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使用纳米敏感光学相干断层扫描技术进行皮肤癌边缘检测以及与共聚焦显微镜的对比研究。

Skin cancer margin detection using nanosensitive optical coherence tomography and a comparative study with confocal microscopy.

作者信息

Dey Rajib, Alexandrov Sergey, Owens Peter, Kelly Jack, Phelan Sine, Leahy Martin

机构信息

Tissue Optics and Microcirculation Imaging (TOMI) Facility, National Biophotonics and Imaging Platform School of Physics, National University of Ireland, Galway, Galway, Ireland.

Center for Microscopy and Imaging, National University of Ireland, Galway, Galway, Ireland.

出版信息

Biomed Opt Express. 2022 Oct 7;13(11):5654-5666. doi: 10.1364/BOE.474334. eCollection 2022 Nov 1.

Abstract

Excision biopsy and histology represent the gold standard for morphological investigation of the skin, in particular for cancer diagnostics. Nevertheless, a biopsy may alter the original morphology, usually requires several weeks for results, is non-repeatable on the same site and always requires an iatrogenic trauma. Hence, diagnosis and clinical management of diseases may be substantially improved by new non-invasive imaging techniques. Optical Coherence Tomography (OCT) is a non-invasive depth-resolved optical imaging modality based on low coherence interferometry that enables high-resolution, cross-sectional imaging in biological tissues and it can be used to obtain both structural and functional information. Beyond the resolution limit, it is not possible to detect structural and functional information using conventional OCT. In this paper, we present a recently developed technique, nanosensitive OCT (nsOCT), improved using broadband supercontinuum laser, and demonstrate nanoscale sensitivity to structural changes within human skin tissue. The extended spectral bandwidth permitted access to a wider distribution of spatial frequencies and improved the dynamic range of the nsOCT. Firstly, we demonstrate numerical and experimental detection of a few nanometers structural difference using the nsOCT method from single B-scan images of phantoms with sub-micron periodic structures, acting like Bragg gratings, along the depth. Secondly, our study shows that nsOCT can distinguish nanoscale structural changes at the skin cancer margin from the healthy region in en face images at clinically relevant depths. Finally, we compare the nsOCT en face image with a high-resolution confocal microscopy image to confirm the structural differences between the healthy and lesional/cancerous regions, allowing the detection of the skin cancer margin.

摘要

切除活检和组织学检查是皮肤形态学研究的金标准,尤其是在癌症诊断方面。然而,活检可能会改变原始形态,通常需要数周才能得到结果,不能在同一部位重复进行,而且总是需要医源性创伤。因此,新的非侵入性成像技术可以显著改善疾病的诊断和临床管理。光学相干断层扫描(OCT)是一种基于低相干干涉测量的非侵入性深度分辨光学成像方式,能够在生物组织中进行高分辨率的横截面成像,可用于获取结构和功能信息。超出分辨率极限后,使用传统OCT无法检测到结构和功能信息。在本文中,我们介绍了一种最近开发的技术,即使用宽带超连续激光改进的纳米敏感OCT(nsOCT),并展示了其对人体皮肤组织内结构变化的纳米级敏感性。扩展的光谱带宽允许访问更广泛的空间频率分布,并改善了nsOCT的动态范围。首先,我们通过nsOCT方法从具有亚微米周期结构(类似于布拉格光栅)的体模的单B扫描图像中,沿深度方向演示了几纳米结构差异的数值和实验检测。其次,我们的研究表明,nsOCT可以在临床相关深度的正面图像中区分皮肤癌边缘与健康区域的纳米级结构变化。最后,我们将nsOCT正面图像与高分辨率共聚焦显微镜图像进行比较,以确认健康区域与病变/癌性区域之间的结构差异,从而实现皮肤癌边缘的检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c85b/9872867/a04f0dd9e81c/boe-13-11-5654-g001.jpg

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