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Investigation of a fibre-optic Fizeau interferometer configuration and coherent fibre-optic imaging bundles for optical coherence tomography

机译:用于光学相干断层扫描的光纤斐索干涉仪配置和相干光纤成像束的研究

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摘要

Currently several medical imaging techniques are in operation in clinical environments that help the doctors to diagnose diseases before proceeding to treatment. This research investigated and implemented configurations for a medical imaging technique called Optical Coherence Tomography (OCT). The Michelson interferometer has been the principal configuration for OCT systems. For endoscopic OCT applications though such a configuration is susceptible to polarisation induced signal fading due to environmental changes within the sample arm, like fibre bending and temperature fluctuations. The development and testing of a Fizeau interferometer based OCT system demonstrate the elimination of this polarisation induced signal fading as the sample and reference arm of the interferometer experience the same environmental changes. The Fizeau interferometer is formed between the end of the fibre and the sample itself. A secondary processing interferometer is used in this configuration, to compensate the path difference inherent to the Fizeau configuration. Longitudinal resolution is about 19 m in air, and lateral resolution about 23 m. A signal-to-noise ratio of about 80 dB was achieved with this system and several sets of image data were collected from laboratory and biological samples. An OCT system based on a Fizeau interferometer incorporating a coherent fibre imaging bundle was also investigated. Fibres in the bundle are accessed sequentially by a beam focused onto the input face of the bundle, allowing 2D information to be acquired using point detection. Incorporating a fibre optic imaging bundle in Fizeau based interferometer OCT allows mechanical scanning parts to be removed from the sample arm, resulting in a passive probe. Such a configuration can form a compact, robust and “downlead insensitive” OCT system and is a strong candidate for in vivo applications. The performance of leached and wound coherent fibre optic bundles was accessed and an analysis is presented. The longitudinal resolution of the system developed was about 10 m in air, and lateral resolution about 9 m. This thesis demonstrates several sets of image data that were collected from various samples using a Fizeau interferometer based OCT incorporating coherent imaging bundles. 2D image data captured by such a configuration are presented and reported for the first time in this thesis.
机译:当前,几种医学成像技术正在临床环境中运行,这些技术可帮助医生在进行治疗之前诊断疾病。这项研究调查并实现了称为光学相干断层扫描(OCT)的医学成像技术的配置。迈克尔逊干涉仪一直是OCT系统的主要配置。尽管对于内窥镜OCT应用来说,由于样品臂内的环境变化(例如光纤弯曲和温度波动),这种配置容易受到极化引起的信号衰减的影响。基于菲索(Fizeau)干涉仪的OCT系统的开发和测试表明,由于干涉仪的样品和参考臂经历了相同的环境变化,因此消除了这种偏振感应信号衰减。 Fizeau干涉仪形成在光纤末端和样品本身之间。在此配置中使用了辅助处理干涉仪,以补偿Fizeau配置固有的路径差。空中的纵向分辨率约为19 m,横向分辨率约为23 m。使用该系统可达到约80 dB的信噪比,并从实验室和生物样品中收集了几组图像数据。还研究了基于Fizeau干涉仪并结合了相干光纤成像束的OCT系统。束中的光纤通过聚焦到束输入面上的光束顺序访问,从而可以使用点检测来获取2D信息。在基于Fizeau的干涉仪OCT中集成光纤成像束,可以从样品臂上卸下机械扫描部件,从而形成无源探头。这样的配置可以形成紧凑,坚固且“对下降线不敏感”的OCT系统,并且非常适合用于体内应用。获得了浸出和缠绕的相干光纤束的性能,并进行了分析。所开发系统的纵向分辨率在空中约为10 m,横向分辨率约为9 m。本论文展示了使用结合了相干成像束的基于Fizeau干涉仪的OCT从各种样品收集的几组图像数据。本文首次提出并报道了通过这种配置捕获的二维图像数据。

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