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Can a one-layer optical skin model including melanin and inhomogeneously distributed blood explain spatially resolved diffuse reflectance spectra?

机译:包含黑色素和不均匀分布的血液的一层光学皮肤模型能否解释空间分辨的漫反射光谱?

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Model based analysis of calibrated diffuse reflectance spectroscopy can be used for determining oxygenation and concentration of skin chromophores. This study aimed at assessing the effect of including melanin in addition to hemoglobin (Hb) as chromophores and compensating for inhomogeneously distributed blood (vessel packaging), in a single-layer skin model. Spectra from four humans were collected during different provocations using a twochannel fiber optic probe with source-detector separations 0.4 and 1.2 mm. Absolute calibrated spectra using data from either a single distance or both distances were analyzed using inverse Monte Carlo for light transport and Levenberg-Marquardt for non-linear fitting. The model fitting was excellent using a single distance. However, the estimated model failed to explain spectra from the other distance. The two-distance model did not fit the data well at either distance. Model fitting was significantly improved including melanin and vessel packaging. The most prominent effect when fitting data from the larger separation compared to the smaller separation was a different light scattering decay with wavelength, while the tissue fraction of Hb and saturation were similar. For modeling spectra at both distances, we propose using either a multi-layer skin model or a more advanced model for the scattering phase function.
机译:基于模型的校准漫反射光谱分析可用于确定皮肤发色团的氧化和浓度。这项研究旨在评估在单层皮肤模型中除血红蛋白(Hb)之外还包括黑色素作为生色团并补偿不均匀分布的血液(血管包装)的效果。使用激发源与探测器之间的距离分别为0.4和1.2 mm的双通道光纤探头,在不同的激发过程中收集了来自四个人的光谱。使用来自单个距离或两个距离的数据的绝对校准光谱,使用逆蒙特卡洛(Monte Carlo)进行光传输,使用Levenberg-Marquardt进行非线性拟合进行分析。使用单个距离,模型拟合非常好。但是,估计的模型无法解释其他距离的光谱。两距离模型在任一距离上都无法很好地拟合数据。模型拟合显着改善,包括黑色素和血管包装。当从较大的分隔线与较小的分隔线比较数据时,最显着的效果是不同的光散射衰减随波长变化,而Hb的组织分数和饱和度相似。为了对两个距离的光谱进行建模,我们建议对散射相位函数使用多层蒙皮模型或更高级的模型。

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