Title :
Ultrasound Pulse-Echo Imaging with an Optimized Propagator
Author :
Huang, Lianjie ; Li, Cuiping ; Duric, Neb ; Quan, Youli ; Hanson, Kenneth M.
Author_Institution :
Los Alamos Nat. Lab., Los Alamos, NM
Abstract :
Properly accounting for ultrasound scattering from heterogeneities within the breast is essential for high- resolution ultrasound breast imaging. This requires a reflectivity image reconstruction method capable of accurately handling ultrasound scattering. We develop an optimized ultrasound-wave propagator for reflectivity image reconstruction using pulse-echo ultrasound signals. The method is based on a solution of one-way wave equation and recursive inward continuation of ultrasound wavefields in the frequency-space and frequency-wavenumber domains using a heterogeneous sound-speed model of the breast obtained from tomography. It minimizes ultrasound phase errors during wavefield inward continuation while maintaining the advantage of high computational efficiency. Pulse- echo ultrasound imaging tests for a numerical breast phantom demonstrate that our optimized method has the potential to improve the reliability and accuracy of ultrasound breast imaging.
Keywords :
acoustic tomography; bioacoustics; biomedical ultrasonics; gynaecology; image reconstruction; medical image processing; phantoms; breast phantom; frequency-space domain; frequency-wavenumber domain; heterogeneous sound-speed model; high-resolution ultrasound breast imaging; reflectivity image reconstruction method; tomography; ultrasound pulse-echo imaging; ultrasound wavefields; ultrasound-wave propagator; Acoustic propagation; Acoustic scattering; Breast; High-resolution imaging; Image reconstruction; Image resolution; Partial differential equations; Reflectivity; Signal resolution; Ultrasonic imaging; Breast imaging; pulse-echo; reflectivity; scattering; ultrasound;
Conference_Titel :
BioMedical Engineering and Informatics, 2008. BMEI 2008. International Conference on
Conference_Location :
Sanya
Print_ISBN :
978-0-7695-3118-2
DOI :
10.1109/BMEI.2008.289