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High-performance multi-megahertz optical coherence tomography based on amplified optical time-stretch

机译:基于放大光学时间拉伸的高性能几兆赫兹光学相干断层扫描

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As the key prerequisite of high-speed volumetric structural and functional tissue imaging in real-time, scaling the A-scan rate beyond MHz has been one of the major pursuits in the development of optical coherence tomography (OCT). Along with a handful of techniques enabling multi-MHz, amplified optical time-stretch OCT (AOT-OCT) has recently been demonstrated as a viable alternative for ultrafast swept-source OCT well above MHz without the need for the mechanical wavelength-tuning mechanism. In this paper, we report a new generation of AOT-OCT demonstrating superior performance to its older generation and all other time-stretch-based OCT modalities in terms of shot-to-shot stability, sensitivity (~90dB), roll-off performance (>4 mm/dB) and A-scan rate (11.5 MHz). Such performance is mainly attributed to the combined contribution from the stable operation of the broadband and compact mode-locked fiber laser as well as the optical amplification in-line with the time-stretch process. The system allows us, for the first time, to deliver volumetric time-stretch-based OCT of biological tissues with the single-shot A-scan rate beyond 10 MHz. Comparing with the existing high-speed OCT systems, the inertia-free AOT-OCT shows promises to realize high-performance 3D OCT imaging at video rate.
机译:作为实时高速体积结构和功能组织成像的关键前提,将A扫描速率扩展到MHz以上已成为光学相干断层扫描(OCT)发展的主要目标之一。近来,随着少数技术能够实现多兆赫兹,放大光时延OCT(AOT-OCT)已成为远高于MHz的超快扫频OCT的可行替代方案,而无需机械波长调谐机制。在本文中,我们报告了新一代的AOT-OCT,其在击球稳定性,灵敏度(〜90dB),滚降性能方面表现出优于上一代和所有其他基于时间拉伸的OCT模式(> 4 mm / dB)和A扫描速率(11.5 MHz)。这种性能主要归因于宽带和紧凑型锁模光纤激光器的稳定运行以及与时间拉伸过程一致的光学放大的综合贡献。该系统首次使我们能够以超过10 MHz的单次A扫描速率提供基于体积拉伸的生物组织OCT。与现有的高速OCT系统相比,无惯性AOT-OCT有望以视频速率实现高性能3D OCT成像。

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