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- Q16001641 subject Q7216237.
- Q16001641 abstract "Acoustic droplet vaporization (ADV) is the process by which superheated liquid droplets are phase-transitioned into gas bubbles by means of ultrasound. Perfluorocarbons and halocarbons are often used for the dispersed medium, which forms the core of the droplet. The surfactant, which forms a stabilizing shells around the dispersive medium, is usually composed of albumin or lipids.There exist two main hypothesis that explain the mechanism by which ultrasound induces vaporization. One poses that the ultrasonic field interacts with the dispersed medium so as to cause vaporization in the bubble core. The other suggests that shockwaves from inertial cavitation, occurring near or within the droplet, cause the dispersed medium to vaporize.".
- Q16001641 wikiPageWikiLink Q11367.
- Q16001641 wikiPageWikiLink Q12101201.
- Q16001641 wikiPageWikiLink Q14333920.
- Q16001641 wikiPageWikiLink Q162564.
- Q16001641 wikiPageWikiLink Q169219.
- Q16001641 wikiPageWikiLink Q185357.
- Q16001641 wikiPageWikiLink Q185789.
- Q16001641 wikiPageWikiLink Q191154.
- Q16001641 wikiPageWikiLink Q201666.
- Q16001641 wikiPageWikiLink Q425094.
- Q16001641 wikiPageWikiLink Q4674679.
- Q16001641 wikiPageWikiLink Q644139.
- Q16001641 wikiPageWikiLink Q6452502.
- Q16001641 wikiPageWikiLink Q7216237.
- Q16001641 wikiPageWikiLink Q75794.
- Q16001641 comment "Acoustic droplet vaporization (ADV) is the process by which superheated liquid droplets are phase-transitioned into gas bubbles by means of ultrasound. Perfluorocarbons and halocarbons are often used for the dispersed medium, which forms the core of the droplet. The surfactant, which forms a stabilizing shells around the dispersive medium, is usually composed of albumin or lipids.There exist two main hypothesis that explain the mechanism by which ultrasound induces vaporization.".
- Q16001641 label "Acoustic droplet vaporization".