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体外对比健康皮肤的基底细胞癌样本的非线性显微镜图像的定量分析

Quantitative Analysis on Ex Vivo Nonlinear Microscopy Images of Basal Cell Carcinoma Samples in Comparison to Healthy Skin.

机构信息

Wigner RCP, Institute for Solid State Physics and Optics, P.O. Box 49, Budapest, H-1525, Hungary.

Department of Dermatology, Venereology and Dermatooncology, Semmelweis University, Budapest, Hungary.

出版信息

Pathol Oncol Res. 2019 Jul;25(3):1015-1021. doi: 10.1007/s12253-018-0445-1. Epub 2018 Jul 6.

Abstract

Basal cell carcinoma (BCC) is the most frequent malignant neoplasm in the Caucasian population. There are several therapeutic options for BCC, but surgical excision is considered gold standard treatment. As BCCs often have poorly defined borders, the clinical assessment of the tumor margins can be challenging. Therefore, there is an increasing demand for efficient in vivo imaging techniques for the evaluation of tumor borders prior to and during surgeries. In the near future, nonlinear microscopy techniques might meet this demand. We measured the two-photon excitation fluorescence (TPEF) signal of nicotinamide adenine dinucleotide hydride (NADH) and elastin and second harmonic generation (SHG) signal of collagen on 10 ex vivo healthy control and BCC skin samples and compared the images by different quantitative image analysis methods. These included integrated optical density (IOD) measurements on TPEF and SHG images and application of fast Fourier transform (FFT), CT-FIRE and CurveAlign algorithms on SHG images to evaluate the collagen structure. In the BCC samples, we found significantly lower IOD of both the TPEF and SHG signals and higher collagen orientation index utilizing FFT. CT-FIRE algorithm revealed increased collagen fiber length and decreased fiber angle while CurveAlign detected higher fiber alignment of collagen fibers in BCC. These results are in line with previous findings which describe pronounced changes in the collagen structure of BCC. In the future, these novel image analysis methods could be integrated in handheld nonlinear microscope systems, for sensitive and specific identification of BCC.

摘要

基底细胞癌 (BCC) 是白种人群中最常见的恶性肿瘤。BCC 有多种治疗选择,但手术切除被认为是金标准治疗。由于 BCC 常边界不清,因此肿瘤边界的临床评估具有挑战性。因此,人们对术前和术中评估肿瘤边界的有效体内成像技术的需求日益增加。在不久的将来,非线性显微镜技术可能会满足这一需求。我们在 10 个离体健康对照和 BCC 皮肤样本上测量了烟酰胺腺嘌呤二核苷酸氢 (NADH) 和弹性蛋白的双光子激发荧光 (TPEF) 信号以及胶原蛋白的二次谐波产生 (SHG) 信号,并通过不同的定量图像分析方法比较了图像。这些方法包括 TPEF 和 SHG 图像的积分光密度 (IOD) 测量以及 SHG 图像的快速傅里叶变换 (FFT)、CT-FIRE 和 CurveAlign 算法的应用,以评估胶原蛋白结构。在 BCC 样本中,我们发现 TPEF 和 SHG 信号的 IOD 明显降低,FFT 的胶原取向指数更高。CT-FIRE 算法显示胶原蛋白纤维长度增加,纤维角度减小,而 CurveAlign 检测到 BCC 中胶原蛋白纤维的纤维排列更高。这些结果与先前描述 BCC 中胶原蛋白结构明显变化的发现一致。在未来,这些新的图像分析方法可以集成到手持式非线性显微镜系统中,用于 BCC 的敏感和特异性识别。

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