Biophotonics Laboratory, Department of Applied Mechanics, Indian Institute of Technology Madras, Chennai, India.
Int J Numer Method Biomed Eng. 2022 Jan;38(1):e3546. doi: 10.1002/cnm.3546. Epub 2021 Nov 14.
Spatially resolved diffuse reflectance spectroscopy (SRDRS) is a non-invasive optical technique that helps in clinical diagnosis of various tissue microcirculation and skin pigmentation disorders based on collected backscattered light from multi-layered tissue. The extraction of the optical properties from the reflectance spectrum using analytical solutions is laborious. Model-based light tissue interaction studies help in quantifying the optical properties. This work presents the use of finite element models of light tissue interaction for this purpose. A bilayer model mimicking human skin was considered and the diffused reflectance spectra at multiple detector points were generated using finite element modelling for varying melanin concentration, epidermal thickness, blood volume fraction, oxygen saturation and scattering components. The reflectance value based on varying optical parameters from multiple detection points lead to the generation of a look-up table (LUT), which is further used for finding the tissue parameters that contribute to the spatially resolved reflectance values. The tissue parameters estimated after inverse modelling showed a high degree of agreement with the expected tissue parameters for a test dataset different from the training dataset.
空间分辨漫反射光谱(SRDRS)是一种非侵入性的光学技术,它基于从多层组织中后向散射的光,有助于对各种组织微循环和皮肤色素沉着障碍进行临床诊断。从反射光谱中提取光学特性需要使用解析解,这是一项繁琐的工作。基于模型的光组织相互作用研究有助于量化光学特性。这项工作展示了为此目的使用光组织相互作用的有限元模型。考虑了模仿人体皮肤的双层模型,并使用有限元建模生成了多个探测器点的漫反射光谱,用于改变黑色素浓度、表皮厚度、血液体积分数、氧饱和度和散射分量。基于多个检测点的变化光学参数的反射值导致生成查找表 (LUT),然后进一步用于找到导致空间分辨反射值的组织参数。反向建模后估计的组织参数与来自与训练数据集不同的测试数据集的预期组织参数高度一致。