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Determination of chromophore concentrations from spatially resolved skin measurements

机译:通过空间分辨皮肤测量确定发色团浓度

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Chromophore concentrations from skin contain information about the blood parameters, for example total hemoglobin content or antioxidant status of the skin. Deviations from the normal values of the concentrations may indicate pathologies. As the chromophore concentrations are determined from skin absorption coefficients, the optical absorption spectra of the isolated skin chromophores have to be known in advance, enabling least squares fitting of the basis spectra to the skin absorption coefficient. It could be shown that spectrally and spatially resolved reflectance in combination with a determination of absorption and reduced scattering coefficients from a look-up table provides a means for quantification of chromophores, although the accuracy largely depends on the tissue model. Good qualitative results can also be obtained with the homogenous tissue model used here. For example, it could be shown that the hemoglobin basis spectra determined from human whole blood and the pure water absorption fit very well to the skin absorption coefficients, but the ex vivo carotene spectra does not. Therefore it was examined how the carotene spectra change from ex vivo to in vivo. Interindividual and interpositional variation of the optical parameters could also be evaluated using this method as well as the dependence of determined optical parameters on the source-detector separation
机译:来自皮肤的生色团浓度包含有关血液参数的信息,例如总血红蛋白含量或皮肤的抗氧化剂状态。浓度正常值的偏离可能表示病理。由于发色团浓度是由皮肤吸收系数确定的,因此必须事先知道分离出的皮肤发色团的光吸收光谱,以使基本光谱与皮肤吸收系数的最小二乘拟合。可以证明,光谱和空间分辨的反射率与查找表中吸收率的确定和散射系数的降低相结合,为生色团的定量提供了一种手段,尽管其准确性很大程度上取决于组织模型。使用此处使用的同质组织模型也可以获得良好的定性结果。例如,可以证明从人全血和纯水吸收确定的血红蛋白基础光谱与皮肤吸收系数非常吻合,但离体胡萝卜素光谱却不然。因此,研究了胡萝卜素光谱从离体到体内如何变化。还可使用此方法评估光学参数的个体间和中介性变化,以及确定的光学参数对源-探测器分离的依赖性

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