Ultrasonic cavitation near a tissue layer

Author:

Curtiss G. A.,Leppinen D. M.,Wang Q. X.,Blake J. R.

Abstract

AbstractIn this paper we examine the dynamics of an initially stable bubble due to ultrasonic forcing by an acoustic wave. A tissue layer is modelled as a density interface acted upon by surface tension to mimic membrane effects. The effect of a rigid backing to the thin tissue layer is investigated. We are interested in ultrasound contrast agent type bubbles which have immediate biomedical applications such as the delivery of drugs and the instigation of sonoporation. We use the axisymmetric boundary integral technique detailed in Curtiss et al. (J. Comput. Phys., 2013, submitted) to model the interaction between a single bubble and the tissue layer. We have identified a new peeling mechanism whereby the re-expansion of a toroidal bubble can peel away tissue from a rigid backing. We explore the problem over a large range of parameters including tissue layer depth, interfacial tension and ultrasonic forcing.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference25 articles.

1. Experimental and numerical study of transient bubble-elastic membrane interaction

2. Leppinen D. M. , Curtiss G. A. , Wang Q. X. & Blake J. R. 2011 Bubble behaviour near a two fluid interface. In WIMRC 3rd International Cavition Forum, University of Warwick.

3. Drug delivery in polymeric micelles: from in vitro to in vivo

4. Dynamics of laser-induced cavitation bubbles near an elastic boundary

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