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10-Channel fiber array fabrication technique for Parallel Optical Coherence Tomography System

机译:平行光学相干层析成像系统的10通道光纤阵列制造技术

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Optical Coherence Tomography (OCT) shows great promise for low intrusive biomedical imaging applications. A parallel OCT system is a novel technique that replaces mechanical transverse scanning with electronic scanning. This will reduce the time required to acquire image data. In this system an array of small diameter fibers is required to obtain an image in the transverse direction. Each fiber in the array is configured in an interferometer and is used to image one pixel in the transverse direction. In this paper we describe a technique to package 15 μm diameter fibers on a silicon-silica substrate to be used in a 2mm endoscopic probe tip. Single mode fibers are etched to reduce the cladding diameter from 125μm to 15μm. Etched fibers are placed into a 4mm by 150μm trench in a silicon-silica substrate and secured with UV glue. Active alignment was used to simplify the lay out of the fibers and minimize unwanted horizontal displacement of the fibers. A 10-channel fiber array was built, tested and later incorporated into a parallel optical coherence system. This paper describes the packaging, testing, and operation of the array in a parallel OCT system.
机译:光学相干断层扫描(OCT)在低侵入性生物医学成像应用中显示出巨大的希望。并行OCT系统是一种新颖的技术,可以用电子扫描代替机械横向扫描。这将减少获取图像数据所需的时间。在该系统中,需要小直径纤维的阵列以获得横向方向的图像。阵列中的每根光纤都配置在干涉仪中,并用于在横向上成像一个像素。在本文中,我们描述了一种将直径为15μm的纤维包装在要用于2mm内窥镜探头的硅-硅基底上的技术。蚀刻单模光纤可将包层直径从125μm减小到15μm。蚀刻后的纤维被放置在硅-硅基底的4mm x150μm沟槽中,并用UV胶固定。主动对准用于简化光纤的布局,并使光纤的不必要的水平位移最小化。构建,测试了10通道光纤阵列,然后将其合并到并行光学相干系统中。本文介绍了并行OCT系统中阵列的包装,测试和操作。

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