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Control of optical properties of human skin by embedding light scattering nanoparticles

机译:通过嵌入光散射纳米粒子来控制人类皮肤的光学特性

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Nowadays there is an acute problem to protect human skin against harmful influence of violet and ultraviolet solar radiation. The aim of this research is to evaluate, how optical properties of the horny layer of human skin can be changed by imbedding the titanium dioxide (TiO_2) fine particles in order to achieve the maximal attenuation of the UV solar radiation. In-depth distribution in the skin of TiO_2 particles typically achieved with the sunscreens is determined experimentally by the tape-stripping technique. Computer code implementing the Monte Carlo method is used to simulate photon migration within 20-μm thick horny layer partially filled with nano-sized TiO_2 spheres. Dependencies of absorbed by and reflected from, as well as transmitted through the horny layer UV radiation of two wavelengths (290.5 and 400 nm) on the concentration of TiO_2 particles are obtained and analyzed.
机译:如今,存在一个严重的问题,就是要保护人体皮肤免受紫外线和紫外线的有害影响。这项研究的目的是评估如何通过嵌入二氧化钛(TiO_2)微粒来改变人皮肤角质层的光学特性,以实现紫外线太阳辐射的最大衰减。通过胶带剥离技术,实验确定了通常用防晒霜获得的TiO_2颗粒在皮肤中的深度分布。使用实现蒙特卡洛方法的计算机代码来模拟光子在部分填充了纳米TiO_2球的20μm厚角质层中的迁移。获得并分析了两种波长(290.5和400 nm)的角质层紫外线辐射的吸收,反射以及透过角膜对它们的依赖性,并对其进行了分析。

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