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In vivo characterization of structural and optical properties of human skin by combined photothermal radiometry and diffuse reflectance spectroscopy

机译:通过组合光热辐射测定和漫射反射光谱体体内表征人体皮肤的结构和光学性质

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We have combined two optical techniques to enable simultaneous assessment of structure and composition of human skin in vivo: Pulsed photothermal radiometry (PPTR), which involves measurements of transient dynamics in mid-infrared emission from sample surface after exposure to a light pulse, and diffuse reflectance spectroscopy (DRS) in visible part of the spectrum. Namely, while PPTR is highly sensitive to depth distribution of selected absorbers, DRS provides spectral information and thus enables differentiation between various chromophores. The accuracy and robustness of the inverse analysis is thus considerably improved compared to use of either technique on its own. Our analysis approach is simultaneous multi-dimensional fitting of the measured PPTR signals and DRS with predictions from a numerical model of light-tissue interaction (a.k.a. inverse Monte Carlo). By using a three-layer skin model (epidermis, dermis, and subcutis), we obtain a good match between the experimental and modeling data. However, dividing the dermis into two separate layers (i.e., papillary and reticular dermis) helps to bring all assessed parameter values within anatomically and physiologically plausible intervals. Both the quality of the fit and the assessed parameter values depend somewhat on the assumed scattering properties for skin, which vary in literature and likely depend on subject's age and gender, anatomical site, etc. In our preliminary experience, simultaneous fitting of the scattering properties is possible and leads to considerable improvement of the fit. The described approach may thus have a potential for simultaneous determination of absorption and scattering properties of human skin in vivo.
机译:我们已经组合了两种光学技术,以便能够同时评估体内人体皮肤的结构和组合物:脉冲光热辐射测量(PPTR),其涉及在暴露于光脉冲后从样品表面进行中红外发射中的瞬态动力学的测量,并扩散光谱部分的反射光谱(DRS)。即,虽然PPTR对所选吸收剂的深度分布非常敏感,但是DRS提供光谱信息,因此能够在各种发色团之间进行差异。因此,与自己的任一技术的使用相比,逆分析的准确性和稳健性显着提高。我们的分析方法是测量的PPTR信号的同时多维配合,以及来自光组织相互作用的数值模型的预测(A.K.A.逆蒙特卡罗)的预测。通过使用三层皮肤模型(表皮,真皮和软骨),我们在实验和建模数据之间获得良好的匹配。然而,将真皮分成两个单独的层(即,乳头状和网状皮肤)有助于在解剖学和生理上卓越的间隔内带来所有评估的参数值。适合的质量和评估的参数值都略微依赖于对皮肤的假定散射特性有所依赖于文学中各种各样的散射性能,并且可能依赖于我们的初步经验中的受试者的年龄和性别,解剖部位等。同时拟合散射特性是可能的,并导致适合的相当大。因此,所描述的方法可以具有同时测定体内人体皮肤的吸收和散射特性的可能性。

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