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首页> 外文期刊>Optical review >Optimization of spectral sensitivities of mosaic five-band camera for estimating chromophore densities from skin images including shading and surface reflections
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Optimization of spectral sensitivities of mosaic five-band camera for estimating chromophore densities from skin images including shading and surface reflections

机译:镶嵌五波段相机光谱灵敏度的优化,用于从皮肤图像(包括阴影和表面反射)估计生色团密度

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In this paper, the spectral sensitivities of a mosaic five-band camera were optimized using a numerical skin phantom to perform the separation of chromophore densities, shading and surface reflection. To simulate the numerical skin phantom, the spectral reflectance of skin was first calculated by Monte Carlo simulation of photon migration for different concentrations of melanin, blood and oxygen saturation levels. The melanin and hemoglobin concentration distributions used in the numerical skin phantom were obtained from actual skin images by independent component analysis. The calculated components were assigned as concentration distributions. The spectral sensitivities of the camera were then optimized using a nonlinear technique to estimate the spectral reflectance for skin separation. In this optimization, the spectral sensitivities were assumed to be normally distributed, and the sensor arrangement was identical to that of a conventional mosaic five-band camera. Our findings demonstrated that spectral estimation could be significantly improved by optimizing the spectral sensitivities.
机译:在本文中,使用数字皮肤幻像对镶嵌五波段相机的光谱灵敏度进行了优化,以进行发色团密度,阴影和表面反射的分离。为了模拟数字皮肤幻影,首先通过蒙特卡罗模拟对不同浓度的黑色素,血液和氧气饱和度水平进行光子迁移,计算出皮肤的光谱反射率。通过独立的成分分析,从实际的皮肤图像中获得了用于数字皮肤模型中的黑色素和血红蛋白浓度分布。将计算出的组分指定为浓度分布。然后使用非线性技术优化相机的光谱灵敏度,以估计用于皮肤分离的光谱反射率。在此优化中,假定光谱灵敏度呈正态分布,并且传感器的布置与常规镶嵌式五波段摄像机的布置相同。我们的发现表明,通过优化光谱灵敏度可以显着改善光谱估计。

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