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A quantitative and non-contact technique to characterise microstructural variations of skin tissues during photo-damaging process based on Mueller matrix polarimetry

机译:基于Mueller矩阵旋光法的光损伤过程中表征皮肤组织微结构变化的定量非接触技术

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摘要

Skin tissue consists of collagen and elastic fibres, which are highly susceptible to damage when exposed to ultraviolet radiation (UVR), leading to skin aging and cancer. However, a lack of non-invasive detection methods makes determining the degree of UVR damage to skin in real time difficult. As one of the fundamental features of light, polarization can be used to develop imaging techniques capable of providing structural information about tissues. In particular, Mueller matrix polarimetry is suitable for detecting changes in collagen and elastic fibres. Here, we demonstrate a novel, quantitative, non-contact and in situ technique based on Mueller matrix polarimetry for monitoring the microstructural changes of skin tissues during UVR-induced photo-damaging. We measured the Mueller matrices of nude mouse skin samples, then analysed the transformed parameters to characterise microstructural changes during the skin photo-damaging and self-repairing processes. Comparisons between samples with and without the application of a sunscreen showed that the Mueller matrix-derived parameters are potential indicators for fibrous microstructure in skin tissues. Histological examination and Monte Carlo simulations confirmed the relationship between the Mueller matrix parameters and changes to fibrous structures. This technique paves the way for non-contact evaluation of skin structure in cosmetics and dermatological health.
机译:皮肤组织由胶原蛋白和弹性纤维组成,当暴露于紫外线(UVR)时极易受到损害,从而导致皮肤老化和癌症。然而,缺乏非侵入性检测方法使得实时确定UVR对皮肤的损害程度变得困难。作为光的基本特征之一,偏振可用于开发能够提供有关组织的结构信息的成像技术。尤其是,穆勒矩阵旋光法适合检测胶原蛋白和弹性纤维的变化。在这里,我们展示了一种基于Mueller矩阵极化技术的新颖,定量,非接触式和原位技术,用于监测UVR诱导的光损伤过程中皮肤组织的微观结构变化。我们测量了裸鼠皮肤样品的Mueller矩阵,然后分析了转换后的参数以表征皮肤光损伤和自我修复过程中的微结构变化。在使用和不使用防晒霜的样品之间进行的比较表明,穆勒基质衍生的参数是皮肤组织中纤维微结构的潜在指标。组织学检查和蒙特卡洛模拟证实了Mueller矩阵参数与纤维结构变化之间的关系。该技术为化妆品和皮肤病学健康方面的皮肤结构的非接触式评估铺平了道路。

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