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Two-axis magnetically-driven MEMS scanning catheter for endoscopic high-speed optical coherence tomography
Author(s) -
Ki Hean Kim,
B. Hyle Park,
Gopi Maguluri,
Tom W. Lee,
Fran J. Rogomentich,
Mirela G. Bancu,
Brett E. Bouma,
Johannes F. de Boer,
Jonathan Bernstein
Publication year - 2007
Publication title -
optics express
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.15.018130
Subject(s) - optical coherence tomography , optics , scanner , gimbal , microelectromechanical systems , materials science , optical axis , physics , optoelectronics , lens (geology) , quantum mechanics
A two-axis scanning catheter was developed for 3D endoscopic imaging with spectral domain optical coherence tomography (SD-OCT). The catheter incorporates a micro-mirror scanner implemented with microelectromechanical systems (MEMS) technology: the micro-mirror is mounted on a two-axis gimbal comprised of folded flexure hinges and is actuated by magnetic field. The scanner can run either statically in both axes or at the resonant frequency (>= 350Hz) for the fast axis. The assembled catheter has an outer diameter of 2.8 mm and a rigid part of 12 mm in length. Its scanning range is +/- 20 in optical angle in both axes with low voltages (1 approximately 3V), resulting in a scannable length of approximately 1 mm at the surface in both axes, even with the small catheter size. The catheter was incorporated with a multi-functional SD-OCT system for 3D endoscopic imaging. Both intensity and polarization-sensitive images could be acquired simultaneously at 18.5K axial scans/s. In vivo 3D images of human fingertips and oral cavity tissue are presented as a demonstration.

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