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SNR enhancement through phase dependent signal reconstruction algorithms for phase separated interferometric signals

机译:通过相变信号重构算法提高相分离干涉信号的SNR

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摘要

We report several signal reconstruction algorithms for processing phase separated homodyne interferometric signals. Methods that take advantage of the phase of the signal are experimentally shown to achieve a signal-to-noise ratio (SNR) improvement of up to 5 dB over commonly used algorithms. To begin, we present a derivation of the SNR resulting from five image reconstruction algorithms in the context of a 3x3 fiber-coupler based homodyne optical coherence tomography (OCT) system, and clearly show the improvement in SNR associated with phase-based algorithms. Finally, we experimentally verify this improvement and demonstrate the enhancement in contrast and improved image quality afforded by these algorithms through homodyne OCT imaging of a Xenopus laevis tadpole. These algorithms can be generally applied in signal extraction processing where multiple phase separated measurements are available.
机译:我们报告了几种用于处理相分离零差干涉信号的信号重建算法。实验表明,利用信号相位的方法可以比常用算法提高高达5 dB的信噪比(SNR)。首先,在基于3x3光纤耦合器的零差光学相干断层扫描(OCT)系统的背景下,我们介绍了由五种图像重建算法得出的SNR,并清楚地显示了与基于相位的算法相关的SNR的提高。最后,我们通过实验验证了这一改进,并通过非洲爪蟾homo的零差OCT成像证明了这些算法提供的对比度增强和图像质量提高。这些算法通常可以应用在信号提取处理中,其中可以进行多个相分离的测量。

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