All fiber optics circular-state swept source polarization-sensitive optical coherence tomography

被引:15
作者
Lin, Hermann [1 ]
Kao, Meng-Chun [2 ]
Lai, Chih-Ming [3 ]
Huang, Jyun-Cin [2 ]
Kuo, Wen-Chuan [2 ,4 ]
机构
[1] Natl Kaohsiung Normal Univ, Dept Optoelect & Commun Engn, Kaohsiung 802, Taiwan
[2] Natl Yang Ming Univ, Inst Biophoton, Taipei 112, Taiwan
[3] Ming Chuan Univ, Dept Elect Engn, Tao Yuan 333, Taiwan
[4] Natl Yang Ming Univ, Biophoton & Mol Imaging Res Ctr, Taipei 112, Taiwan
关键词
polarization-sensitive optical coherence tomography; polarization-maintaining fiber; all fiber optics; MAINTAINING FIBER; AXIS ORIENTATION; SPECTRAL-DOMAIN; BIREFRINGENCE CHARACTERIZATION; BIOLOGICAL TISSUE; REFLECTOMETER;
D O I
10.1117/1.JBO.19.2.021110
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A swept source (SS)-based circular-state (CS) polarization-sensitive optical coherence tomography (PS-OCT) constructed entirely with polarization-maintaining fiber optics components is proposed with the experimental verification. By means of the proposed calibration scheme, bulk quarter-wave plates can be replaced by fiber optics polarization controllers to, therefore, realize an all-fiber optics CS SSPS-OCT. We also present a numerical dispersion compensation method, which can not only enhance the axial resolution, but also improve the signal-to-noise ratio of the images. We demonstrate that this compact and portable CS SSPS-OCT system with an accuracy comparable to bulk optics systems requires less stringent lens alignment and can possibly serve as a technology to realize PS-OCT instrument for clinical applications (e. g., endoscopy). The largest deviations in the phase retardation (PR) and fast-axis (FA) angle due to sample probe in the linear scanning and a rotation angle smaller than 65 deg were of the same order as those in stationary probe setups. The influence of fiber bending on the measured PR and FA is also investigated. The largest deviations of the PR were 3.5 deg and the measured FA change by similar to 12 to 21 deg. Finally, in vivo imaging of the human fingertip and nail was successfully demonstrated with a linear scanning probe. (C) 2014 Society of Photo-Optical Instrumentation Engineers (SPIE)
引用
收藏
页数:9
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