Real-time monitoring of focused ultrasound blood-brain barrier opening via subharmonic acoustic emission detection: implementation of confocal dual-frequency …

CH Tsai, JW Zhang, YY Liao… - Physics in Medicine & …, 2016 - iopscience.iop.org
CH Tsai, JW Zhang, YY Liao, HL Liu
Physics in Medicine & Biology, 2016iopscience.iop.org
Burst-tone focused ultrasound exposure in the presence of microbubbles has been
demonstrated to be effective at inducing temporal and local opening of the blood-brain
barrier (BBB), which promises significant clinical potential to deliver therapeutic molecules
into the central nervous system (CNS). Traditional contrast-enhanced imaging confirmation
after focused ultrasound (FUS) exposure serves as a post-operative indicator of the
effectiveness of FUS-BBB opening, however, an indicator that can concurrently report the …
Abstract
Burst-tone focused ultrasound exposure in the presence of microbubbles has been demonstrated to be effective at inducing temporal and local opening of the blood-brain barrier (BBB), which promises significant clinical potential to deliver therapeutic molecules into the central nervous system (CNS). Traditional contrast-enhanced imaging confirmation after focused ultrasound (FUS) exposure serves as a post-operative indicator of the effectiveness of FUS-BBB opening, however, an indicator that can concurrently report the BBB status and BBB-opening effectiveness is required to provide effective feedback to implement this treatment clinically. In this study, we demonstrate the use of subharmonic acoustic emission detection with implementation on a confocal dual-frequency piezoelectric ceramic structure to perform real-time monitoring of FUS-BBB opening.
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