A Novel Motion Compensation Algorithm for Acoustic Radiation Force Elastography

Brian J. Fahey, Stephen J. Hsu, and Gregg E. Trahey

ABSTRACT A novel method of physiological motion compensation for use with radiation force elasticity imaging has been developed. The method utilizes a priori information from finite element method models of the response of soft tissue to impulsive radiation force to isolate physiological motion artifacts from radiation force-induced displacement fields. The new algorithm is evaluated in a series of clinically realistic imaging scenarios, and its performance is compared to that achieved with previously described motion compensation algorithms. Though not without limitations, the new model-based motion compensation algorithm performs favorably in many circumstances and may be a logical choice for use with in vivo abdominal imaging.

Digital Object Identifier 10.1109/TUFFC.2008.762

© 2008, by The Institute of Electrical and Electronics Engineers, Inc. All rights reserved.

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