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Membrane disruption by optically controlled microbubble cavitation
Paul Prentice
,
Alfred Cuschieri
, Kishan Dholakia
, Mark Prausnitz
,
Paul Campbell
Research output
:
Contribution to journal
›
Article
›
peer-review
536
Citations (Scopus)
Overview
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Keyphrases
Membrane Disruption
100%
Cavitation
100%
Microbubble Cavitation
100%
Microbubbles
100%
Insonation
100%
Sonoporation
100%
Optically Controlled
100%
Individual Cells
50%
Cavitation Bubble
50%
Between-person
50%
Membrane Permeabilization
50%
Liquid Jet
50%
Rigid Surface
50%
Energy Density
50%
Pressure Control
50%
Low Intensity
50%
High-pressure Regime
50%
Local Surface
50%
Nonlinear Response
50%
Cavitating
50%
Fluid Pressure
50%
Synergistic Interaction
50%
Micrometer Scale
50%
Tissue Damage
50%
Echo Generation
50%
Core Energy
50%
Fast-moving
50%
Diagnostic Ultrasound Imaging
50%
Encapsulated Microbubbles
50%
Observational Evidence
50%
Scale Interaction
50%
Ultrasonic Irradiation
50%
Molecular Uptake
50%
Engineering
Disruptions
100%
Individual Cell
100%
Ultrasonics
100%
Fluid Pressure
100%
Energetics
100%
Underpinnings
100%
Nonlinear Response
100%
Liquid Jet
100%
Bubble Cavitation
100%
Rigid Surface
100%
Flux Density
100%
Physics
Energetics
100%
Flux Density
100%
Ultrasonics
100%
Blood Plasma
100%
Biochemistry, Genetics and Molecular Biology
Membrane Damage
100%
Microbubble
100%
Sonoporation
50%
Energy Transfer
25%
Blood Plasma
25%
Material Science
Surface (Surface Science)
100%
Energy Density
50%