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Acoustic particle palpation for measuring tissue elasticity.Superharmonic microbubble Doppler effect in ultrasound therapy.In vivo transcranial cavitation threshold detection during ultrasound-induced blood-brain barrier opening in miceMicrobubble-size dependence of focused ultrasound-induced blood-brain barrier opening in mice in vivo.Multi-modality safety assessment of blood-brain barrier opening using focused ultrasound and definity microbubbles: a short-term study.Activation of signaling pathways following localized delivery of systemically administered neurotrophic factors across the blood-brain barrier using focused ultrasound and microbubbles.Enhanced tumor uptake and penetration of virotherapy using polymer stealthing and focused ultrasoundNoninvasive and localized blood-brain barrier disruption using focused ultrasound can be achieved at short pulse lengths and low pulse repetition frequenciesNoninvasive and localized neuronal delivery using short ultrasonic pulses and microbubbles.Molecules of various pharmacologically-relevant sizes can cross the ultrasound-induced blood-brain barrier opening in vivo.Enhancement of non-invasive trans-membrane drug delivery using ultrasound and microbubbles during physiologically relevant flow.Spatiotemporal evolution of cavitation dynamics exhibited by flowing microbubbles during ultrasound exposure.Passive acoustic mapping utilizing optimal beamforming in ultrasound therapy monitoring.Non-invasive and real-time passive acoustic mapping of ultrasound-mediated drug delivery.Inertial cavitation to non-invasively trigger and monitor intratumoral release of drug from intravenously delivered liposomes.Clustering dynamics of microbubbles exposed to low-pressure 1-MHz ultrasound.Tri-Needle Coaxial Electrospray Engineering of Magnetic Polymer Yolk-Shell Particles Possessing Dual-Imaging Modality, Multiagent Compartments, and Trigger Release Potential.Noninvasive, transcranial and localized opening of the blood-brain barrier using focused ultrasound in mice.Rapid short-pulse sequences enhance the spatiotemporal uniformity of acoustically driven microbubble activity during flow conditions.Exploiting flow to control the in vitro spatiotemporal distribution of microbubble-seeded acoustic cavitation activity in ultrasound therapy.Spatio-temporal analysis of molecular delivery through the blood-brain barrier using focused ultrasound.Simultaneous Ultrasound Therapy and Monitoring of Microbubble-Seeded Acoustic Cavitation Using a Single-Element Transducer.Acoustic Streaming in a Soft Tissue MicroenvironmentDisplacement of a bubble by acoustic radiation force into a fluid-tissue interfaceTargeted Delivery of DNA-Au Nanoparticles across the Blood-Brain Barrier Using Focused UltrasoundThe effects of ultrasound parameters and microbubble concentration on acoustic particle palpation
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description
Wissenschaftler
@de
hulumtues
@sq
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
James J Choi
@nl
James J Choi
@sl
James Jeong Choi
@de
James Jeong Choi
@en
James Jeong Choi
@es
type
label
James J Choi
@nl
James J Choi
@sl
James Jeong Choi
@de
James Jeong Choi
@en
James Jeong Choi
@es
altLabel
James J. Choi
@de
James J. Choi
@en
prefLabel
James J Choi
@nl
James J Choi
@sl
James Jeong Choi
@de
James Jeong Choi
@en
James Jeong Choi
@es
P106
P1153
35236351200
P21
P31
P496
0000-0002-4850-8204