DocumentCode :
129020
Title :
Improved Wall Shear Rate method for robust measurements
Author :
Ricci, Stefano ; Swillens, A. ; Ramalli, Alessandro ; Cinthio, M. ; Segers, P. ; Tortoli, Piero
Author_Institution :
Dept. of Inf. Eng., Univ. of Florence, Florence, Italy
fYear :
2014
fDate :
3-6 Sept. 2014
Firstpage :
432
Lastpage :
435
Abstract :
The Wall Shear Rate (WSR) represents an important parameter correlated with cardiovascular diseases, like, for example the atherosclerotic plaque formation. The WSR can be obtained as the radial blood velocity gradient assessed in the wall proximity. The WSR is typically approximated by using flow models like Poiseuille and/or Womersley applied to the measured center-line velocity. However these models cannot account for the complex flow configurations generated by the real geometry of the vessel, and the WSR estimate is inaccurate. The direct measurement of the velocity gradient through a Doppler high-resolution multigate technique can achieve a better accuracy, but the signal near the wall is affected by clutter. In this work an improved velocity reconstruction method for WSR measurement is proposed. It is based on the measurement of the actual velocity profile and a two-step interpolation that reconstructs the velocity in the wall proximity. The method, verified through realistic multiphysics simulations of a carotid artery, achieves a 5% RMS error for velocity reconstruction and a -10.5% underestimation in WSR assessment. The method was also tested on 14 healthy volunteers.
Keywords :
bioacoustics; cardiovascular system; diseases; haemodynamics; Doppler high resolution multigate technique; WSR measurement; atherosclerotic plaque formation; cardiovascular disease; complex flow configurations; radial blood velocity gradient; wall proximity; wall shear rate method; Acoustics; Carotid arteries; Doppler effect; Gold; Standards; Ultrasonic imaging; Velocity measurement; Blood Velocity Profile; Multiphysics Simulations; Wall Shear Rate;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium (IUS), 2014 IEEE International
Conference_Location :
Chicago, IL
Type :
conf
DOI :
10.1109/ULTSYM.2014.0107
Filename :
6931748
Link To Document :
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