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首页> 外文期刊>Optics and Lasers in Engineering >Full-field optical coherence tomography using tunable-path-difference source for three-dimensional multi-layered imaging with enhanced signal-to-noise ratio
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Full-field optical coherence tomography using tunable-path-difference source for three-dimensional multi-layered imaging with enhanced signal-to-noise ratio

机译:使用具有增强的信噪比的三维多层成像的可调路径差异源全场光学相干性断层扫描

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摘要

We demonstrate a novel scheme for a full-field optical coherence tomography (FF-OCT) system using a tunable-path-difference source (TPDS). Recently, the comb-spacing-swept source (CSWS) method, including TPDS, has been successfully applied to improve the stability of three-dimensional (3D) time-domain (TD)-FF-OCT imaging by eliminating the mechanical scanning of the reference path, which has been the main source of undesirable noise in general TD-OCT. However, CSWS-OCT has the drawback of a degraded signal-to-noise ratio (SNR) from a duplicated interferometer structure. In this study, we improve the configuration of the TPDS so that it can be connected directly to the measurement interferometer, including the sample and reference paths of the OCT system. In our novel TPDS-OCT, a propagating optical path through only a single interferometer was critically helpful in enhancing the SNR while retaining the benefits of CSWS-OCT, and a free-space full-field interferometer of dual-input Mach-Zehnder type also has an even higher imaging performance owing to the simultaneous exposure of optical intensity into the camera and the short image acquisition time laterally. We theoretically and experimentally demonstrated the benefits of TPDS-OCT compared with CSWS-OCT in terms of SNR. We also demonstrated 3D multi-layered imaging, which CSWS-OCT cannot achieve owing to its limited SNR.
机译:我们展示了一种使用可调谐路径差异源(TPD)的全场光学相干断层扫描(FF-OCT)系统的新颖方案。最近,已经成功地应用了包括TPD的梳间扫描源(CSWS)方法,以通过消除机械扫描来提高三维(3D)时域(TD) - OCT成像的稳定性参考路径,这是一般TD-OCT的不良噪声的主要来源。然而,CSWS-OCT具有来自重复的干涉仪结构的劣化信噪比(SNR)的缺点。在这项研究中,我们改善了TPD的配置,使其可以直接连接到测量干涉仪,包括OCT系统的样本和参考路径。在我们的小说TPDS-OCT中,通过仅单个干涉仪的传播光路克定有助于增强SNR,同时保留CSWS-OCT的益处,以及双输入Mach-Zehnder类型的自由空间全场干涉仪由于光学强度同时曝光了光学强度和横向的短图像采集时间而具有更高的成像性能。理论上和实验证明了与SNR的CSWS-OCT相比,TPDS-OCT的益处。我们还展示了3D多层成像,由于其有限的SNR,CSWS-OCT无法实现。

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