• DocumentCode
    873342
  • Title

    Nonlinear viscoelastic properties of tissue assessed by ultrasound

  • Author

    Sinkus, Ralph ; Bercoff, Jeremy ; Tanter, Mickaël ; Gennisson, Jean-Luc ; El Khoury, C. ; Servois, Vincent ; Tardivon, Anne ; Fink, Mathias

  • Author_Institution
    Lab. Ondes et Acousti., Ecole Superieure de Phys. et de Chimie Ind., Paris
  • Volume
    53
  • Issue
    11
  • fYear
    2006
  • fDate
    11/1/2006 12:00:00 AM
  • Firstpage
    2009
  • Lastpage
    2018
  • Abstract
    A technique to assess qualitatively the presence of higher-order viscoelastic parameters is presented. Low-frequency, monochromatic elastic waves are emitted into the material via an external vibrator. The resulting steady-state motion is detected in real time via an ultra fast ultrasound system using classical, one-dimensional (1-D) ultrasound speckle correlation for motion estimation. Total data acquisition lasts only for about 250 ms. The spectrum of the temporal displacement data at each image point is used for analysis. The presence of nonlinear effects is detected by inspection of the ratio of the second harmonics amplitude with respect to the total amplitude summed up to the second harmonic. Results from a polyacrylamide-based phantom indicate a linear response (i.e., the absence of higher harmonics) for this type of material at 65 Hz mechanical vibration frequency and about 100 mum amplitude. A lesion, artificially created by injection of glutaraldehyde into a beef specimen, shows the development of higher harmonics at the location of injection as a function of time. The presence of upper harmonics is clearly evident at the location of a malignant lesion within a mastectomy
  • Keywords
    biological tissues; biomechanics; biomedical ultrasonics; medical image processing; motion estimation; phantoms; viscoelasticity; 65 Hz; beef specimen; classical one-dimensional ultrasound speckle correlation; glutaraldehyde; lesion; low-frequency monochromatic elastic waves; malignant lesion; mastectomy; mechanical vibration frequency; motion estimation; nonlinear viscoelastic properties; polyacrylamide-based phantom; second harmonics amplitude; steady-state motion; temporal displacement; tissue; ultrafast ultrasound system; Biological materials; Elasticity; Lesions; Motion detection; Motion estimation; Real time systems; Speckle; Steady-state; Ultrasonic imaging; Viscosity;
  • fLanguage
    English
  • Journal_Title
    Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-3010
  • Type

    jour

  • DOI
    10.1109/TUFFC.2006.141
  • Filename
    4037209