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Stabilized bubbles in the body: pressure-radius relationships and the limits to stabilization
Authors:Van Liew  Hugh D; Raychaudhuri  Soumya
Abstract:Van Liew, Hugh D., and Soumya Raychaudhuri. Stabilizedbubbles in the body: pressure-radius relationships and the limits tostabilization. J. Appl. Physiol.82(6): 2045-2053, 1997.---We previously outlined the fundamentalprinciples that govern behavior of stabilized bubbles, such as themicrobubbles being put forward as ultrasound contrast agents. Ourpresent goals are to develop the idea that there are limits to thestabilization and to provide a conceptual framework for comparison ofbubbles stabilized by different mechanisms. Gases diffuse in or out ofstabilized bubbles in a limited and reversible manner in response tochanges in the environment, but strong growth influences will cause thebubbles to cross a threshold into uncontrolled growth. Also, bubblesstabilized by mechanical structures will be destroyed if outsideinfluences bring them below a critical small size. The in vivo behaviorof different kinds of stabilized bubbles can be compared by using plotsof bubble radius as a function of forces that affect diffusion of gasesin or out of the bubble. The two ends of the plot are the limits forunstabilized growth and destruction; these and the curve's slopepredict the bubble's practical usefulness for ultrasonic imaging orO2 carriage to tissues.

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