• DocumentCode
    1741446
  • Title

    Segmentation of ulcerated plaque: a semi-automatic method for tracking the progression of carotid atherosclerosis

  • Author

    Gill, J.D. ; Ladak, H.M. ; Steinman, D.A. ; Fenster, Aaron

  • Author_Institution
    John P. Robarts Res. Inst., London, Ont., Canada
  • Volume
    1
  • fYear
    2000
  • fDate
    2000
  • Firstpage
    669
  • Abstract
    A semi-automatic method for segmentation of three-dimensional carotid vascular ultrasound (US) images is presented. The method is based on a dynamic balloon model represented by a triangulated mesh. The mesh is manually placed within the interior of the carotid arteries, then is driven outward until it reaches the vessel wall by applying an inflation force to the mesh. Once the mesh is in close proximity to the vessel wall, it is further deformed using an image-based force, in order to better localize the boundary. The authors examine the ability of the segmentation method to segment in vivo 3D US images of the carotid arteries. They furthermore examine its ability to distinguish subtle changes in vessel morphology, with the ultimate goal being to detect the progression or regression of atherosclerotic plaque. Two nearly identical common carotid vessel phantoms were imaged using a three-dimensional US imaging system, automatically registered, then segmented using the semi-automatic algorithm. The fabrication of the two phantoms was identical except for the inclusion of a hemispherical ulceration cut into one of the vessels. The two segmented surfaces were compared by determining the distance between them at each point along one of the two surfaces. Since the 3D US images had been previously registered, the two segmented surfaces are expected to overlap everywhere except near the region of ulceration. This was confirmed to within a 0.3 mm error
  • Keywords
    biomedical ultrasonics; blood vessels; diseases; image segmentation; medical image processing; physiological models; 3D US images; common carotid vessel phantoms; deformable models; dynamic balloon model; image-based force; in vivo 3D US images; inflation force; medical diagnostic imaging; plaque progression; plaque regression; semiautomatic algorithm; subtle vessel morphology changes; triangulated mesh; ulcerated plaque segmentation; Atherosclerosis; Biomedical monitoring; Carotid arteries; Deformable models; Diseases; Image segmentation; In vivo; Ultrasonic variables measurement; Ultrasonography; Visualization;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Engineering in Medicine and Biology Society, 2000. Proceedings of the 22nd Annual International Conference of the IEEE
  • Conference_Location
    Chicago, IL
  • ISSN
    1094-687X
  • Print_ISBN
    0-7803-6465-1
  • Type

    conf

  • DOI
    10.1109/IEMBS.2000.900833
  • Filename
    900833