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Shock-wave-induced jetting of micron-size bubbles
1Department of Applied Physics, Physics of Fluids, TU Twente, Postbus 217, 7500 AE Enschede, The Netherlands.
Physical Review Letters
|June 6, 2003
Abstract:
Free gas bubbles in water with radii between 7 and 55 microm subjected to a shock wave exhibit a liquid jetting phenomenon with the jet pointing in the direction of the propagating shock wave. With increasing bubble radius, the length of the jet tip increases and a lower estimate of the averaged jet velocity increases linearly from 20 to 150 m/s. At a later stage, the jet breaks up and releases micron-size bubbles. In the course of shock wave permeabilization and transfection of biological cells, this observation suggests a microinjection mechanism when the cells are near bubbles exposed to a shock wave.