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Buffer-averaging super-continuum source based spectral domain optical coherence tomography for high speed imaging

机译:基于缓冲区平均的超连续谱源的光谱域光学相干层析成像技术用于高速成像

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摘要

In super-continuum (SC) source based spectral domain optical coherence tomography (SC-SDOCT), the stability of the power spectral density (PSD) has a significant impact on OCT system sensitivity and image signal to noise ratio (SNR). High speed imaging decreases the camera's exposure time, thus each A-scan contained fewer laser pulse excited SC wideband emissions, resulting in a decrease of SNR. In this manuscript, we present a buffer-averaging SC-SDOCT (BASC-SDOCT) to improve the system's performance without losing imaging speed, taking advantage of the excess output power from typical SC sources. In our proposed technique, the output light from SC was passed through a fiber based light buffering and averaging system to improve the PSD stability by averaging 8 SC emissions. The results showed that 6.96 µs of SC emission after buffering and averaging can achieve the same PSD stability equivalent to a longer exposure time of 55.68 µs, despite increasing the imaging speed from 16.8 kHz to 91.9 kHz. The system sensitivity was improved by 8.6 dB, reaching 100.6 dB, which in turn improved SNR of structural imaging, Doppler OCT velocity measurement, and speckle variance OCT (SVOCT) angiographic imaging as demonstrated by phantom and in vivo experiments.
机译:在基于超连续谱(SC)源的光谱域光学相干断层扫描(SC-SDOCT)中,功率谱密度(PSD)的稳定性对OCT系统的灵敏度和图像信噪比(SNR)产生重大影响。高速成像减少了相机的曝光时间,因此每次A扫描包含较少的激光脉冲激发的SC宽带发射,从而导致SNR降低。在本手稿中,我们介绍了一种缓冲平均SC-SDOCT(BASC-SDOCT),可利用典型SC源的过剩输出功率来提高系统性能,而又不损失成像速度。在我们提出的技术中,来自SC的输出光通过基于光纤的光缓冲和平均系统,以通过平均8个SC发射来提高PSD稳定性。结果表明,尽管将成像速度从16.8 kHz提高到了91.9 kHz,缓冲和取平均值后6.96 µs的SC发射可以实现相同的PSD稳定性,相当于更长的曝光时间55.68 µs。系统灵敏性提高了8.6 dB,达到100.6 dB,从而提高了结构成像,多普勒OCT速度测量和斑点变化OCT(SVOCT)血管造影成像的SNR,如幻影和体内实验所示。

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