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Effect of multiple scattering of light by titanium dioxide nanoparticles implanted into a superficial skin layer on radiation transmission in different wavelength ranges

机译:植入表皮层的二氧化钛纳米粒子对光的多次散射对不同波长范围内辐射传输的影响

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The propagation of radiation in different spectral ranges in a superficial skin layer partially filled with titanium dioxide nanoparticles at the volume concentration 0.67%—2.25% is simulated by the Monte-Carlo method. This volume concentration corresponds to the maximum admissible concentrations of particles that most efficiently attenuate radiation in the independent scattering regime. The transmission of radiation at 307, 400, and 500 nm in a 20-μm thick skin layer is simulated and the effect of nanoparticles on the contributions from photons of different scattering orders to transmission is considered. It is shown that the administration of nanoparticles results in the broadening of the scattering-order distribution of photons propagated through the skin layer and the shift of the maximum of this distribution in the direction of a greater number of scattering events at wavelengths 400 and 500 nm, the effect being more pronounced at 400 nm. The increase in the scattering order elongates photon trajectories in the medium and enhances diffusely scattered radiation, thereby reducing transmission.
机译:用蒙特卡洛方法模拟了部分光谱范围为0.67%-2.25%的部分填充二氧化钛纳米颗粒的表皮层中不同光谱范围内辐射的传播。该体积浓度对应于在独立散射方案中最有效衰减辐射的颗粒的最大容许浓度。模拟了20μm厚表皮层中307、400和500 nm处的辐射传输,并考虑了纳米粒子对不同散射级的光子对传输的贡献的影响。结果表明,纳米颗粒的施用导致传播通过皮肤层的光子的散射顺序分布变宽,并且该分布的最大值在波长为400和500 nm的大量散射事件的方向上发生位移。 ,该效应在400 nm处更为明显。散射顺序的增加拉长了介质中的光子轨迹,并增强了散射的辐射,从而降低了透射率。

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