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Monte Carlo simulation of light-tissue interaction: three-dimensional simulation for trans-illumination-based imaging of skin lesions

机译:蒙特卡罗模拟光与组织的相互作用:三维模拟,用于基于透射照明的皮肤病变成像

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摘要

Three-dimensional, voxel-based, and wavelength-dependent skin lesion models are developed and simulated using Monte Carlo techniques. The optical geometry of the Nevoscope with trans-illumination is used in the simulations for characterizing the lesion thickness. Based on the correlation analysis between the lesion thickness and the diffuse reflectance, optical wavelengths are selected for multispectral imaging of skin lesions using the Nevoscope. Tissue optical properties reported by various researchers are compiled together to form a voxel library. Tissue models used in the simulations are developed using the voxel library which offers flexibility in updating the optical properties and adding new media types into the models independent of the Monte Carlo simulation code.
机译:使用蒙特卡洛技术开发并模拟了三维,基于体素和波长相关的皮肤病变模型。在模拟中使用具有透射照明的内窥镜的光学几何形状来表征病变厚度。基于病变厚度和漫反射率之间的相关性分析,选择光学波长,以便使用内窥镜对皮肤病变进行多光谱成像。各种研究人员报告的组织光学特性被汇总在一起以形成体素文库。模拟中使用的组织模型是使用体素库开发的,该体素库提供了更新光学特性和向模型中添加新介质类型的灵活性,而与Monte Carlo模拟代码无关。

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