• DocumentCode
    881391
  • Title

    Predicting Tumor Location by Modeling the Deformation of the Breast

  • Author

    Pathmanathan, Pras ; Gavaghan, David J. ; Whiteley, Jonathan P. ; Chapman, S. Jonathan ; Brady, J. Michael

  • Author_Institution
    Comput. Lab., Oxford Univ., Oxford
  • Volume
    55
  • Issue
    10
  • fYear
    2008
  • Firstpage
    2471
  • Lastpage
    2480
  • Abstract
    Breast cancer is one of the biggest killers in the western world, and early diagnosis is essential for improved prognosis. The shape of the breast varies hugely between the scenarios of magnetic resonance (MR) imaging (patient lies prone, breast hanging down under gravity), X-ray mammography (breast strongly compressed) and ultrasound or biopsy/surgery (patient lies supine), rendering image fusion an extremely difficult task. This paper is concerned with the use of the finite-element method and nonlinear elasticity to build a 3-D, patient-specific, anatomically accurate model of the breast. The model is constructed from MR images and can be deformed to simulate breast shape and predict tumor location during mammography or biopsy/surgery. Two extensions of the standard elasticity problem need to be solved: an inverse elasticity problem (arising from the fact that only a deformed, stressed, state is known initially), and the contact problem of modeling compression. The model is used for craniocaudal mediolateral oblique mammographic image matching, and a number of numerical experiments are performed.
  • Keywords
    biological organs; biomechanics; biomedical MRI; biomedical ultrasonics; cancer; deformation; diagnostic radiography; elasticity; finite element analysis; image matching; mammography; medical image processing; physiological models; surgery; tumours; X-ray mammography; biopsy; breast cancer; breast deformation; breast model; breast shape; compression modeling; craniocaudal mediolateral oblique mammography; finite-element method; image matching; inverse elasticity problem; magnetic resonance imaging; nonlinear elasticity; standard elasticity problem; surgery; tumor location; ultrasound imaging; Breast biopsy; Breast neoplasms; Deformable models; Elasticity; Image coding; Mammography; Predictive models; Shape; Surgery; Ultrasonic imaging; Breast; deformation; imaging; mechanics; Biopsy; Breast; Breast Neoplasms; Elasticity; Female; Finite Element Analysis; Humans; Imaging, Three-Dimensional; Magnetic Resonance Imaging; Mammography; Models, Biological; Nonlinear Dynamics; Pressure; Subtraction Technique; Weight-Bearing;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/TBME.2008.925714
  • Filename
    4637996