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CHARACTERIZATION OF HUMAN SKIN THROUGH PHOTOACOUSTIC SPECTROSCOPY

机译:通过光声光谱表征人体皮肤

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The photoacoustic technique is based on the absorption of modulated light by a sample and subsequent heat generation. This generates thermal waves that propagate in the surrounding media. According to the Rosencwaig-Gersho Model, such waves produce the pressure oscillation detected as the photoacoustic signal. This technique allows the spectroscopic characterization of multilayer systems: as the thermal diffusion length varies with the modulation frequency of the absorbed light, the depth profile of a sample can be studied by the analysis of the photoacoustic signal at different modulation frequencies. In this work, photoacoustic spectroscopy was used to characterize different human skin samples. Measurements were performed at 70Hz and 17Hz, using a 1000W Xe arc lamp as the light source, for wavelengths between 240nm and 700nm. Skin samples were about 0,5cm diameter. It was possible to obtain the photoacoustic absorption spectra of the stratum corneum and of a deeper layer of epidermis; when the lower modulation frequency is utilized, photoacoustic spectroscopy characterizes the absorption of the whole epidermis, because in this case the thermal diffusion length is thicker than that of the stratum corneum. Photoacoustic spectroscopy was also employed to monitor the drying kinetics of the skin. This was done by analyzing the time evolution of the photoacoustic spectra of skin samples. Pre-treatment of the samples included different periods in a drying chamber. Measurements show that the photoacoustic spectra changes according to the humidity of the skin. Future work includes detailed monitoring of skin hydration.
机译:光声技术基于样品和随后的发热的调节光的吸收。这产生了在周围介质中传播的热波。根据RosencWAIG-GERSHO模型,这种波产生检测到作为光声信号的压力振荡。该技术允许多层系统的光谱表征:随着热扩散长度随着吸收光的调制频率而变化,可以通过在不同调制频率下的光声信号进行分析来研究样品的深度分布。在这项工作中,使用光声光谱用于表征不同的人体皮肤样品。使用1000W XE弧灯作为光源,在70Hz和17Hz处进行测量,对于240nm和700nm之间的波长。皮肤样品直径约为0.5℃。可以获得地层的光声吸收光谱和深层表皮层;当利用较低的调制频率时,光声光谱表征整个表皮的吸收,因为在这种情况下,热扩散长度厚于地层岩体。光声光谱也用于监测皮肤的干燥动力学。这是通过分析皮肤样品光声光谱的时间展现来完成的。样品的预处理包括干燥室中的不同时期。测量表明,光声光谱根据皮肤的湿度而变化。未来的工作包括对皮肤水合的详细监测。

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