Estimation of Scattering Properties Modifications Caused by In Vivo Human Skin Optical Clearing Using Line-Field Confocal Optical Coherence Tomography.

Sergey M Zaytsev, Léna Waszczuk, Jonas Ogien, Arnaud Dubois, Walter Blondel, Marine Amouroux
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Abstract

The image contrast and probing depth of optical methods applied to in vivo skin could be improved by reducing skin scattering using the optical clearing method. The aim of this study was to quantify, from line-field confocal optical coherence tomography (LC-OCT) 3D images, the modifications of skin scattering properties in vivo during optical clearing. Nine mixtures of optical clearing agents were used in combination with physical and chemical permeation enhancers on the human skin of three healthy volunteers. Scattering coefficient and anisotropy factor of the epidermis and the upper dermis were estimated from the 3D LC-OCT images of skin using an exponential decay model of the in-depth intensity profile. We were able to demonstrate a decrease in epidermal scattering (down to 33%) related to optical clearing, with the best results obtained by a mixture of polyethylene glycol, oleic acid, and propylene glycol.

利用线场共焦光学相干断层成像技术估算体内人体皮肤光学清除造成的散射特性改变。
通过使用光学清除方法减少皮肤散射,可以提高应用于体内皮肤的光学方法的图像对比度和探测深度。本研究旨在从线场共聚焦光学相干断层扫描(LC-OCT)三维图像中量化光学清除过程中皮肤散射特性的变化。在三名健康志愿者的人体皮肤上使用了九种光学清除剂混合物以及物理和化学渗透促进剂。利用深度强度曲线的指数衰减模型,从皮肤的三维 LC-OCT 图像中估算出表皮和真皮上层的散射系数和各向异性因子。我们能够证明表皮散射的降低(低至 33%)与光学清除有关,聚乙二醇、油酸和丙二醇混合物的效果最好。
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