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Signal-to-noise ratio analysis of all-fiber common-path optical coherence tomography

机译:全光纤共通光学相干层析成像的信噪比分析

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摘要

We present theoretical analysis and experimental verification of the signal to noise ratio (SNR) of a common-path interferometer-based optical coherence tomography (OCT) system. Based on fully integrated all-fiber implementation of a common-path time-domain OCT system, we derived the SNR of the system including the effect of beat noise, which turns out to be twice as large as the excess noise term. We verified the theoretical SNR through a series of experiments, utilizing both controlled phantom and biological samples such as a rat brain with tumor and a frog retina. The results showed that the source power and the reference reflectivity can be easily controlled to optimize the SNR of OCT imaging. We have also analyzed the effect of the fiber delays and the offset in the fiber autocorrelator of the common-path OCT system on the overall SNR.
机译:我们介绍了基于共径干涉仪的光学相干断层扫描(OCT)系统的信噪比(SNR)的理论分析和实验验证。基于公共路径时域OCT系统的完全集成全光纤实现,我们得出了包含拍音噪声影响的系统SNR,结果证明它是多余噪声项的两倍。我们通过一系列实验验证了理论信噪比,该实验使用了受控的幻像和生物样本,例如患有肿瘤和青蛙视网膜的大鼠脑。结果表明,可以容易地控制光源功率和参考反射率,以优化OCT成像的SNR。我们还分析了光纤延迟和共路径OCT系统的光纤自相关器中的偏移对整体SNR的影响。

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