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MODELING OF LIGHT PROPAGATION IN TURBID MEDIUM USINGMONTE CARLO SIMULATION TECHNIQUE

机译:蒙特卡罗模拟技术在湍流介质中的光传播建模

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The aim of the current study is to simulate the laser photon through biological tissue during PDT therapy using Monte Carlo simulation technique. The model is coded using MATLAB. Interaction of laser light with turbid medium e.g. human tissue depends on the optical properties of the medium i.e. refractive index n, absorption coefficient μ_a, scattering coefficient μ_s and anisotropy factor g. Laser light transport through tissue is governed by the radiative transport equations based on absorption and scattering. Direct sampling is used for step-size generation before interaction via absorption or scattering with the transmitting medium, for deflection and azimuthal angle (θ and ф) when the scattering even occurs. The tissue medium considered is divided into radial, axial and angular grid elements and an infinite narrow beam with normal incidence on the tissue is considered. The laser light absorbance inside the tissue, reflectance at the top boundary of the tissue and transmittance at the bottom are estimated and these quantities are shown varying radially and angularly. Results of reflectance, transmittance and fluence are compared with the already pub-lished results to confirm the authenticity of our coding and these results are found to lie at only 3-4% error.
机译:当前研究的目的是使用蒙特卡罗模拟技术在PDT治疗期间模拟穿过生物组织的激光光子。该模型使用MATLAB进行编码。激光与浑浊介质(例如人体组织取决于介质的光学特性,即折射率n,吸收系数μ_a,散射系数μ_s和各向异性因子g。通过组织的激光传输受基于吸收和散射的辐射传输方程式的控制。直接采样用于在通过与传输介质的吸收或散射相互作用之前生成步长,用于甚至发生散射时的偏转和方位角(θ和ф)。所考虑的组织介质分为径向,轴向和成角度的网格元素,并考虑了在组织上具有垂直入射角的无限窄光束。估计组织内部的激光吸收率,组织顶部边界的反射率和底部的透射率,并且这些数量显示为径向和角度变化。将反射率,透射率和注量的结果与已发布的结果进行比较,以确认我们编码的真实性,发现这些结果的错误率仅为3-4%。

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