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用偏振敏感光学相干断层扫描技术对人体烧伤进行活体成像。

In vivo imaging of human burn injuries with polarization-sensitive optical coherence tomography.

机构信息

Pohang University of Science and Technology, Department of Mechanical Engineering, Pohang 790-784, Republic of Korea.

出版信息

J Biomed Opt. 2012 Jun;17(6):066012. doi: 10.1117/1.JBO.17.6.066012.

Abstract

The accurate determination of burn depth is critical in the clinical management of burn wounds. Polarization-sensitive optical coherence tomography (PS-OCT) has been proposed as a potentially non-invasive method for determining burn depth by measuring thermally induced changes in the structure and birefringence of skin, and has been investigated in pre-clinical burn studies with animal models and ex vivo human skin. In this study, we applied PS-OCT to the in-vivo imaging of two pediatric burn patients. Deep and superficial burned skins along with contralateral controls were imaged in 3D. The imaging size was 8 mm × 6 mm × 2 mm in width, length, and depth in the air respectively, and the imaging time was approximately 6 s per volume. Superficially burned skins exhibited the same layered structure as the contralateral controls, but more visible vasculature and reduced birefringence compared to the contralateral controls. In contrast, a deeply burned skin showed loss of the layered structure, almost absent vasculature, and smaller birefringence compared to superficial burns. This study suggested the vasculature and birefringence as parameters for characterizing burn wounds.

摘要

准确确定烧伤深度在烧伤创面的临床处理中至关重要。偏振敏感光相干断层扫描(PS-OCT)已被提出作为一种潜在的非侵入性方法,通过测量皮肤结构和双折射的热诱导变化来确定烧伤深度,并已在动物模型和离体人皮肤的临床前烧伤研究中进行了研究。在这项研究中,我们将 PS-OCT 应用于两名儿科烧伤患者的体内成像。深度和浅度烧伤皮肤以及对侧对照皮肤均以三维方式成像。空气成像的尺寸分别为宽度 8mm×长度 6mm×深度 2mm,每个体积的成像时间约为 6s。与对侧对照皮肤相比,浅度烧伤皮肤表现出与对侧对照皮肤相同的分层结构,但血管更明显,双折射降低。相比之下,深度烧伤皮肤显示出分层结构的丧失,几乎没有血管,并且双折射比浅度烧伤皮肤小。这项研究表明血管和双折射可作为表征烧伤创面的参数。

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