首页> 外文会议>Optical Diagnostics and Sensing V; Progress in Biomedical Optics and Imaging; vol.6 no.17 >Optical sensing of titanium dioxide nanoparticles within horny layer of human skin and their protecting effect against solar UV radiation
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Optical sensing of titanium dioxide nanoparticles within horny layer of human skin and their protecting effect against solar UV radiation

机译:人体角质层内二氧化钛纳米粒子的光学传感及其对太阳紫外线的防护作用

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摘要

In the present paper the problem of protection of human skin against harmful UV solar rays using nano-si/ed spherical particles of titanium dioxide and sensing their concentration if embedded into skin is considered. Experimental tape-stripping method was used to reveal the in-depth distribution of the particles within the horny layer up to 20 μm. Computer simulations of optical coherence tomography (OCT) investigations of skin and, in particular, horny layer in vitro with and without titanium dioxide particles added were also performed in order to understand, if this modern non-invasive technique is applicable for skin study and revealing the distribution of nanoparticles within the horny layer. The effect of particles size (25-200 nm) and concentration on simulated OCT signals was analyzed. The increase of scattering in the sample (with increase of particles concentration or size) leads to increase of the OCT signal slope and decrease of rear border peak. We also performed simulations implementing the Monte Carlo technique to evaluate the protecting effect of titanium dioxide nanoparticles of different size. The most effective sizes were revealed. Computations were performed for the wavelength of 290.5 nm as the most harmful one. Dependencies of light intensities absorbed, backscattered, and transmitted through the whole horny layer (20 μm thick) on concentration of titanium dioxide particles (0-5%) were obtained and analyzed.
机译:在本文中,考虑了使用纳米级二氧化钛球形球形颗粒保护人体皮肤免受有害的紫外线辐射并检测其嵌入皮肤中的浓度的问题。使用实验性的胶带剥离方法揭示了角质层中颗粒的深度分布,最大可达20μm。为了了解这种现代的非侵入性技术是否适用于皮肤研究和揭示,还进行了计算机的光学相干断层扫描(OCT)研究,特别是体外添加或不添加二氧化钛颗粒的角质层的计算机模拟。角质层中纳米颗粒的分布。分析了粒径(25-200 nm)和浓度对模拟OCT信号的影响。样品中散射的增加(随颗粒浓度或大小的增加)导致OCT信号斜率增加和后边界峰减小。我们还进行了模拟实验,以实现蒙特卡罗技术,以评估不同尺寸的二氧化钛纳米粒子的保护效果。揭示了最有效的尺寸。对290.5 nm的波长进行的计算是最有害的。获得并分析了整个角质层(厚度为20μm)中吸收,反向散射和透射的光强度对二氧化钛颗粒浓度(0-5%)的依赖性。

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