Title :
Sample volume misregistration in linear array-based dual beam Doppler ultrasound systems
Author :
Steel, Robin ; Fish, Peter J.
Author_Institution :
Sch. of Informatics, Univ. of Wales, Bangor, UK
fDate :
7/1/2003 12:00:00 AM
Abstract :
Large velocity estimation errors can occur in dual beam Doppler ultrasound velocity measurement systems when there is left/right sample volume misregistration, particularly when the interbeam angle is small. Such misregistration will occur when there is tissue inhomogeneity. This is investigated for a typical type of inhomogeneity-a layer of fat-by calculating the amount of both angle and translation misregistration occurring in such a system realized using a single linear array transducer. The complex sample volume sensitivity is calculated using a modified time domain approach, combining the spatial impulse response method with ray tracing. The effects on these misregistrations of altering the aperture sizes and their relative positions on the array is then investigated to derive an improved aperture configuration for dual beam velocity estimation. Arrangements with transmit apertures wider than the receive apertures are shown to be preferable in this context.
Keywords :
Doppler measurement; biomedical ultrasonics; ray tracing; time-domain analysis; ultrasonic transducer arrays; angle misregistration; aperture sizes; dual beam velocity estimation; fat; interbeam angle; linear array-based dual beam Doppler ultrasound systems; modified time domain approach; ray tracing; sample volume misregistration; sample volume sensitivity; single linear array transducer; spatial impulse response method; tissue inhomogeneity; translation misregistration; velocity estimation errors; Apertures; Blood; Estimation error; Informatics; Marine animals; Ray tracing; Steel; Structural beams; Ultrasonic imaging; Velocity measurement; Adipose Tissue; Arteries; Artifacts; Blood Flow Velocity; Computer Simulation; Equipment Failure Analysis; Humans; Models, Biological; Quality Control; Sample Size; Scattering, Radiation; Subtraction Technique; Transducers; Ultrasonography, Doppler, Duplex;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2003.1214503