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基于压缩光学相干弹性成像的组织形态学评估实现靶向结直肠癌活检

Towards targeted colorectal cancer biopsy based on tissue morphology assessment by compression optical coherence elastography.

作者信息

Plekhanov Anton A, Sirotkina Marina A, Gubarkova Ekaterina V, Kiseleva Elena B, Sovetsky Alexander A, Karabut Maria M, Zagainov Vladimir E, Kuznetsov Sergey S, Maslennikova Anna V, Zagaynova Elena V, Zaitsev Vladimir Y, Gladkova Natalia D

机构信息

Institute of Experimental Oncology and Biomedical Technologies, Privolzhsky Research Medical University, Nizhny Novgorod, Russia.

Laboratory of Wave Methods for Studying Structurally Inhomogeneous Media, Institute of Applied Physics Russian Academy of Sciences, Nizhny Novgorod, Russia.

出版信息

Front Oncol. 2023 Mar 27;13:1121838. doi: 10.3389/fonc.2023.1121838. eCollection 2023.

Abstract

Identifying the precise topography of cancer for targeted biopsy in colonoscopic examination is a challenge in current diagnostic practice. For the first time we demonstrate the use of compression optical coherence elastography (C-OCE) technology as a new functional OCT modality for differentiating between cancerous and non-cancerous tissues in colon and detecting their morphological features on the basis of measurement of tissue elastic properties. The method uses pre-determined stiffness values (Young's modulus) to distinguish between different morphological structures of normal (mucosa and submucosa), benign tumor (adenoma) and malignant tumor tissue (including cancer cells, gland-like structures, cribriform gland-like structures, stromal fibers, extracellular mucin). After analyzing in excess of fifty tissue samples, a threshold stiffness value of 520 kPa was suggested above which areas of colorectal cancer were detected invariably. A high Pearson correlation (r =0.98; p <0.05), and a negligible bias (0.22) by good agreement of the segmentation results of C-OCE and histological (reference standard) images was demonstrated, indicating the efficiency of C-OCE to identify the precise localization of colorectal cancer and the possibility to perform targeted biopsy. Furthermore, we demonstrated the ability of C-OCE to differentiate morphological subtypes of colorectal cancer - low-grade and high-grade colorectal adenocarcinomas, mucinous adenocarcinoma, and cribriform patterns. The obtained results highlight prospects of C-OCE for high-level colon malignancy detection. The future endoscopic use of C-OCE will allow targeted biopsy sampling and simultaneous rapid analysis of the heterogeneous morphology of colon tumors.

摘要

在结肠镜检查中确定癌症的精确位置以进行靶向活检是当前诊断实践中的一项挑战。我们首次展示了压缩光学相干弹性成像(C-OCE)技术作为一种新的功能性光学相干断层扫描(OCT)模式,用于区分结肠中的癌组织和非癌组织,并基于组织弹性特性的测量来检测它们的形态特征。该方法使用预先确定的刚度值(杨氏模量)来区分正常组织(黏膜和黏膜下层)、良性肿瘤(腺瘤)和恶性肿瘤组织(包括癌细胞、腺样结构、筛状腺样结构、基质纤维、细胞外粘蛋白)的不同形态结构。在分析了五十多个组织样本后,建议阈值刚度值为520 kPa,高于此值时总能检测到结直肠癌区域。通过C-OCE和组织学(参考标准)图像的分割结果具有良好的一致性,证明了高皮尔逊相关性(r = 0.98;p <0.05)和可忽略不计的偏差(0.22),表明C-OCE能够识别结直肠癌的精确位置,并有可能进行靶向活检。此外,我们展示了C-OCE区分结直肠癌形态学亚型的能力——低级别和高级别结直肠腺癌、黏液腺癌和筛状模式。所获得的结果突出了C-OCE在高级别结肠恶性肿瘤检测方面的前景。未来C-OCE在内镜检查中的应用将允许进行靶向活检采样,并同时对结肠肿瘤的异质形态进行快速分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbe2/10100073/5f4f470d50c7/fonc-13-1121838-g001.jpg

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