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SUNSCREEN EFFECTS IN SKIN ANALYZED BY PHOTOACOUSTIC SPECTROSCOPY

机译:光声光谱分析皮肤的防晒效果

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In the photoacoustic technique, the signal is proportional to the heat produced in a sample as a consequence of modulated light absorption. This technique allows the spectroscopic characterization of multilayer systems: as the thermal diffusion length varies with the light modulation frequency, one can obtain the depth profile of the sample by analyzing the frequency-dependence of the signal. As the photoacoustic signal depends on thermal and optical properties of the sample, structural changes in the system under analysis account for signal variations in time. In mis work, photoacoustic spectroscopy was used to characterize samples of sunscreen and the system formed by sunscreen plus skin. Measurements used a 1000W Xe arc lamp as light source, for wavelengths between 240 nm and 400nm. This range corresponds to most of the UV radiation that reaches Earth. Skin samples were disks of about 0,5cm diameter. The absorption spectrum of sunscreen was obtained. Finally, photoacoustics was employed to monitor the absorption kinetics of the sunscreen applied to skin samples. This was done by applying sunscreen in a skin sample and recording the photoacoustic spectra in regular time intervals, up to 90 minutes after application. According to measurements, light absorption by the sunscreen plus skin system stabilizes between 25 and 45 minutes after sunscreen application. Results show that this technique can be utilized to monitor drug delivery and farmacokinetics in skin samples.
机译:在光声技术中,由于调制光吸收的结果,信号与样品中产生的热量成比例。该技术允许多层系统的光谱表征:随着热扩散长度随光调制频率而变化,可以通过分析信号的频率依赖来获得样品的深度分布。由于光声信号取决于样品的热敏性和光学性质,因此在分析下的系统中的结构变化对于信号变化。在MIS工作中,光声光谱学用于表征防晒样品和防晒和皮肤形成的系统。测量使用1000W XE弧灯作为光源,对于240nm和400nm之间的波长。该范围对应于到达地球的大多数UV辐射。皮肤样品的直径约为0.5cm的圆盘。获得防晒剂的吸收光谱。最后,采用光通声测量防晒剂的吸收动力学施用于皮肤样品。这是通过在皮肤样品中施加防晒并以规则的时间间隔记录光声光谱,在施用后高达90分钟。根据测量值,防晒霜系统的光吸收稳定在防晒膜应用后25至45分钟。结果表明,该技术可用于监测皮肤样品中的药物递送和动脉机会。

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