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In vivo multiphoton microscopy associated to 3D image processing for human skin characterization

机译:与3D图像处理相关的体内多光子显微镜用于人类皮肤表征

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Multiphoton microscopy has emerged in the past decade as a promising non-invasive skin imaging technique. The aim of this study was to assess whether multiphoton microscopy coupled to specific 3D image processing tools could provide new insights into the organization of different skin components and their age-related changes. For that purpose, we performed a clinical trial on 15 young and 15 aged human female volunteers on the ventral and dorsal side of the forearm using the Dermalnspect® medical imaging device. We visualized the skin by taking advantage of intrinsic multiphoton signals from cells, elastic and collagen fibers. We also developed 3D image processing algorithms adapted to in vivo multiphoton images of human skin in order to extract quantitative parameters in each layer of the skin (epidermis and superficial dermis). The results show that in vivo multiphoton microscopy is able to evidence several skin alterations due to skin aging: morphological changes in the epidermis and modifications in the quantity and organization of the collagen and elastic fibers network. In conclusion, the association of multiphoton microscopy with specific image processing allows the three-dimensional organization of skin components to be visualized and quantified thus providing a powerful tool for cosmetic and dermatological investigations.
机译:在过去的十年中,多光子显微镜已经成为一种有前途的无创皮肤成像技术。这项研究的目的是评估多光子显微镜结合特定的3D图像处理工具是否可以为不同皮肤成分的组织及其与年龄相关的变化提供新的见解。为此,我们使用Dermalnspect®医学成像设备对前臂腹侧和背侧的15位年轻女性和15位老年女性女性志愿者进行了一项临床试验。我们利用来自细胞,弹性纤维和胶原纤维的内在多光子信号来可视化皮肤。我们还开发了适用于人体皮肤的体内多光子图像的3D图像处理算法,以提取皮肤各层(表皮和浅层真皮)中的定量参数。结果表明,体内多光子显微镜能够证明由于皮肤老化而引起的几种皮肤改变:表皮的形态变化以及胶原蛋白和弹性纤维网络的数量和组织的改变。总之,多光子显微镜与特定图像处理的结合使皮肤成分的三维组织得以可视化和量化,从而为美容和皮肤病学研究提供了强大的工具。

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