Sharma Utkarsh, Kang Jin U
Department of Electrical and Computer Engineering, Johns Hopkins University, 3400 N. Charles Street, Baltimore, Maryland 21218, USA.
Rev Sci Instrum. 2007 Nov;78(11):113102. doi: 10.1063/1.2804112.
All-fiber-optic common-path optical coherence tomography (OCT) using a side-viewing bare fiber probe has been demonstrated and analyzed. A bare single mode fiber tip is angle cleaved at approximately 49 degrees to enable side illumination due to total internal reflection. The bare fiber probe was inserted in an arterial tissue and a circumferential OCT scan was obtained. The research is aimed at realizing highly miniaturized monolithic probes for possible applications in miniature endoscopic OCT or intravascular OCT. The effects of the angle of the cleaved fiber on reference reflection and the sensitivity of the common-path OCT system have been studied theoretically. The angle cleaved fiber probe is also used in series with a microlens to analyze and optimize its performance in a common-path OCT system. Our research aims to explore the combined advantages of common-path OCT and extremely simplified miniature probe design and to discuss how it may greatly simplify the endoscopic OCT instrumentation eventually.
使用侧视裸光纤探头的全光纤共光路光学相干断层扫描(OCT)已得到演示和分析。一根裸单模光纤尖端以约49度角切割,以实现由于全内反射而产生的侧向照明。将裸光纤探头插入动脉组织中,并获得圆周OCT扫描图像。该研究旨在实现高度小型化的整体式探头,以便在微型内窥OCT或血管内OCT中可能得到应用。理论上研究了切割光纤的角度对参考反射和共光路OCT系统灵敏度的影响。切割角度的光纤探头还与一个微透镜串联使用,以分析和优化其在共光路OCT系统中的性能。我们的研究旨在探索共光路OCT和极其简化的微型探头设计的综合优势,并讨论其最终如何能极大地简化内窥OCT仪器。