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MEMS based non-rotatory circumferential scanning optical probe for endoscopic optical coherence tomography

机译:用于内窥镜光学相干断层扫描的基于MEMS的非旋转圆周扫描光学探头

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In this paper, we present a non-rotatory circumferential scanning optical probe integrated with a MEMS scanner for in vivo endoscopic optical coherence tomography (OCT). OCT is an emerging optical imaging technique that allows high resolution cross-sectional imaging of tissue microstructure. To extend its usage to endoscopic applications, a miniaturized optical probe based on Microelectromechanical Systems (MEMS) fabrication techniques is currently desired. A 3D electrothermally actuated micromirror realized using micromachining single crystal silicon (SCS) process highlights its very large angular deflection, about 45 degree, with low driving voltage for safety consideration. The micromirror is integrated with a GRIN lens into a waterproof package which is compatible with requirements for minimally invasive endoscopic procedures. To implement circumferential scanning substantially for diagnosis on certain pathological conditions, such as Barret's esophagus, the micromirror is mounted on 90 degree to optical axis of GRIN lens. 4 Bimorph actuators that are connected to the mirror on one end via supporting beams and springs are selected in this micromirror design. When actuators of the micromirror are driven by 4 channels of sinusoidal waveforms with 90 degree phase differences, beam focused by a GRIN is redirected out of the endoscope by 45 degree tilting mirror plate and achieve circumferential scanning pattern. This novel driving method making full use of very large angular deflection capability of our micromirror is totally different from previously developed or developing micromotor-like rotatory MEMS device for circumferential scanning.
机译:在本文中,我们提出了一种与MEMS扫描仪集成在一起的非旋转圆周扫描光学探头,用于体内内窥镜光学相干断层扫描(OCT)。 OCT是一种新兴的光学成像技术,可对组织微结构进行高分辨率的截面成像。为了将其用途扩展到内窥镜应用,当前期望基于微机电系统(MEMS)制造技术的小型化光学探针。使用微加工单晶硅(SCS)工艺实现的3D电热致动微镜突出了其非常大的角偏转(约45度),出于安全考虑,驱动电压较低。微镜与GRIN透镜集成到一个防水包装中,该包装符合微创内窥镜检查程序的要求。为了基本上进行圆周扫描以在某些病理条件下进行诊断,例如Barret食管,将微镜安装在与GRIN透镜光轴成90度的位置。在该微镜设计中,选择了4个通过支撑梁和弹簧一端连接到镜的Bimorph执行器。当微镜的致动器由具有90度相位差的4个正弦波形通道驱动时,由GRIN聚焦的光束通过45度倾斜镜板重定向到内窥镜之外,并实现周向扫描模式。这种充分利用我们微镜的非常大的角偏转能力的新颖驱动方法与先前开发或开发的用于圆周扫描的类似微电机的旋转MEMS器件完全不同。

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