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Ultrahigh resolution optical coherence tomography at two infrared wavelength regions using a single light source

机译:使用单个光源在两个红外波长区域进行超高分辨率光学相干层析成像

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摘要

An off-the-shelf turn-key supercontinuum light source based on a passively mode-locked fiber laser, a fiber amplifier and a highly nonlinear fiber is evaluated for its application in ultrahigh resolution optical coherence tomography (OCT). Two spectral bands - one red shifted and one blue shifted in reference to the wavelength of the fiber laser - are employed as low coherence sources in OCT. Usable spectral bandwidths exceed 300 nm centered either at 790 or 1340 nm, with corresponding coherence lengths of 1.2 and 2.6 μm, respectively. Optimization of the spectrum for simultaneous imaging at both spectral bands results in spectral bandwidths exceeding 200 nm for each band after filtering. A free-space OCT setup supporting the full spectral bandwidth is introduced which allows for ultrahigh resolution OCT imaging using both spectral bands simultaneously. Axial free space resolutions were measured to be less than 2 and 4 μm at 840 and 1230 nm, respectively. This approach combines ultrahigh resolution obtained at 840 nm with large penetration depths at 1230 nm. Frequency compounding of the OCT images can be used for speckle reduction while extracting spatially resolved spectroscopic features facilitates enhanced image contrast.
机译:基于无源锁模光纤激光器,光纤放大器和高度非线性光纤的现成交钥匙超连续谱光源在超高分辨率光学相干层析成像(OCT)中的应用得到了评估。在OCT中,使用两个光谱带(相对于光纤激光器的波长,一个红移和一个蓝移)作为低相干源。可用光谱带宽超过300 nm,以790或1340 nm为中心,相应的相干长度分别为1.2和2.6μm。在两个光谱带上同时成像的光谱优化导致滤波后每个频带的光谱带宽超过200 nm。引入了支持整个光谱带宽的自由空间OCT设置,该设置允许同时使用两个光谱带进行超高分辨率OCT成像。轴向自由空间分辨率在840和1230 nm处分别测量为小于2和4μm。这种方法结合了在840 nm处获得的超高分辨率和在1230 nm处的大穿透深度。 OCT图像的频率复合可用于减少斑点,同时提取空间分辨的光谱特征可增强图像对比度。

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