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Realization of 2D scanning pattern of a fiber cantilever by nonlinear coupling

机译:非线性耦合实现纤维悬臂的2D扫描图案

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Optical coherence tomography (OCT) is a recently developed high resolution biomedical imaging method. Fast scanning speed and miniature probe is benefit for clinical applications of OCT. In this paper we present a method to realize fast lateral scanning with two-dimensional (2D) resonant scanning pattern. By driving a fiber cantilever with a bimorph actuator near its resonance, the planar motion of the fiber cantilever may develop to an elliptical motion due to nonlinear coupling with longitudinal inertia. This effect can be exploited to form 2D scanning pattern. Basic principle relevant to realization of 2D scanning pattern of the fiber cantilever scanner by ID actuator, as well as confirming experimental results are presented. Future work and system configuration on implementing this fiber cantilever scanner in the sample arm of a fiber-based OCT system is proposed.
机译:光学相干断层扫描(OCT)是最近开发的高分辨率生物医学成像方法。快速扫描速度和微型探针对OCT的临床应用有益。在本文中,我们提出了一种用二维(2D)谐振扫描图案实现快速横向扫描的方法。通过将纤维悬臂与靠近其谐振的纤维悬臂驱动,纤维悬臂的平面运动可能由于具有与纵向惯性的非线性耦合而产生的椭圆形运动。可以利用这种效果来形成2D扫描模式。介绍了与ID执行器的纤维悬臂扫描仪2D扫描图案相关的基本原理,以及确认实验结果。提出了在基于纤维的OCT系统的样品臂中实现该纤维悬臂扫描仪的未来的工作和系统配置。

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