Johnson & Johnson Consumer Inc., Beauty Innovation Platforms, Skillman, New Jersey, United States.
Johnson & Johnson Santé Beauté, Global Consumer R&D, Issy-les-Moulineaux, France.
J Biomed Opt. 2018 Mar;23(3):1-4. doi: 10.1117/1.JBO.23.3.030501.
Two-photon fluorescence (TPF) and second harmonic generation (SHG) microscopy provide direct visualization of the skin dermal fibers in vivo. A typical method for analyzing TPF/SHG images involves averaging the image intensity and therefore disregarding the spatial distribution information. The goal of this study is to develop an algorithm to document age-related effects of the dermal matrix. TPF and SHG images were acquired from the upper inner arm, volar forearm, and cheek of female volunteers of two age groups: 20 to 30 and 60 to 80 years of age. The acquired images were analyzed for parameters relating to collagen and elastin fiber features, such as orientation and density. Both collagen and elastin fibers showed higher anisotropy in fiber orientation for the older group. The greatest difference in elastin fiber anisotropy between the two groups was found for the upper inner arm site. Elastin fiber density increased with age, whereas collagen fiber density decreased with age. The proposed analysis considers the spatial information inherent to the TPF and SHG images and provides additional insights into how the dermal fiber structure is affected by the aging process.
双光子荧光(TPF)和二次谐波产生(SHG)显微镜可提供皮肤真皮纤维的体内直接可视化。分析 TPF/SHG 图像的典型方法包括平均图像强度,因此忽略了空间分布信息。本研究的目的是开发一种算法来记录真皮基质的与年龄相关的影响。从女性志愿者的上臂内侧、前臂掌侧和脸颊采集 TPF 和 SHG 图像,志愿者分为两个年龄组:20 至 30 岁和 60 至 80 岁。对采集的图像进行了分析,以获取与胶原和弹性纤维特征相关的参数,例如取向和密度。对于年龄较大的组,胶原和弹性纤维的纤维取向各向异性更高。两组之间弹性纤维各向异性的最大差异出现在上臂内侧部位。弹性纤维密度随年龄增加,而胶原纤维密度随年龄减少。所提出的分析考虑了 TPF 和 SHG 图像固有的空间信息,并提供了有关真皮纤维结构如何受老化过程影响的更多见解。