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Broadband sources and fibre delay line for the functionality enhancement of optical coherence tomography application

机译:宽带光源和光纤延迟线,用于增强光学相干断层扫描应用的功能

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摘要

The usage of supercontinuum sources has enabled a significant improvement of tomographic imaging in optical coherence tomography (OCT) systems. However, because of the intensity noise, the clarity of the OCT image can be sacrificed even though much finer axial resolution can be obtained when using this technology. Using a commercial supercontinuum SC450 (Fianium, UK) source, its performance in terms of its interference signal shape and its relative intensity noise (RIN) was compared with two other broadband sources, a semiconductor optical amplifier (SOA) and an erbium-doped fibre amplifier (EDFA). As a measure of axial resolution in OCT; by using different grating filters the full width at half maximum (FWHM) of the interference signal and the RIN figure for each source is analysed. The measured RIN value for the SC450 is found to be between ~26.8 dB and ~30.5 dB times noisier, in terms of power fluctuation, when compared to the SOA and EDFA. The development of a time-domain OCT system was also highlighted in this thesis. The OCT system can be used to perform a meaningful scan on small and thin transparent samples. An OCT image of a mirror sample was presented, taken using full bandwidth of the SOA source. Later, the SOA was amplified at higher driving current when scanning a biological sample and the OCT image of an onion skin was successfully constructed. Problems encountered during this research project were also highlighted and future work to be done to try to overcome these were also outlined.
机译:超连续谱源的使用已使光学相干断层扫描(OCT)系统中的断层成像显着改善。但是,由于强度噪声,即使使用此技术可以获得更精细的轴向分辨率,也可能会牺牲OCT图像的清晰度。使用商业超连续谱SC450信号源(英国费安),将其在干扰信号形状和相对强度噪声(RIN)方面的性能与其他两个宽带信号源(半导体光放大器(SOA)和掺光纤)进行了比较。放大器(EDFA)。作为OCT中轴向分辨率的度量;通过使用不同的光栅滤波器,分析了干扰信号的半峰全宽(FWHM)和每个源的RIN图。与SOA和EDFA相比,就功率波动而言,测得的SC450的RIN值约为26.8 dB至30.5 dB倍的噪声。本文还重点介绍了时域OCT系统的开发。 OCT系统可用于对小的和薄的透明样本执行有意义的扫描。展示了使用SOA源的全部带宽拍摄的镜像样本的OCT图像。后来,当扫描生物样品时,SOA在更高的驱动电流下被放大,从而成功构建了洋葱皮的OCT图像。还强调了在该研究项目中遇到的问题,并概述了为克服这些问题而需要做的未来工作。

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    Wong King Nien;

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  • 年度 2007
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  • 正文语种 en
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