Fast Shear Compounding Using Robust 2-D Shear Wave Speed Calculation and Multi-directional Filtering

Abstract A fast shear compounding method was developed in this study using only one shear wave push-detect cycle, such that the shear wave imaging frame rate is preserved and motion artifacts are minimized. The proposed method is composed of the following steps: 1. Applying a comb-push to produce mu...

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Veröffentlicht in:Ultrasound in medicine & biology 2014-06, Vol.40 (6), p.1343-1355
Hauptverfasser: Song, Pengfei, Manduca, Armando, Zhao, Heng, Urban, Matthew W, Greenleaf, James F, Chen, Shigao
Format: Artikel
Sprache:eng
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Zusammenfassung:Abstract A fast shear compounding method was developed in this study using only one shear wave push-detect cycle, such that the shear wave imaging frame rate is preserved and motion artifacts are minimized. The proposed method is composed of the following steps: 1. Applying a comb-push to produce multiple differently angled shear waves at different spatial locations simultaneously; 2. Decomposing the complex shear wave field into individual shear wave fields with differently oriented shear waves using a multi-directional filter; 3. Using a robust 2-D shear wave speed calculation to reconstruct 2-D shear elasticity maps from each filter direction; and 4. Compounding these 2-D maps from different directions into a final map. An inclusion phantom study showed that the fast shear compounding method could achieve comparable performance to conventional shear compounding without sacrificing the imaging frame rate. A multi-inclusion phantom experiment showed that the fast shear compounding method could provide a full field-of-view, 2-D and compounded shear elasticity map with three types of inclusions clearly resolved and stiffness measurements showing excellent agreement to the nominal values.
ISSN:0301-5629
1879-291X
DOI:10.1016/j.ultrasmedbio.2013.12.026