• DocumentCode
    996431
  • Title

    Microwave-tomographic imaging of the high dielectric-contrast objects using different image-reconstruction approaches

  • Author

    Semenov, Serguei Y. ; Bulyshev, Alexander E. ; Abubakar, Aria ; Posukh, Vitaliy G. ; Sizov, Yuri E. ; Souvorov, Alexander E. ; Van Den Berg, Peter M. ; Williams, Thomas C.

  • Author_Institution
    Biophys. Lab., Carolinas Med. Center, Charlotte, NC, USA
  • Volume
    53
  • Issue
    7
  • fYear
    2005
  • fDate
    7/1/2005 12:00:00 AM
  • Firstpage
    2284
  • Lastpage
    2294
  • Abstract
    Microwave tomography is an imaging modality based on differentiation of dielectric properties of an object. The dielectric properties of biological tissues and its functional changes have high medical significance. Biomedical applications of microwave tomography are a very complicated and challenging problem, from both technical and image reconstruction point-of-views. The high contrast in tissue dielectric properties presenting significant advantage for diagnostic purposes possesses a very challenging problem from an image-reconstruction prospective. Different imaging approaches have been developed to attack the problem, such as two-dimensional (2-D) and three-dimensional (3-D), minimization, and iteration schemes. The goal of this research is to study imaging performance of the Newton and the multiplicative regularized contrast source inversion (MR-CSI) methods in 2-D geometry and gradient and MR-CSI methods in 3-D geometry using high-contrast, medium-size phantoms, and biological objects. Experiments were conducted on phantoms and excised segment of a pig hind-leg using a 3-D microwave-tomographic system operating at frequencies of 0.9 and 2.05 GHz. Both objects being of medium size (10-15 cm) possess high dielectric contrasts. Reconstructed images were obtained using all imaging approaches. Different approaches are evaluated and discussed based on its performance and quality of reconstructed images.
  • Keywords
    Newton method; biological tissues; dielectric properties; gradient methods; image reconstruction; medical image processing; microwave imaging; phantoms; tomography; 0.9 GHz; 2.05 GHz; 2D geometry; 3D geometry; 3D microwave tomographic system; MR-CSI method; Newton method; gradient methods; high dielectric-contrast objects; image reconstruction; microwave tomographic imaging; microwave tomography; multiplicative regularized contrast source inversion; Biological tissues; Biomedical imaging; Dielectrics; Geometry; Image reconstruction; Imaging phantoms; Medical diagnostic imaging; Microwave imaging; Tomography; Two dimensional displays; Dielectric properties; high contrast; microwave imaging; tomography;
  • fLanguage
    English
  • Journal_Title
    Microwave Theory and Techniques, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9480
  • Type

    jour

  • DOI
    10.1109/TMTT.2005.850459
  • Filename
    1463346