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全场光学相干断层扫描方法与应用:综述。

Methods and applications of full-field optical coherence tomography: a review.

机构信息

Hangzhou DianZi University, School of Automation, Hangzhou, China.

Key Laboratory of Medical Information and 3D Biological of Zhejiang Province, Hangzhou, China.

出版信息

J Biomed Opt. 2022 May;27(5). doi: 10.1117/1.JBO.27.5.050901.

Abstract

SIGNIFICANCE

Full-field optical coherence tomography (FF-OCT) enables en face views of scattering samples at a given depth with subcellular resolution, similar to biopsy without the need of sample slicing or other complex preparation. This noninvasive, high-resolution, three-dimensional (3D) imaging method has the potential to become a powerful tool in biomedical research, clinical applications, and other microscopic detection.

AIM

Our review provides an overview of the disruptive innovations and key technologies to further improve FF-OCT performance, promoting FF-OCT technology in biomedical and other application scenarios.

APPROACH

A comprehensive review of state-of-the-art accomplishments in OCT has been performed. Methods to improve performance of FF-OCT systems are reviewed, including advanced phase-shift approaches for imaging speed improvement, methods of denoising, artifact reduction, and aberration correction for imaging quality optimization, innovations for imaging flux expansion (field-of-view enlargement and imaging-depth-limit extension), new implementations for multimodality systems, and deep learning enhanced FF-OCT for information mining, etc. Finally, we summarize the application status and prospects of FF-OCT in the fields of biomedicine, materials science, security, and identification.

RESULTS

The most worth-expecting FF-OCT innovations include combining the technique of spatial modulation of optical field and computational optical imaging technology to obtain greater penetration depth, as well as exploiting endogenous contrast for functional imaging, e.g., dynamic FF-OCT, which enables noninvasive visualization of tissue dynamic properties or intracellular motility. Different dynamic imaging algorithms are compared using the same OCT data of the colorectal cancer organoid, which helps to understand the disadvantages and advantages of each. In addition, deep learning enhanced FF-OCT provides more valuable characteristic information, which is of great significance for auxiliary diagnosis and organoid detection.

CONCLUSIONS

FF-OCT has not been completely exploited and has substantial growth potential. By elaborating the key technologies, performance optimization methods, and application status of FF-OCT, we expect to accelerate the development of FF-OCT in both academic and industry fields. This renewed perspective on FF-OCT may also serve as a road map for future development of invasive 3D super-resolution imaging techniques to solve the problems of microscopic visualization detection.

摘要

意义

全场光学相干断层扫描(FF-OCT)能够以亚细胞分辨率对给定深度的散射样本进行共面视图,类似于无需样本切片或其他复杂准备的活检。这种非侵入性、高分辨率的三维(3D)成像方法有可能成为生物医学研究、临床应用和其他微观检测的有力工具。

目的

本综述提供了对颠覆性创新和关键技术的概述,以进一步提高 FF-OCT 的性能,推动 FF-OCT 技术在生物医学和其他应用场景中的应用。

方法

对 OCT 的最新成就进行了全面综述。综述了提高 FF-OCT 系统性能的方法,包括用于成像速度提高的先进相移方法、用于成像质量优化的去噪、降低伪影和像差校正方法、用于扩大成像通量(视场扩大和成像深度扩展)的创新、用于多模态系统的新实现以及用于信息挖掘的深度学习增强 FF-OCT 等。最后,总结了 FF-OCT 在生物医学、材料科学、安全和识别等领域的应用现状和前景。

结果

最值得期待的 FF-OCT 创新包括结合光场空间调制技术和计算光学成像技术以获得更大的穿透深度,以及利用内源性对比进行功能成像,例如动态 FF-OCT,它能够实现对组织动态特性或细胞内运动的非侵入性可视化。使用相同的 OCT 数据对结直肠类器官进行了不同的动态成像算法比较,有助于了解每种算法的优缺点。此外,深度学习增强 FF-OCT 提供了更有价值的特征信息,对辅助诊断和类器官检测具有重要意义。

结论

FF-OCT 尚未得到充分开发,具有巨大的增长潜力。通过阐述 FF-OCT 的关键技术、性能优化方法和应用现状,我们希望能够加速 FF-OCT 在学术和工业领域的发展。对 FF-OCT 的这一新视角也可能为未来解决微观可视化检测问题的侵入性 3D 超分辨率成像技术的发展提供路线图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7eb/9122094/b565798e305e/JBO-027-050901-g001.jpg

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