Lateral Displacement Estimation Using Tissue Incompressibility

Mark A. Lubinski, Stanislav Y. Emelianov, K. R. Raghavan, Andrew E. Yagle, Andrei R. Skovoroda, and Matthew O'Donnell

ABSTRACT Using the incompressibility property of soft tissue, lateral displacements can be reconstructed from axial strain measurements. Results of simulations and experiments on gelatin-based tissue equivalent phantoms are compared with theoretical displacements, as well as estimates derived from traditional speckle tracking. Incompressibility processing greatly improves the accuracy and signal-to-noise ratio (SNR) of lateral displacement measurements compared with more traditional speckle tracking.

© 1996, by The Institute of Electrical and Electronics Engineers, Inc. All rights reserved.

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