Advanced Search

ISSN1001-3806 CN51-1125/TN Map

Volume 40 Issue 6
Sep.  2016
Article Contents
Turn off MathJax

Citation:

Comparison of time domain and frequency domain of multi-wavelength photoacoustic signals

  • Corresponding author: CUI Yaoyao, cuiyy@sibet.ac.cn
  • Received Date: 2015-09-14
    Accepted Date: 2015-10-19
  • In order to analysis the characteristics and differences of photoacoustic imaging signal under different wavelengths in time domain and frequency domain, multi-wavelength photoacoustic imaging experiment with different targets including graphite phantom, pork and pig blood phantom was designed. The results show that the performance of different targets was quite different in time domain and frequency domain. The acoustic spectrum of photoacoustic signals for different targets was unique. Frequencies corresponded to the peaks of acoustic spectrum were same. The performance can be utilized for tissue characterization description and component identification. The research is helpful for organizational recognization by using photoacoustic imaging. And it will be the fundamental research for further frequency-domain analysis and study of multispectral photoacoustic imaging.
  • 加载中
  • [1]

    XU X H, LI H. Photoacoustic imaging in biomedicine[J]. Review of Scientific Instruments, 2006, 77(4):041101.
    [2]

    XING D,XIANG L Z. Photoacoustic imaging technique of tissue and Its applicationsin biomedicine[J].Laser Optoelectronics Progress, 2007, 44(8):26-33(in Chinese).
    [3]

    ZHANG J Y,XIE W M,ZENG Z P, et al. Recent progress in photoacoustic imaging technology[J]. Chinese Optics, 2011,4(2):111-117(in Chinese).
    [4]

    LI J. Photoacoustic imaging and its application in biomedicine area[J]. Modern Instruments, 2010, 16(5):31-35(in Chinese).
    [5]

    HE J F, TAN Y. Development of photoacoustic imaging technology in biomedicine[J]. Laser Technology, 2007, 31(5):530-533(in Chinese).
    [6]

    BEARD P. Biomedical photoacoustic imaging[J]. Interface Focus, 2011, 1(4):602-631.
    [7]

    MANOHAR S, VAARTJES S E, HESPEN J C G V, et al. Initial results of in vivo non-invasive cancer imaging in the human breast using near-infrared photoacoustics[J]. Optics Express, 2007, 15(8):12277-12285.
    [8]

    ZERDA A D L, PAULUS Y M, TEED R, et al. Photoacoustic ocular imaging[J]. Optics Letters, 2010, 35(4):270-272.
    [9]

    TAN Y, HE J F, CAO J L, et al. High-contrastandfastphotoacousticimageoftissue[J]. Laser Technology, 2008, 32(5):551-553(in Chinese).
    [10]

    WANG L V, SONG H. Photoacoustic tomography:in vivo imaging from organelles to organs[J]. Science, 2012, 335(6075):1458-1462.
    [11]

    ZHANG H F, MASLOV K, STOICA G, et al. Functional photoacoustic microscopy for high-resolution and noninvasive in vivo imaging[J]. Nature Biotechnology, 2006, 24(7):848-851.
    [12]

    KUMON R E, DENG C X, WANG X. Frequency-domain analysis of photoacoustic imaging data from prostate adenocarcinoma tumors in a murine model[J]. Ultrasound in Medicine Biology, 2011, 37(5):834-839.
    [13]

    KOMEL P K S, PAUL C B. Two-dimensional photoacoustic imaging by use of Fourier-transform image reconstruction and a detector with an anisotropic response[J]. Applied Optics, 2003, 42(10):1899-1908.
    [14]

    XU Y, XU M, WANG L V. Exact frequency-domain reconstruction for thermoacoustic tomography-Ⅱ:Cylindrical geometry[J]. IEEE Transactions on Medical Imaging, 2002, 21(7):829-833.
    [15]

    GERTSCH A A G, BUSH N L, BIRTILL D C C, et al. Toward characterizing the size of microscopic optical absorbers using optoacoustic emission spectroscopy[J].Proceeding of the SPIE,2010,7564:75641M.
    [16]

    SILVERMAN R H, KONG F, LLOYD H O, et al. Fine-resolution photoacoustic imaging of the eye[J].Proceeding of the SPIE,2010,7564:75640Y.
    [17]

    PATEL C, TAM A. Pulsed optoacoustic spectroscopy of condensed matter[J]. Review of Modern Physics, 1981, 53(3):517-550.
  • 加载中
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Article views(4521) PDF downloads(309) Cited by()

Proportional views

Comparison of time domain and frequency domain of multi-wavelength photoacoustic signals

    Corresponding author: CUI Yaoyao, cuiyy@sibet.ac.cn
  • 1. Suzhou Institute of Biomedical Engineering and Technology, Chinese Academy of Sciences, Suzhou 215163, China;
  • 2. Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, China;
  • 3. University of Chinese Academy of Sciences, Beijing 100049, China

Abstract: In order to analysis the characteristics and differences of photoacoustic imaging signal under different wavelengths in time domain and frequency domain, multi-wavelength photoacoustic imaging experiment with different targets including graphite phantom, pork and pig blood phantom was designed. The results show that the performance of different targets was quite different in time domain and frequency domain. The acoustic spectrum of photoacoustic signals for different targets was unique. Frequencies corresponded to the peaks of acoustic spectrum were same. The performance can be utilized for tissue characterization description and component identification. The research is helpful for organizational recognization by using photoacoustic imaging. And it will be the fundamental research for further frequency-domain analysis and study of multispectral photoacoustic imaging.

Reference (17)

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return