2021
DOI: 10.1109/tbcas.2021.3077664
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Architecture for an Ultrasound Advanced Open Platform With an Arbitrary Number of Independent Channels

Abstract: Ultrasound open platforms are programmable and flexible tools for the development and test of novel methods. In most cases, they embed the electronics for the independent control of (maximum) 256 probe elements. However, a higher number of channels is needed for the control of 2-D array probes. This paper presents a system architecture that, through the hardware and software synchronization of multiple ULA-OP 256 scanners, may implement advanced open platforms with an arbitrary number of channels. The proposed… Show more

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Cited by 16 publications
(10 citation statements)
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References 49 publications
(48 reference statements)
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“…With the matrix array designed here and integrated with 1024 channels of pulsers, each element is driven independently, and the entire array can transmit and receive simultaneously to achieve diverging waves and cylindrical or spherical beams. The 1024-channel system is composed of four synchronized Vantage 256 systems (Verasonics, Kirkland, WA) assembled together 52 , each controlled by a graphics processing unit (GPU)-embedded computer. The direct integration of the 1024 elements with dedicated individual pulsers allows for the higher duty cycles that are required for most microbubble-based therapeutic protocols.…”
Section: Array Design and Characterizationmentioning
confidence: 99%
“…With the matrix array designed here and integrated with 1024 channels of pulsers, each element is driven independently, and the entire array can transmit and receive simultaneously to achieve diverging waves and cylindrical or spherical beams. The 1024-channel system is composed of four synchronized Vantage 256 systems (Verasonics, Kirkland, WA) assembled together 52 , each controlled by a graphics processing unit (GPU)-embedded computer. The direct integration of the 1024 elements with dedicated individual pulsers allows for the higher duty cycles that are required for most microbubble-based therapeutic protocols.…”
Section: Array Design and Characterizationmentioning
confidence: 99%
“…The master system itself also receives the two signals again as input to ensure phase equality with the other sub-systems in the sequence control. Other research groups, such as those around the platform ULA-OP, are also pursuing similar approaches [18]. While our method is based on synchronous distribution of clock and trigger signals with equal signal run lengths, ULA-OP's synchronization circuit relies on PLLs with a programmable phase shift and on a trigger delay compensation to realize zero delay of the timing signals between the master and slave systems.…”
Section: Synchronization Schemementioning
confidence: 99%
“…A first (software) selection was proposed in [63]. Here, four Vantage-256 research scanners (Verasonics, Inc., Kirkland, WA, USA), were synchronized [14] to drive the 1024-element, 3.5 MHz, Vermon matrix probe. The channels of the scanners were programed to activate at the same time only 256 elements, selected to reproduce the optimal array configuration described in [63] (the so-called opti256 array obtained through the SA algorithm, see Fig.…”
mentioning
confidence: 99%
“…The double spiral probe described in Section III-A2 was also recently used together with two synchronous ULA-OP 256 scanners in real-time HFR imaging experiments [14].…”
mentioning
confidence: 99%
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