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In vivoobservation of age-related structural changes of dermal collagen in human facial skin using collagen-sensitive second harmonic generation microscope equipped with 1250-nm mode-locked Cr:Forsterite laser

机译:使用1250nm模式锁定的CR:Forsterite激光器使用胶原敏敏感的第二谐波产生显微镜,在人体​​面部皮肤中使用年龄相关的真皮胶原蛋白的结构变化。

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摘要

In vivo visualization of human skin aging is demonstrated using a Cr:Forsterite (Cr:F) laser-based, collagen-sensitive second harmonic generation (SHG) microscope. The deep penetration into human skin, as well as the specific sensitivity to collagen molecules, achieved by this microscope enables us to clearly visualize age-related structural changes of collagen fiber in the reticular dermis. Here we investigated intrinsic aging and/or photoaging in the male facial skin. Young subjects show dense distributions of thin collagen fibers, whereas elderly subjects show coarse distributions of thick collagen fibers. Furthermore, a comparison of SHG images between young and elderly subjects with and without a recent life history of excessive sun exposure show that a combination of photoaging with intrinsic aging significantly accelerates skin aging. We also perform image analysis based on two-dimensional Fourier transformation of the SHG images and extracted an aging parameter for human skin. The in vivo collagen-sensitive SHG microscope will be a powerful tool in fields such as cosmeceutical sciences and anti-aging dermatology.
机译:使用CR:Forsterite(Cr:F)激光基,胶原敏敏感二次谐波产生(SHG)显微镜,证明了人体皮肤老化的体内可视化。通过该显微镜实现的人体皮肤以及对胶原蛋白分子的特异性敏感性的深度渗透使我们能够清楚地将胶原纤维中的年龄相关结构变化在网状皮肤中。在这里,我们研究了雄性面部皮肤中的内在老化和/或使用。年轻的科目表现​​出薄胶原纤维的密集分布,而老年人患有厚胶原纤维的粗糙分布。此外,没有过度阳光曝光的近期生命历史的年轻和老年人之间的SHG图像的比较表明,具有内在老化的光学手册的组合显着加速了皮肤衰老。我们还基于SHG图像的二维傅里叶变换进行图像分析,并提取了人体皮肤的老化参数。体内胶原蛋白敏感的SHG显微镜将是一个强大的工具,如保护型科学和抗衰老皮肤科。

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