• DocumentCode
    2368505
  • Title

    Automatic vessel extraction from angiogram images

  • Author

    Guo, Dongbai ; Richardson, Peter

  • Author_Institution
    Brown Univ., Providence, RI, USA
  • fYear
    1998
  • fDate
    13-16 Sep 1998
  • Firstpage
    441
  • Lastpage
    444
  • Abstract
    Vessel extraction from angiogram images is useful for blood vessel measurement and computer visualization of the coronary artery tree. A digitized angiogram can be treated as a height map and ridges in this map correspond to the centerlines of the blood vessels. The authors propose a ridge extraction algorithm based on the calculation of the local maximum ascent direction to extract blood vessel axes automatically from all angiogram image. The output of the ridge detection algorithm is a set of ridge pixels assembled in a natural hierarchy order, aligned with the centerlines of the blood vessel, plus a set of ridge pixels induced by image noise, which require a post processing stage to remove. To extract vessel axes from the angiogram images. First, the digitized angiogram is balanced by a median filter it is then smoothed by a projective non-linear diffusion method. Next, an ROI, which is crossed by the shadow of a vessel, is detected automatically by adaptive thresholding, both to cut the cost of the ridge extraction process and to reduce the number of the spurious ridges induced by image noise. The authors then apply the ridge detection algorithm to the ROI to find candidate vessel centerlines. Finally the detected ridges are piped into a curve relaxation process and the candidate vessel centerlines are assembled together; spurious lines induced by noise are removed
  • Keywords
    angiocardiography; diagnostic radiography; feature extraction; medical image processing; adaptive thresholding; angiogram images; automatic vessel extraction; blood vessel measurement; candidate vessel centerlines; computer visualization; coronary artery tree; digitized angiogram; height map; image noise; local maximum ascent direction calculation; medical diagnostic imaging; natural hierarchy order; projective nonlinear diffusion method; spurious ridges numbers reduction; vessel shadow; Arteries; Assembly; Biomedical imaging; Blood vessels; Costs; Detection algorithms; Filters; Noise reduction; Pixel; Visualization;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Computers in Cardiology 1998
  • Conference_Location
    Cleveland, OH
  • ISSN
    0276-6547
  • Print_ISBN
    0-7803-5200-9
  • Type

    conf

  • DOI
    10.1109/CIC.1998.731897
  • Filename
    731897