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用于体内疤痕组织诊断和治疗评估的 Mueller 矩阵显微镜

Mueller Matrix Microscopy for In Vivo Scar Tissue Diagnostics and Treatment Evaluation.

机构信息

Hannover Centre for Optical Technologies, Leibniz University Hannover, Nienburger Straße 17, 30167 Hannover, Germany.

Cluster of Excellence PhoenixD (Photonics, Optics and Engineering-Innovation Across Disciplines), Welfengarten 1A, 30167 Hannover, Germany.

出版信息

Sensors (Basel). 2022 Dec 1;22(23):9349. doi: 10.3390/s22239349.

Abstract

Scars usually do not show strong contrast under standard skin examination relying on dermoscopes. They usually develop after skin injury when the body repairs the damaged tissue. In general, scars cause multiple types of distress such as movement restrictions, pain, itchiness and the psychological impact of the associated cosmetic disfigurement with no universally successful treatment option available at the moment. Scar treatment has significant economic impact as well. Mueller matrix polarimetry with integrated autofocus and automatic data registration can potentially improve scar assessment by the dermatologist and help to make the evaluation of the treatment outcome objective. Polarimetry can provide new physical parameters for an objective treatment evaluation. We show that Mueller matrix polarimetry can enable strong contrast for in vivo scar imaging. Additionally, our results indicate that the polarization stain images obtained form there could be a useful tool for dermatology. Furthermore, we demonstrate that polarimetry can be used to monitor wound healing, which may help prevent scarring altogether.

摘要

疤痕通常在依靠皮肤镜的标准皮肤检查下不会呈现出强烈的对比。它们通常在皮肤损伤后出现,此时身体会修复受损的组织。总的来说,疤痕会导致多种困扰,如运动受限、疼痛、瘙痒以及与美容缺陷相关的心理影响,目前还没有普遍有效的治疗方法。疤痕治疗也会产生重大的经济影响。集成自动对焦和自动数据注册的 Mueller 矩阵偏振术有可能通过皮肤科医生改善疤痕评估,并有助于使治疗效果的评估客观化。偏振术可以为客观的治疗评估提供新的物理参数。我们证明 Mueller 矩阵偏振术可以实现体内疤痕成像的强烈对比。此外,我们的结果表明,从那里获得的偏振染色图像可能是皮肤科的有用工具。此外,我们证明偏振术可用于监测伤口愈合,这可能有助于完全防止疤痕形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcb0/9740816/2245d352b3b8/sensors-22-09349-g001.jpg

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