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An improved analytic function for predicting light fluence rate in circular fields on a semi-infinite geometry

机译:一种改进的解析函数,用于预测半无限几何上圆形场中的光通量率

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Accurate determination of in-vivo light fluence rate is critical for preclinical and clinical studies involving photodynamic therapy (PDT). This study compares the longitudinal light fluence distribution inside biological tissue in the central axis of a 1 cm diameter circular uniform light field for a range of in-vivo tissue optical properties (absorption coefficients (μ_a) between 0.01 and 1 cm~(-1) and reduced scattering coefficients (μ_s') 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 an analytical expression that would fit the results from the Monte Carlo simulation for both the 1 cm diameter circular beam and the broad beam. Each of these parameters is expressed as a function of tissue optical properties. These results can then be compared against the existing expressions in the literature for broad beam for analysis in both accuracy and applicable range. Using the 6-parameter model, the range and accuracy for light transport through biological tissue is improved and may be used in the future as a guide in PDT for 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。这项研究比较了在一系列体内组织光学特性(吸收系数(μ_a)在0.01和1 cm〜(-1)之间)的情况下,在直径为1 cm的圆形均匀光场的中心轴中生物组织内部的纵向光通量分布。并降低了2至40 cm〜(-1)之间的散射系数(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。最终目标是开发一个解析表达式,以适合直径为1 cm的圆形光束和宽光束的蒙特卡罗模拟结果。这些参数中的每一个都表示为组织光学特性的函数。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。使用6参数模型,可以改善通过生物组织的光传输的范围和准确性,并且可以在将来用作PDT中用于已知组织光学特性的光通量分布的指南。

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