2020
DOI: 10.1121/10.0002096
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Evaluation of capacitive micromachined ultrasonic transducers for passive monitoring of microbubble-assisted ultrasound therapies

Abstract: Passive cavitation detection can be performed to monitor microbubble activity during brain therapy. Microbubbles under ultrasound exposure generate a response characterized by multiple nonlinear emissions. Here, the wide bandwidth of capacitive micromachined ultrasonic transducers (CMUTs) was exploited to monitor the microbubble signature through a rat skull and a macaque skull. The intrinsic nonlinearity of the CMUTs was characterized in receive mode. Indeed, undesirable nonlinear components generated by the … Show more

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Cited by 5 publications
(1 citation statement)
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“…To close this section, it is interesting to discuss other possible exploitation of the lumped-element representation which, even if evident, provides a clear insight into the parameters that are relevant to the desired application. In addition to the common pulse-echo imaging applications, therapeutic applications [62] and passive acoustic imaging [63], [64] could be adressed specifically. For therapeutic purposes, the output quantity is the mean radiated acoustic power only.…”
Section: Definition Of the Reciprocal Input/output Relationshipsmentioning
confidence: 99%
“…To close this section, it is interesting to discuss other possible exploitation of the lumped-element representation which, even if evident, provides a clear insight into the parameters that are relevant to the desired application. In addition to the common pulse-echo imaging applications, therapeutic applications [62] and passive acoustic imaging [63], [64] could be adressed specifically. For therapeutic purposes, the output quantity is the mean radiated acoustic power only.…”
Section: Definition Of the Reciprocal Input/output Relationshipsmentioning
confidence: 99%