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2mm Catheter Design for Endoscopic Optical Coherence Tomography

机译:用于内窥镜光学相干断层扫描的2mm导管设计

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A biophotonics catheter was conceived with collimation optics, an axicon lens, and custom design imaging optics yielding a 360 degree scan aimed at imaging within concave structures such as arteries and lung lobes. The large depth of focus is necessary to image a long-depth-range sample with constant transverse resolution in optical coherence tomography (OCT). There are two approaches to achieving constant invariant resolution in OCT: Dynamic focusing or Bessel beam formation. This paper focuses on imaging with Bessel beams. The Bessel beams may be created with axicon optics which can be used instead of a conventional focusing lens in the sample arm of the OCT interferometer. In this paper we present the design of a 2mm catheter for optical coherence endoscopy with resolution of about 5 micron across a depth of focus of about 1.6mm. Importantly, we investigated the fabrication of a 800p.m diameter axicon lens and the associated lateral resolution obtained over a long depth range in our OCT system, compared to the same OCT system using a conventional lens.
机译:使用准直光学器件,轴锥透镜和定制设计成像光学器件构思了生物光子导管,该成像光学器件可产生360度扫描,旨在在凹形结构(如动脉和肺叶)中成像。大的聚焦深度对于在光学相干断层扫描(OCT)中以恒定的横向分辨率对长深度范围的样本成像是必需的。在OCT中,有两种方法可实现恒定不变的分辨率:动态聚焦或贝塞尔光束形成。本文着重于用贝塞尔光束成像。贝塞尔光束可以使用轴锥光学器件创建,该透镜可以代替OCT干涉仪的采样臂中的常规聚焦透镜使用。在本文中,我们介绍了用于光学相干内窥镜的2mm导管的设计,其在约1.6mm的焦深范围内的分辨率约为5微米。重要的是,与使用常规透镜的相同OCT系统相比,我们研究了直径800p.m的轴锥透镜的制造以及在长距离范围内在OCT系统中获得的相关横向分辨率。

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