• DocumentCode
    1251112
  • Title

    Optoacoustic imaging using a three-dimensional reconstruction algorithm

  • Author

    Köstli, Kornel P. ; Frauchiger, Daniel ; Niederhauser, Joël J. ; Paltauf, Günther ; Weber, Heinz P. ; Frenz, Martin

  • Author_Institution
    Inst. of Appl. Phys., Bern Univ., Switzerland
  • Volume
    7
  • Issue
    6
  • fYear
    2001
  • Firstpage
    918
  • Lastpage
    923
  • Abstract
    A novel three-dimensional (3-D) computational algorithm to reconstruct 3-D optoacoustic images from two-dimensional (2-D) pressure distributions generated at the sample surface is presented. The 2-D pressure distributions were measured as images at different delay times after the excitation laser pulse. The pressure images were captured with a gated CCD camera as the local pressure induces intensity changes of a reflected probe beam at the surface of the irradiated sample. The illumination time was 10 ns and the resolution of the surface pressure image was 20 μm. The reconstruction algorithm is based on the decomposition into plane waves. The algorithm was tested in the back projection of simulated pressure transients of three sources, and applied to different biological systems. Furthermore the algorithm was compared with the time of flight back projection algorithm. Optoacoustic images with a depth resolution of 15 μm and a lateral resolution of 100 μm are presented
  • Keywords
    acoustic tomography; biomedical ultrasonics; fast Fourier transforms; image reconstruction; inverse problems; medical image processing; photoacoustic effect; 2-D pressure distributions; 3-D optoacoustic images; Fourier-reconstruction algorithm; Green´s function; Poisson integral; backprojection; blood vessel model; decomposition into plane waves; fast Fourier algorithm; forward problem; four-dimensional space-time; gated CCD camera; insect body; intensity changes; inverse problem; medical diagnostics; optical pressure transducer; optoacoustic imaging; reflected probe beam; sample surface; simulated pressure transients; three-dimensional reconstruction algorithm; tomography images; Delay; Distributed computing; Image reconstruction; Image resolution; Laser excitation; Optical pulses; Pressure measurement; Pulse measurements; Surface reconstruction; Two dimensional displays;
  • fLanguage
    English
  • Journal_Title
    Selected Topics in Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    1077-260X
  • Type

    jour

  • DOI
    10.1109/2944.983294
  • Filename
    983294