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光学相干显微镜下组织切片图像的数字组织学染色

Digital histological staining of tissue slide images from optical coherence microscopy.

作者信息

Lee Sangjin, Lee Eunji, Yang Hyunmo, Park Kibeom, Min Eunjung, Jung Woonggyu

机构信息

Department of Biomedical Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, Republic of Korea.

Korea Photonics Technology Institute, Gwangju 61007, Republic of Korea.

出版信息

Biomed Opt Express. 2024 May 17;15(6):3807-3816. doi: 10.1364/BOE.520683. eCollection 2024 Jun 1.

Abstract

The convergence of staining-free optical imaging and digital staining technologies has become a central focus in digital pathology, presenting significant advantages in streamlining specimen preparation and expediting the rapid acquisition of histopathological information. Despite the inherent merits of optical coherence microscopy (OCM) as a staining-free technique, its widespread application in observing histopathological slides has been constrained. This study introduces a novel approach by combining wide-field OCM with digital staining technology for the imaging of histopathological slides. Through the optimization of the histology slide production process satisfying the ground growth for digital staining as well as pronounced contrast for OCM imaging, successful imaging of various mouse tissues was achieved. Comparative analyses with conventional staining-based bright field images were executed to evaluate the proposed methodology's efficacy. Moreover, the study investigates the generalization of digital staining color appearance to ensure consistent histopathology, considering tissue-specific and thickness-dependent variations.

摘要

无染色光学成像与数字染色技术的融合已成为数字病理学的核心关注点,在简化标本制备和加快组织病理学信息的快速获取方面具有显著优势。尽管光学相干显微镜(OCM)作为一种无染色技术具有内在优点,但其在观察组织病理学切片方面的广泛应用受到了限制。本研究引入了一种将宽场OCM与数字染色技术相结合的新方法,用于组织病理学切片成像。通过优化满足数字染色基础生长以及OCM成像明显对比度的组织学切片制作过程,成功实现了对各种小鼠组织的成像。与基于传统染色的明场图像进行了对比分析,以评估所提出方法的有效性。此外,该研究还探讨了数字染色颜色外观的通用性,以确保组织病理学的一致性,同时考虑了组织特异性和厚度依赖性变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84f4/11166446/ed1312cff3d1/boe-15-6-3807-g001.jpg

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