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Dual-reference full-range frequency domain optical coherencetomography

机译:双参考全射频频域光学调谐图像

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It has been shown that frequency domain optical coherence tomography (FD-OCT) systems achieve higher sensitivities compared to time domain OCT systems. However, the obscure object structure due to the mirror image generated by the Fourier transform is one of the main problems in FD-OCT. We designed and developed a novel full range FD-OCT system that we refer to as the dual-reference full-range FD-OCT (DR-FDOCT) that enables doubling the imaging depth by removing mirror images generated from the Fourier transform of the detected real-valued spectra. The DR-FDOCT system enables full-range imaging without any loss of speed and is less sensitive to phase errors generated by involuntary movements of the subject than the other established full-range OCT systems. The reason is because it uses two signals with a phase difference of π/2 obtained simultaneously from two reference arms to remove mirror images.
机译:已经表明,与时域OCT系统相比,频域光学相干断层扫描(FD-OCT)系统实现了更高的敏感性。然而,由于傅立叶变换产生的镜像导致的模糊物体结构是FD-OCT中的主要问题之一。我们设计并开发了一种新型全系列FD-OCT系统,我们将其称为双参考全范围FD-OCT(DR-FDOCT),可通过移除从检测到的傅立叶变换生成的镜像图像来加倍成像深度真实值的光谱。 DR-FDOCT系统可以实现全范围成像,而无需任何速度损失并且对由对象的非自愿运动产生的相位误差不太敏感,而不是其他已建立的全范围OCT系统。原因是它使用两个信号,其中来自两个参考臂同时获得的π/ 2的相位差以移除镜像。

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