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High-speed optical coherence tomography: basics and applications

机译:高速光学相干层析成像:基础知识和应用

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摘要

In the past decade we have observed a rapid development of ultrahigh-speed optical coherence tomography (OCT) instruments, which currently enable performing cross-sectional in vivo imaging of biological samples with speeds of more than 100,000 A-scans/s. This progress in OCT technology has been achieved by the development of Fourier-domain detection techniques. Introduction of high-speed imaging capabilities lifts the primary limitation of early OCT technology by giving access to in vivo three-dimensional volumetric reconstructions on large scales within reasonable time constraints. As result, novel tools can be created that add new perspective for existing OCT applications and open new fields of research in biomedical imaging. Especially promising is the capability of performing functional imaging, which shows a potential to enable the differentiation of tissue pathologies via metabolic properties or functional responses. In this contribution the fundamental limitations and advantages of time-domain and Fourier-domain interferometric detection methods are discussed. Additionally the progress of high-speed OCT instruments and their impact on imaging applications is reviewed. Finally new perspectives on functional imaging with the use of state-of-the-art high-speed OCT technology are demonstrated.
机译:在过去的十年中,我们已经观察到超高速光学相干断层扫描(OCT)仪器的快速发展,该仪器目前能够以超过100,000 A-scan / s的速度对生物样品进行横截面体内成像。傅立叶域检测技术的发展已经实现了OCT技术的这一进步。高速成像功能的引入通过允许在合理的时间限制内大规模进行体内三维体积重建,解除了早期OCT技术的主要限制。结果,可以创建新颖的工具,为现有的OCT应用程序增加新的视角,并打开生物医学成像研究的新领域。进行功能成像的能力特别有前途,它具有通过代谢特性或功能反应实现组织病理学分化的潜力。在此贡献中,讨论了时域和傅立叶域干涉检测方法的基本局限性和优势。此外,还回顾了高速OCT仪器的进展及其对成像应用的影响。最后,展示了使用最新的高速OCT技术进行功能成像的新观点。

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