Reprint

Ultrasound B-mode Imaging: Beamforming and Image Formation Techniques

Edited by
September 2019
146 pages
  • ISBN978-3-03921-199-9 (Paperback)
  • ISBN978-3-03921-200-2 (PDF)

This book is a reprint of the Special Issue Ultrasound B-mode Imaging: Beamforming and Image Formation Techniques that was published in

Biology & Life Sciences
Chemistry & Materials Science
Computer Science & Mathematics
Engineering
Environmental & Earth Sciences
Physical Sciences
Summary

Ultrasound medical imaging stands out among the other diagnostic imaging modalities for its patient-friendliness, high temporal resolution, low cost, and absence of ionizing radiation. On the other hand, it may still suffer from limited detail level, low signal-to-noise ratio, and narrow field-of-view. In the last decade, new beamforming and image reconstruction techniques have emerged which aim at improving resolution, contrast, and clutter suppression, especially in difficult-to-image patients. Nevertheless, achieving a higher image quality is of the utmost importance in diagnostic ultrasound medical imaging, and further developments are still indispensable. From this point of view, a crucial role can be played by novel beamforming techniques as well as by non-conventional image formation techniques (e.g., advanced transmission strategies, and compounding, coded, and harmonic imaging). This Special Issue includes novel contributions on both ultrasound beamforming and image formation techniques, particularly addressed at improving B-mode image quality and related diagnostic content. This indeed represents a hot topic in the ultrasound imaging community, and further active research in this field is expected, where many challenges still persist.

Format
  • Paperback
License
© 2019 by the authors; CC BY-NC-ND license
Keywords
filtered-delay multiply and sum beamforming; multi-line transmission; spatial coherence; ultrasound imaging; adaptive beamforming; pth root; contrast enhancement; plane wave imaging; ultrasound imaging; ultrasound; speckle reduction; medical image processing; sparse representation; K-singular value decomposition; dictionary learning; B-mode imaging; ultrasound imaging; super-resolution; microbubble; reconstruction; time resolution; medical ultrasound; beam forming; ultrasound imaging; multi-line acquisition; multi-line transmission; plane wave; diverging wave; synthetic aperture; parallel beam forming; beam pattern; image reconstruction; ultrasonic imaging; beamforming; plane wave imaging; grating lobe suppression; beamforming; MRI; MR-visible fiducial marker; subcutaneous fat layer; thyroid imaging; spatial resolution; signal-to-noise ratio (SNR); 1-3 piezocomposite material; multi-perspective ultrasound imaging; cylindrical scanning; dynamic focusing; PMUT linear array; common carotid artery; arterial wall motion; intima-media complex longitudinal motion; quantitative parametrization; multi-line transmit; crosstalk artifacts; coded excitation; cardiac imaging; n/a