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Article

On the Arrays Distribution, Scan Sequence and Apodization in Coherent Dual-Array Ultrasound Imaging Systems

by
Laura Peralta
1,*,
Daniele Mazierli
2,
Kirsten Christensen-Jeffries
3,
Alessandro Ramalli
2,
Piero Tortoli
2 and
Joseph V. Hajnal
3
1
Department of Surgical & Interventional Engineering, School of Biomedical Engineering & Imaging Sciences, King’s College London, London SE1 7EH, UK
2
Department of Information Engineering, University of Florence, 50139 Florence, Italy
3
Department of Biomedical Engineering, School of Biomedical Engineering & Imaging Sciences, King’s College London, London SE1 7EH, UK
*
Author to whom correspondence should be addressed.
Appl. Sci. 2023, 13(19), 10924; https://doi.org/10.3390/app131910924
Submission received: 22 August 2023 / Revised: 27 September 2023 / Accepted: 30 September 2023 / Published: 2 October 2023

Abstract

Coherent multi-transducer ultrasound (CoMTUS) imaging creates an extended effective aperture through the coherent combination of multiple arrays, which results in images with enhanced resolution, extended field-of-view, and higher sensitivity. However, this also creates a large discontinuous effective aperture that presents additional challenges for current beamforming methods. The discontinuities may increase the level of grating and side lobes and degrade contrast. Also, direct transmissions between multiple arrays, happening at certain transducer relative positions, produce undesirable cross-talk artifacts. Hence, the position of the transducers and the scan sequence play key roles in the beamforming algorithm and imaging performance of CoMTUS. This work investigates the role of the distribution of the individual arrays and the scan sequence in the imaging performance of a coherent dual-array system. First, the imaging performance for different configurations was assessed numerically using the point-spread-function, and then optimized settings were tested on a tissue mimicking phantom. Finally, a subset of the proposed optimum imaging schemes was experimentally validated on two synchronized ULA OP-256 systems equipped with identical linear arrays. Results show that CoMTUS imaging performance can be enhanced by optimizing the relative position of the arrays and the scan sequence together, and that the use of apodization can reduce cross-talk artifacts without degrading spatial resolution. Adding weighted compounding further decreases artifacts and helps to compensate for the differences in the brightness across the image. Setting the maximum steering angle according to the spatial configuration of the arrays reduces the sidelobe energy up to 10 dB plus an extra 4 dB reduction is possible when increasing the number of PWs compounded.
Keywords: beamforming; imaging; large-aperture; multi-transducers; plane waves; ultrasound beamforming; imaging; large-aperture; multi-transducers; plane waves; ultrasound

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MDPI and ACS Style

Peralta, L.; Mazierli, D.; Christensen-Jeffries, K.; Ramalli, A.; Tortoli, P.; Hajnal, J.V. On the Arrays Distribution, Scan Sequence and Apodization in Coherent Dual-Array Ultrasound Imaging Systems. Appl. Sci. 2023, 13, 10924. https://doi.org/10.3390/app131910924

AMA Style

Peralta L, Mazierli D, Christensen-Jeffries K, Ramalli A, Tortoli P, Hajnal JV. On the Arrays Distribution, Scan Sequence and Apodization in Coherent Dual-Array Ultrasound Imaging Systems. Applied Sciences. 2023; 13(19):10924. https://doi.org/10.3390/app131910924

Chicago/Turabian Style

Peralta, Laura, Daniele Mazierli, Kirsten Christensen-Jeffries, Alessandro Ramalli, Piero Tortoli, and Joseph V. Hajnal. 2023. "On the Arrays Distribution, Scan Sequence and Apodization in Coherent Dual-Array Ultrasound Imaging Systems" Applied Sciences 13, no. 19: 10924. https://doi.org/10.3390/app131910924

APA Style

Peralta, L., Mazierli, D., Christensen-Jeffries, K., Ramalli, A., Tortoli, P., & Hajnal, J. V. (2023). On the Arrays Distribution, Scan Sequence and Apodization in Coherent Dual-Array Ultrasound Imaging Systems. Applied Sciences, 13(19), 10924. https://doi.org/10.3390/app131910924

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