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An advanced in-vivo imaging technology; namely, combined ultrasound, elasticity and photoacoustic imaging, capable of visualizing both structural and functional properties of living tissue, is presented. This hybrid imaging technology is based on the fusion of the complementary imaging modalities and takes full advantage of the many synergistic features of these systems. To highlight fundamental differences...
We investigated the performance of the conventional and high frame rate ultrasound imaging techniques for strain and elasticity imaging. High frame rate imaging is necessary to track fast deformation in elasticity imaging, but the ultrasound image quality is known to be compromised. Both numerical and experimental studies were performed using point targets and tissue mimicking phantoms. The results...
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