Ultrafast imaging in biomedical ultrasound
Сверхбыстрая визуализация в биомедицинском ультразвуке
2014-01-01
SCID: 54.1/nrhd9kq6
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GPU-based platformsbiomedical ultrasounddiverging-wave transmissionplane-wave transmissionultrafast imaging
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Abstract (AI)
Although the use of ultrasonic plane-wave transmissions rather than line-per-line focused beam transmissions has been long studied in research, clinical application of this technology was only recently made possible through developments in graphical processing unit (GPU)-based platforms. Far beyond a technological breakthrough, the use of plane or diverging wave transmissions enables attainment of ultrafast frame rates (typically faster than 1000 frames per second) over a large field of view. This concept has also inspired the emergence of completely novel imaging modes which are valuable for ultrasound-based screening, diagnosis, and therapeutic monitoring. In this review article, we present the basic principles and implementation of ultrafast imaging. In particular, present and future applications of ultrafast imaging in biomedical ultrasound are illustrated and discussed.
Key Findings
1
GPU-based platforms have recently enabled clinical application of plane-wave ultrasound transmissions previously studied mainly in research.
2
Plane- and diverging-wave transmissions achieve ultrafast frame rates, typically exceeding 1000 frames per second, across a large field of view.
3
The review presents fundamental principles, implementation approaches, and current and future biomedical applications of ultrafast ultrasound imaging.
4
Ultrafast imaging has stimulated novel ultrasound imaging modes with potential value for screening, diagnosis, and therapeutic monitoring.
Research Object
ultrafast biomedical ultrasound imaging using plane-wave or diverging-wave transmissions
Research Subject
principles, implementation, and biomedical applications of ultrafast imaging, including screening, diagnosis, and therapeutic monitoring
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2014-01-01
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