• DocumentCode
    1253420
  • Title

    Estimating fractal dimension with fractal interpolation function models

  • Author

    Penn, Alan I. ; Loew, Murray H.

  • Author_Institution
    Alan Penn & Associates, Rockville, MD, USA
  • Volume
    16
  • Issue
    6
  • fYear
    1997
  • Firstpage
    930
  • Lastpage
    937
  • Abstract
    Fractal dimension (FD) is a feature which is widely used to characterize medical images. Previously, researchers have shown that FD separates important classes of images and provides distinctive information about texture. The authors analyze limitations of two principal methods of estimating FD: box-counting (BC) and power spectrum (PS). BC is ineffective when applied to data-limited, low-resolution images; PS is based on a fractional Brownian motion (fBm) model-a model which is not universally applicable. The authors also present background information on the use of fractal interpolation function (FIF) models to estimate FD of data which can be represented in the form of a function. They present a new method of estimating FD in which multiple FIF models are constructed. The mean of the FD´s of the FIF models is taken as the estimate of the FD of the original data. The standard deviation of the FD´s of the FIF models is used as a confidence measure of the estimate. The authors demonstrate how the new method can be used to characterize fractal texture of medical images. In a pilot study, they generated plots of curvature values around the perimeters of images of red blood cells from normal and sickle cell subjects. The new method showed improved separation of the image classes when compared to BC and PS methods.
  • Keywords
    blood; cellular biophysics; fractals; image texture; interpolation; medical image processing; modelling; box-counting; data-limited low-resolution images; erythrocytes; fractal dimension estimation; fractal interpolation function models; fractional Brownian motion model; medical diagnostic imaging; medical image characterization; power spectrum; red blood cells; sickle cell subjects; Biomedical imaging; Brownian motion; Computed tomography; Fractals; Image color analysis; Image motion analysis; Image texture analysis; Interpolation; Measurement standards; Red blood cells; Fractals; Image Processing, Computer-Assisted;
  • fLanguage
    English
  • Journal_Title
    Medical Imaging, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0062
  • Type

    jour

  • DOI
    10.1109/42.650889
  • Filename
    650889