Polarimetric analysis of the human cornea measured by polarization-sensitive optical coherence tomography

被引:37
|
作者
Fanjul-Velez, Felix [1 ]
Pircher, Michael [2 ]
Baumann, Bernhard [2 ]
Goetzinger, Erich [2 ]
Hitzenberger, Christoph K. [2 ]
Arce-Diego, Jose Luis [1 ]
机构
[1] Univ Cantabria, Elect Technol Syst & Automat Engn Dept, Appl Opt Tech Grp, E-39005 Santander, Cantabria, Spain
[2] Med Univ Vienna, Ctr Med Phys & Biomed Engn, A-1090 Vienna, Austria
基金
奥地利科学基金会;
关键词
corneal polarimetry; corneal birefringence; polarization-sensitive optical coherence tomography; extended Jones matrix; off-axis optical propagation; STROMAL LAMELLAR ORGANIZATION; BIREFRINGENT PROPERTIES; FIBRIL ORIENTATION; COLLAGEN FIBRILS; LIGHT;
D O I
10.1117/1.3486540
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Corneal polarimetry measurement has been the object of several papers. The results of techniques like polarization-sensitive optical coherence tomography (PS-OCT), scanning laser polarimetry, or polarization microscopy are contradictory. Some studies propose a biaxial-like birefringence pattern, while others postulate that birefringence grows at corneal periphery. Several theoretical approaches were proposed for the interpretation of these measurements, but they usually lack accuracy and an adequate consideration of the nonnormal incidence on the tissue. We analyze corneal polarization effects measured by PS-OCT. In vivo and in vitro PS-OCT images of the human cornea are acquired. PS-OCT measurements are apparently not in agreement with the biaxial-like birefringence pattern. We present a polarimetric model of the human cornea based on the extended Jones matrix formalism applied to multilayered systems. We also apply the Poincare equivalence theorem to extract optic axis orientation and birefringence. The results show that for a fibrils orientation pattern composed by alternating circular and radial fibrils, the birefringence is biaxial-like at the corneal center, and there is an almost circularly symmetric high-birefringence area at corneal periphery. The model could be useful for diagnosis of corneal diseases or corneal compensation in retinal polarimetric imaging. (C) 2010 Society of Photo-Optical Instrumentation Engineers. [DOI: 10.1117/1.3486540]
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Scleral birefringence as measured by polarization-sensitive optical coherence tomography and ocular biometric parameters of human eyes in vivo
    Yamanari, Masahiro
    Nagase, Satoko
    Fukuda, Shinichi
    Ishii, Kotaro
    Tanaka, Ryosuke
    Yasui, Takeshi
    Oshika, Tetsuro
    Miura, Masahiro
    Yasuno, Yoshiaki
    BIOMEDICAL OPTICS EXPRESS, 2014, 5 (05): : 1391 - 1402
  • [32] Polarization-sensitive optical coherence tomography with a single input polarization state
    Villiger, Martin
    Xiong, Qiaozhou
    Wang, Nanshuo
    Liu, Xinyu
    Liu, Linbo
    Bouma, Brett E.
    2019 IEEE PHOTONICS CONFERENCE (IPC), 2019,
  • [33] Polarization-Sensitive Spectral Interferometric Optical Coherence Tomography for Human Skin Imaging
    Shuichi Makita
    Yoshiaki Yasuno
    Yasunori Sutoh
    Masahide Itoh
    Toyohiko Yatagai
    Optical Review, 2003, 10 : 366 - 369
  • [34] Imaging of human aortic atherosclerotic plaques by polarization-sensitive optical coherence tomography
    Kuo, WC
    Shyu, JJ
    Chou, NK
    Lai, CM
    Huang, HC
    Chou, C
    Jan, GJ
    PROCEEDINGS OF THE 26TH ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY, VOLS 1-7, 2004, 26 : 1222 - 1224
  • [35] Polarization memory effect in the polarization-sensitive Optical Coherence Tomography system
    Chen, Yueli
    Otis, Linda
    Zhu, Quing
    COHERENCE DOMAIN OPTICAL METHODS AND OPTICAL COHERENCE TOMOGRAPHY IN BIOMEDICINE XI, 2007, 6429
  • [36] Birefringence measurement of cornea and anterior segment by office-based polarization-sensitive optical coherence tomography
    Lim, Yiheng
    Yamanari, Masahiro
    Fukuda, Shinichi
    Kaji, Yuichi
    Kiuchi, Takahiro
    Miura, Masahiro
    Oshika, Tetsuro
    Yasuno, Yoshiaki
    BIOMEDICAL OPTICS EXPRESS, 2011, 2 (08): : 2392 - 2402
  • [37] Retinal Sensitivity and Depolarization Measured by Polarization-Sensitive Optical Coherence Tomography in Patients with High Myopia
    Harimoto, Akira
    Yamamoto, Motoshi
    Komatsu, Kayoko
    Abe, Shoko
    Aoki, Nobuyori
    Yamanari, Masahiro
    Sugiyama, Satoshi
    Minami, Takahiro
    Ueda, Kohei
    Azuma, Keiko
    Aihara, Makoto
    Kato, Satoshi
    Obata, Ryo
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2020, 61 (07)
  • [38] Polarization-sensitive optical coherence tomography for the analysis of collagen content in atherosclerotic plaques
    Nadkarni, S
    Pierce, M
    Park, H
    deBoer, J
    Houser, S
    Bressner, J
    Bouma, B
    Tearney, G
    CIRCULATION, 2005, 112 (17) : U679 - U679
  • [39] Suppression of ghost artifacts in polarization-sensitive optical coherence tomography
    Yang, Di
    Wang, Weike
    Xu, Songwen
    Yuan, Zhuoqun
    Chen, Wenguang
    Liang, Yanmei
    OPTICS AND LASER TECHNOLOGY, 2025, 183
  • [40] Determination of burn depth by polarization-sensitive optical coherence tomography
    Srinivas, SM
    de Boer, JF
    Park, H
    Keikhanzadeh, K
    Huang, HEL
    Zhang, J
    Jung, WQ
    Chen, ZP
    Nelson, JS
    JOURNAL OF BIOMEDICAL OPTICS, 2004, 9 (01) : 207 - 212