Depth-resolved analytical model and correction algorithm for photothermal optical coherence tomography

被引:16
|
作者
Lapierre-Landry, Maryse [1 ]
Tucker-Schwartz, Jason M. [1 ]
Skala, Melissa C. [1 ]
机构
[1] Vanderbilt Univ, Dept Biomed Engn, Nashville, TN 37235 USA
来源
BIOMEDICAL OPTICS EXPRESS | 2016年 / 7卷 / 07期
关键词
IN-VIVO; INDOCYANINE GREEN; GOLD NANOPARTICLES; CONTRAST AGENTS; CANCER; ANGIOGENESIS; MICROSCOPY; ARTIFACTS; NANORODS; DELIVERY;
D O I
10.1364/BOE.7.002607
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Photothermal OCT (PT-OCT) is an emerging molecular imaging technique that occupies a spatial imaging regime between microscopy and whole body imaging. PT-OCT would benefit from a theoretical model to optimize imaging parameters and test image processing algorithms. We propose the first analytical PT-OCT model to replicate an experimental A-scan in homogeneous and layered samples. We also propose the PT-CLEAN algorithm to reduce phase-accumulation and shadowing, two artifacts found in PT-OCT images, and demonstrate it on phantoms and in vivo mouse tumors. (C) 2016 Optical Society of America
引用
收藏
页码:2607 / 2622
页数:16
相关论文
共 50 条
  • [11] Photothermal optical coherence tomography for depth-resolved imaging of mesenchymal stem cells via single wall carbon nanotubes
    Subhash, Hrebesh M.
    Connolly, Emma
    Murphy, Mary
    Barron, Valerie
    Leahy, Martin
    NANOSCALE IMAGING, SENSING, AND ACTUATION FOR BIOMEDICAL APPLICATIONS XI, 2014, 8954
  • [12] Accuracy and precision of depth-resolved estimation of attenuation coefficients in optical coherence tomography
    Neubrand, Linda B.
    van Leeuwen, Ton G.
    Faber, Dirk J.
    JOURNAL OF BIOMEDICAL OPTICS, 2023, 28 (06)
  • [13] RECONSTRUCTION OF DEPTH-RESOLVED FIBER ORIENTATIONS IN THE BRAIN WITH POLARIZATION SENSITIVE OPTICAL COHERENCE TOMOGRAPHY
    Wang, H.
    Boas, D.
    Akkin, T.
    JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2016, 36 : 388 - 389
  • [14] Depth-resolved attenuation coefficient estimation for skin cancer assessment with Optical Coherence Tomography
    Real, Eusebio
    Perez Paredes, Gema
    Lopez Higuera, Jose M.
    Conde, Olga M.
    OPTICAL COHERENCE IMAGING TECHNIQUES AND IMAGING IN SCATTERING MEDIA III, 2019, 11078
  • [15] Extension of depth-resolved reconstruction of attenuation coefficients in optical coherence tomography for slim samples
    Hohmann, Martin
    Lengenfelder, B.
    Kanawade, R.
    Klaempfl, F.
    Schmidt, Michael
    BIOPHOTONICS JAPAN 2015, 2015, 9792
  • [16] Extraction and compensation for depth-resolved phase error in spectral domain optical coherence tomography
    Zhang, Xianling
    Gao, Wanrong
    Chen, Chaoliang
    Bian, Haiyi
    Zhu, Yue
    Zhongguo Jiguang/Chinese Journal of Lasers, 2014, 41 (02):
  • [17] Automated, Depth-Resolved Estimation of the Attenuation Coefficient From Optical Coherence Tomography Data
    Smith, Gennifer T.
    Dwork, Nicholas
    O'Connor, Daniel
    Sikora, Uzair
    Lurie, Kristen L.
    Pauly, John M.
    Ellerbee, Audrey K.
    IEEE TRANSACTIONS ON MEDICAL IMAGING, 2015, 34 (12) : 2592 - 2602
  • [18] Techniques for extraction of depth-resolved in vivo human retinal intrinsic optical signals with optical coherence tomography
    Tumlinson, Alexandre R.
    Hermann, Boris
    Hofer, Bernd
    Povazay, Boris
    Margrain, Tom H.
    Binns, Alison M.
    Drexler, Wolfgang
    JAPANESE JOURNAL OF OPHTHALMOLOGY, 2009, 53 (04) : 315 - 326
  • [19] Techniques for extraction of depth-resolved in vivo human retinal intrinsic optical signals with optical coherence tomography
    Alexandre R. Tumlinson
    Boris Hermann
    Bernd Hofer
    Boris Považay
    Tom H. Margrain
    Alison M. Binns
    Wolfgang Drexler
    Japanese Journal of Ophthalmology, 2009, 53 : 315 - 326
  • [20] Depth-Resolved Physiological Response of Retina to Transcorneal Electrical Stimulation Measured With Optical Coherence Tomography
    Sun, Pengcheng
    Li, Qian
    Li, Heng
    Di, Liqing
    Su, Xiaofan
    Chen, Jianpin
    Zheng, Hao
    Chen, Yao
    Zhou, Chuanqing
    Chai, Xinyu
    IEEE TRANSACTIONS ON NEURAL SYSTEMS AND REHABILITATION ENGINEERING, 2019, 27 (05) : 905 - 915