• DocumentCode
    1372620
  • Title

    Multiscale Amplitude-Modulation Frequency-Modulation (AM–FM) Texture Analysis of Multiple Sclerosis in Brain MRI Images

  • Author

    Loizou, C.P. ; Murray, V. ; Pattichis, M.S. ; Seimenis, I. ; Pantziaris, M. ; Pattichis, C.S.

  • Author_Institution
    Dept. of Comput. Sci., InterCollege, Limassol, Cyprus
  • Volume
    15
  • Issue
    1
  • fYear
    2011
  • Firstpage
    119
  • Lastpage
    129
  • Abstract
    This study introduces the use of multiscale amplitude modulation-frequency modulation (AM-FM) texture analysis of multiple sclerosis (MS) using magnetic resonance (MR) images from brain. Clinically, there is interest in identifying potential associations between lesion texture and disease progression, and in relating texture features with relevant clinical indexes, such as the expanded disability status scale (EDSS). This longitudinal study explores the application of 2-D AM-FM analysis of brain white matter MS lesions to quantify and monitor disease load. To this end, MS lesions and normal-appearing white matter (NAWM) from MS patients, as well as normal white matter (NWM) from healthy volunteers, were segmented on transverse T2-weighted images obtained from serial brain MR imaging (MRI) scans (0 and 6-12 months). The instantaneous amplitude (IA), the magnitude of the instantaneous frequency (IF), and the IF angle were extracted from each segmented region at different scales. The findings suggest that AM-FM characteristics succeed in differentiating 1) between NWM and lesions; 2) between NAWM and lesions; and 3) between NWM and NAWM. A support vector machine (SVM) classifier succeeded in differentiating between patients that, two years after the initial MRI scan, acquired an EDSS ≤ 2 from those with EDSS >; 2 (correct classification rate = 86%). The best classification results were obtained from including the combination of the low-scale IA and IF magnitude with the medium-scale IA. The AM-FM features provide complementary information to classical texture analysis features like the gray-scale median, contrast, and coarseness. The findings of this study provide evidence that AM-FM features may have a potential role as surrogate markers of lesion load in MS.
  • Keywords
    amplitude modulation; biological tissues; biomedical MRI; brain; diseases; feature extraction; frequency modulation; image classification; image texture; medical image processing; amplitude-modulation frequency-modulation texture analysis; brain MRI images; brain white matter MS lesions; disease progression; expanded disability status scale; instantaneous amplitude; instantaneous frequency; lesion texture; magnetic resonance imaging; multiple sclerosis; multiscale AM-FM texture analysis; normal white matter; normal-appearing white matter; support vector machine classifier; Diseases; Feature extraction; Histograms; Image segmentation; Lesions; Magnetic resonance imaging; Pixel; Amplitude-modulation frequency-modulation (AM–FM); magnetic resonance imaging (MRI); multiple sclerosis (MS); texture analysis; Adult; Algorithms; Area Under Curve; Artificial Intelligence; Brain; Female; Humans; Image Processing, Computer-Assisted; Magnetic Resonance Imaging; Male; Multiple Sclerosis; Statistics, Nonparametric;
  • fLanguage
    English
  • Journal_Title
    Information Technology in Biomedicine, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1089-7771
  • Type

    jour

  • DOI
    10.1109/TITB.2010.2091279
  • Filename
    5624633