• DocumentCode
    2637237
  • Title

    Frequency dispersion of wave velocity in arterial vessels

  • Author

    Zhang, Xiaoming ; Fatemi, Mostafa ; Greenleaf, James F.

  • Author_Institution
    Dept. of Physiol. & Biophys., Mayo Clinic Sch. of Medicine, Rochester, MN, USA
  • fYear
    2004
  • fDate
    15-18 April 2004
  • Firstpage
    1347
  • Abstract
    Pulse wave velocity in an artery is a very important indicator of the stiffness and disease of the artery. Pulse wave velocity in an artery is measured with the standard pulse delay technique. However, the precise timing of the pressure wave is difficult due to the presence of reflected waves. In this paper we propose to generate a wave of a few hundred Hz in an artery by localized radiation force of ultrasound. This wave attenuates very quickly, in a few centimeters, due to the viscoelasticity of the artery and surrounding tissues. Therefore, no reflected wave exists. The wave velocity can be measured accurately by the phase change versus distance. The frequency dispersion of wave velocity is also described because the pulse wave velocity method does not consider dispersion. A new theoretic model is proposed to investigate the wave propagation in arteries. The model is substantiated by in vitro experiments.
  • Keywords
    biological tissues; biomechanics; biomedical measurement; biomedical ultrasonics; blood vessels; diseases; velocity measurement; arterial vessels; artery disease; artery stiffness; artery viscoelasticity; few hundred Hz wave generation; localized radiation force; pressure wave; pulse wave velocity measurement; pulse wave velocity method; reflected wave; standard pulse delay technique; tissues viscoelasticity; ultrasound; wave propagation; wave velocity frequency dispersion; Arteries; Diseases; Frequency; Measurement standards; Propagation delay; Pulse measurements; Timing; Ultrasonic imaging; Ultrasonic variables measurement; Velocity measurement;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Biomedical Imaging: Nano to Macro, 2004. IEEE International Symposium on
  • Print_ISBN
    0-7803-8388-5
  • Type

    conf

  • DOI
    10.1109/ISBI.2004.1398796
  • Filename
    1398796