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All-fiber common-path optical coherence tomography: sensitivity optimization and system analysis

机译:全光纤共路径光学相干层析成像:灵敏度优化和系统分析

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摘要

A fully integrated all-fiber implementation of common-path interferometer-based optical coherence tomography (OCT) has been successfully demonstrated. Unlike conventional Michelson-based OCT systems, there is no separate reference arm as the reference signal is derived from the probe-end back reflection. This leads to "downlead insensitivity", which makes the device more compatible with existing endoscopic medical instruments. We also theoretically analyze the optimization of system sensitivity in balanced and unbalanced detection. We have conducted experiments to confirm some of our signal-to-noise ratio (SNR) analysis, which are in excellent agreement with the theory. Interestingly, our analysis predicts existence of much higher beat noise in common-path OCT as compared with the conventional OCT. We predict a maximum upper limit of only 6-dB improvement in the SNR when the balanced detection is used, as compared with the unbalanced detection.
机译:基于共路径干涉仪的光学相干断层扫描(OCT)的完全集成的全光纤实现已得到成功证明。与传统的基于Michelson的OCT系统不同,没有独立的参考臂,因为参考信号是从探头末端的背反射中得出的。这导致“下铅不敏感”,这使得该设备与现有的内窥镜医疗器械更加兼容。我们还从理论上分析了平衡和不平衡检测中系统灵敏度的优化。我们进行了实验,以确认我们的一些信噪比(SNR)分析,这与该理论非常吻合。有趣的是,我们的分析预测,与常规OCT相比,共径OCT中存在更高的拍频噪声。我们预测,与不平衡检测相比,使用平衡检测时,SNR的最大上限仅提高6 dB。

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