• DocumentCode
    1065559
  • Title

    Fast Noise Reduction in Computed Tomography for Improved 3-D Visualization

  • Author

    Schaap, Michiel ; Schilham, Arnold M R ; Zuiderveld, Karel J. ; Prokop, Mathias ; Vonken, Evert-Jan ; Niessen, Wiro J.

  • Author_Institution
    Dept. of Med. Inf. & Radiol., Univ. Med. Center Rotterdam, Rotterdam
  • Volume
    27
  • Issue
    8
  • fYear
    2008
  • Firstpage
    1120
  • Lastpage
    1129
  • Abstract
    Computed tomography (CT) has a trend towards higher resolution and higher noise. This development has increased the interest in anisotropic smoothing techniques for CT, which aim to reduce noise while preserving structures of interest. However, existing smoothing techniques are slow, which makes clinical application difficult. Furthermore, the published methods have limitations with respect to preserving small details in CT data. This paper presents a widely applicable speed optimized framework for anisotropic smoothing techniques. A second contribution of this paper is an extension to an existing smoothing technique aimed at better preserving small structures of interest in CT data. Based on second-order image structure, the method first determines an importance map, which indicates potentially relevant structures that should be preserved. Subsequently an anisotropic diffusion process is started. The diffused data is used in most parts of the images, while structures with significant second-order information are preserved. The method is qualitatively evaluated against an anisotropic diffusion method without structure preservation in an observer study to assess the improvement of 3-D visualizations of CT series and quantitatively by determining the reduction of the difference between low and high dose CT scans of in vitro carotid plaques.
  • Keywords
    blood vessels; computerised tomography; diffusion; diseases; dosimetry; image denoising; image enhancement; medical image processing; anisotropic diffusion; anisotropic smoothing; computed tomography; high dose CT scans; in vitro carotid plaques; noise reduction; second-order image structure; thee-dimensional visualization; Anisotropic magnetoresistance; Biomedical imaging; Cancer; Computed tomography; Image quality; Medical diagnostic imaging; Noise reduction; Radiology; Smoothing methods; Visualization; 3D visualization; Anisotropic diffusion; carotid plaque; computed tomography; computed tomography (CT); edge enhancing; image enhancement; noise reduction; three-dimensional visualization; Algorithms; Artifacts; Imaging, Three-Dimensional; Radiographic Image Enhancement; Radiographic Image Interpretation, Computer-Assisted; Reproducibility of Results; Sensitivity and Specificity; Tomography, X-Ray Computed;
  • fLanguage
    English
  • Journal_Title
    Medical Imaging, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0062
  • Type

    jour

  • DOI
    10.1109/TMI.2008.918322
  • Filename
    4448999