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In vitro fluorescence measurements and Monte Carlo simulation of laser irradiation propagation in porcine skin tissue

机译:猪皮肤组织中激光辐射传播的体外荧光测量和蒙特卡洛模拟

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摘要

In dermatology, the in vivo spectral fluorescence measurements of human skin can serve as a valuable supplement to standard non-invasive techniques for diagnosing various skin diseases. However, quantitative analysis of the fluorescence spectra is complicated by the fact that skin is a complex multi-layered and inhomogeneous organ, with varied optical properties and biophysical characteristics. In this work, we recorded, in vitro, the laser-induced fluorescence emission signals of healthy porcine skin, one of the animals, which is considered as one of the most common models for investigations related to medical diagnostics of human cutaneous tissues. Differences were observed in the form and intensity of the fluorescence signal of the porcine skin, which can be attributed to the different concentrations of the native fluorophores and the variable physical and biological conditions of the skin tissue. As the light transport in the tissue target is directly influencing the absorption and the fluorescence emission signals, we performed Monte Carlo simulation of the light distribution in a five-layer model of human skin tissue, with a pulsed ultraviolet laser beam.
机译:在皮肤病学中,人类皮肤的体内光谱荧光测量可以作为诊断各种皮肤疾病的标准非侵入性技术的宝贵补充。然而,荧光光谱的定量分析由于皮肤是复杂的多层且不均匀的器官,具有变化的光学特性和生物物理特性而变得复杂。在这项工作中,我们在体外记录了健康猪皮肤(其中一种动物)的激光诱导的荧光发射信号,该信号被认为是与人类皮肤组织的医学诊断有关的最常见研究模型之一。观察到猪皮肤荧光信号的形式和强度存在差异,这可以归因于天然荧光团浓度的不同以及皮肤组织可变的物理和生物学状况。由于组织目标中的光传输直接影响吸收和荧光发射信号,因此我们使用脉冲紫外激光束对人体皮肤组织的五层模型进行了光分布的蒙特卡罗模拟。

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