• DocumentCode
    1278812
  • Title

    Volumetric blood flow via time-domain correlation: experimental verification

  • Author

    Embree, Paul M. ; O´Brien, William D., Jr.

  • Author_Institution
    Phillips Ultrasound, Santa Ana, CA, USA
  • Volume
    37
  • Issue
    3
  • fYear
    1990
  • fDate
    5/1/1990 12:00:00 AM
  • Firstpage
    176
  • Lastpage
    189
  • Abstract
    A novel ultrasonic volumetric flow measurement method using time-domain correlation of consecutive pairs of echoes has been developed. An ultrasonic data acquisition system determined the time shift between a pair of range gated echoes by searching for the time shift with the maximum correlation between the RF sampled waveforms. Experiments with a 5-MHz transducer indicate that the standard deviation of the estimate of steady fluid velocity through 6-mm-diameter tubes is less than 10% of the mean. Experimentally, Sephadex (G-50; 20-80 mu m dia.) particles in water and fresh porcine blood have been used as ultrasound scattering fluids. Two-dimensional (2-D) flow velocity can be estimated by slowly sweeping the ultrasonic beam across the blood vessel phantom. Volumetric flow through the vessel is estimated by integrating the 2-D flow velocity field and then is compared to hydrodynamic flow measurements to assess the overall experimental accuracy of the time-domain method. Flow rates from 50-500 ml/min have been estimated with an accuracy better than 10% under the idealized characteristics used in this study, which include straight circular thin-walled tubes, laminar axially-symmetric steady flow, and no intervening tissues.<>
  • Keywords
    biomedical measurement; biomedical ultrasonics; echo; flow measurement; haemodynamics; ultrasonic velocity measurement; 2-D flow velocity field; 5 MHz; RF sampled waveforms; Sephadex; blood flow; blood vessel phantom; circular thin-walled tubes; consecutive pairs; echoes; hydrodynamic flow measurements; laminar axially-symmetric steady flow; range gated echoes; standard deviation; steady fluid velocity; time shift; time-domain correlation; transducer; ultrasonic data acquisition system; ultrasonic volumetric flow measurement method; ultrasound scattering fluids; Blood flow; Data acquisition; Fluid flow measurement; Particle scattering; Radio frequency; Time domain analysis; Ultrasonic imaging; Ultrasonic transducers; Ultrasonic variables measurement; Volume measurement;
  • fLanguage
    English
  • Journal_Title
    Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-3010
  • Type

    jour

  • DOI
    10.1109/58.55307
  • Filename
    55307