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Dispersion manipulation in optical coherence tomography with Fourier-domain optical delay line

机译:傅里叶域光学延迟线在光学相干层析成像中的色散处理

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摘要

In the last decade, Fourier-domain optical delay lines (FD-ODL) based on pulse shaping technology have emerged as a practical device for high-speed scanning and dispersion compensation in imaging interferometry such as optical coherence tomography(OCT). In this study, we investigate the effect of first- and second-order dispersion on the photocurrent signal associated with a fiber-optic OCT system implemented using a superluminescent diode centered at 950nm±35nm, an FD-ODL, and a mirror and a layered LiTaO_3 which owns suitable dispersion characteristics to model a skin specimen. We present a practically useful method associated with FD-ODL to minimize the effect of dispersion through the OCT system and the specimen combined, and quantify the results using two general metrics for axial resolution.
机译:在过去的十年中,基于脉冲整形技术的傅立叶域光学延迟线(FD-ODL)成为一种实用的设备,可用于光学相干断层扫描(OCT)等成像干涉术中的高速扫描和色散补偿。在这项研究中,我们研究了一阶和二阶色散对与光纤OCT系统相关的光电流信号的影响,该OCT系统使用以950nm±35nm为中心的超发光二极管,FD-ODL,反射镜和分层结构实现LiTaO_3具有合适的分散特性,可以对皮肤样本进行建模。我们提出了一种与FD-ODL相关的实用方法,以最大程度地减小通过OCT系统和标本组合产生的色散影响,并使用两个通用的轴向分辨率指标对结果进行量化。

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