适用范围的分析。分析功能可以用作PDT中的快速指南,以计算已知组织光学特性的体内光通量分布。

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