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Raman Monte Carlo Simulation for light propagation for tissue with embedded objects

机译:拉曼蒙特卡洛模拟用于嵌入对象的组织的光传播

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摘要

Monte Carlo (MC) stimulation is one of the prominent simulation technique and is rapidly becoming the model of choice to study light-tissue interaction. Monte Carlo simulation for light transport in multi-layered tissue (MCML) is adapted and modelled with different geometry by integrating embedded objects of various shapes (i.e., sphere, cylinder, cuboid and ellipsoid) into the multi-layered structure. These geometries would be useful in providing a realistic tissue structure such as modelling for lymph nodes, tumors, blood vessels, head and other simulation medium. MC simulations were performed on various geometric medium. Simulation of MCML with embedded object (MCML-EO) was improvised for propagation of the photon in the defined medium with Raman scattering. The location of Raman photon generation is recorded. Simulations were experimented on a modelled breast tissue with tumor (spherical and ellipsoidal) and blood vessels (cylindrical). Results were presented in both A-line and B-line scans for embedded objects to determine spatial location where Raman photons were generated. Studies were done for different Raman probabilities.
机译:蒙特卡洛(MC)刺激是一种著名的模拟技术,并且正迅速成为研究光组织相互作用的首选模型。通过将各种形状(即球体,圆柱体,长方体和椭圆体)的嵌入对象集成到多层结构中,可以对多层组织(MCML)中的光传输进行蒙特卡洛模拟并采用不同的几何模型进行建模。这些几何形状将有助于提供逼真的组织结构,例如为淋巴结,肿瘤,血管,头部和其他模拟介质建模。 MC仿真是在各种几何介质上执行的。改进了带有嵌入对象(MCML-EO)的MCML模拟,以利用拉曼散射在定义的介质中传播光子。记录拉曼光子产生的位置。在具有肿瘤(球形和椭圆形)和血管(圆柱形)的模型乳腺组织上进行了模拟实验。结果在嵌入对象的A线和B线扫描中均显示,以确定产生拉曼光子的空间位置。针对不同的拉曼概率进行了研究。

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