Prototype 3D real-time imaging system based on a sparse PZT spiral array

Conference Paper (2018)
Author(s)

Enrico Boni (University of Florence)

Alessandro Ramalli (University of Florence)

Verya Daeichin (ImPhys/Acoustical Wavefield Imaging )

Nico de Jong (ImPhys/Acoustical Wavefield Imaging )

Rik Vos (ImPhys/Acoustical Wavefield Imaging )

P Tortoli (University of Florence)

ImPhys/Acoustical Wavefield Imaging
DOI related publication
https://doi.org/10.1109/ULTSYM.2018.8580133 Final published version
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Publication Year
2018
Language
English
ImPhys/Acoustical Wavefield Imaging
ISBN (print)
978-1-5386-3426-4
ISBN (electronic)
978-1-5386-3425-7
Event
2018 IEEE International Ultrasonics Symposium, IUS 2018 (2018-10-22 - 2018-10-25), Portopia Hotel, Kobe, Japan
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Abstract

3D ultrasound imaging is costly and complicated mostly due to the need of controlling 2D probes with high numbers of elements (≥1024). Sparse arrays are a convenient way to reduce system complexity maintaining reasonable performance. A 256-element density tapered spiral array has been recently designed and realized in a piezoelectric probe prototype. The probe has been connected to the ULA-OP 256 open scanner, which can be programmed to permit volumetric scanning in real-time. This paper reports on the first experimental measurements of transmit ultrasound fields produced by such prototype system, including multi-line transmit fields that, in combination with parallel receive beamforming, may permit real-time volumetric imaging. An average −21.3dB side-lobe level (SLL) was measured on the transmit fields., while volume rates of 35 volumes per second can be achieved.