Temperature-dependent differences in the nonlinear acoustic behavior of ultrasound contrast agents revealed by high-speed imaging and bulk acoustics

Mulvana, H. , Stride, E., Tang, M., Hajnal, J.V. and Eckersley, R. (2011) Temperature-dependent differences in the nonlinear acoustic behavior of ultrasound contrast agents revealed by high-speed imaging and bulk acoustics. Ultrasound in Medicine and Biology, 37(9), pp. 1509-1517. (doi: 10.1016/j.ultrasmedbio.2011.05.020)

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Abstract

Previous work by the authors has established that increasing the temperature of the suspending liquid from 20°C to body temperature has a significant impact on the bulk acoustic properties and stability of an ultrasound contrast agent suspension (SonoVue, Bracco Suisse SA, Manno, Lugano, Switzerland). In this paper the influence of temperature on the nonlinear behavior of microbubbles is investigated, because this is one of the most important parameters in the context of diagnostic imaging. High-speed imaging showed that raising the temperature significantly influences the dynamic behavior of individual microbubbles. At body temperature, microbubbles exhibit greater radial excursion and oscillate less spherically, with a greater incidence of jetting and gas expulsion, and therefore collapse, than they do at room temperature. Bulk acoustics revealed an associated increase in the harmonic content of the scattered signals. These findings emphasize the importance of conducting laboratory studies at body temperature if the results are to be interpreted for in vivo applications.

Item Type:Articles
Status:Published
Refereed:Yes
Glasgow Author(s) Enlighten ID:Mulvana, Dr Helen
Authors: Mulvana, H., Stride, E., Tang, M., Hajnal, J.V., and Eckersley, R.
College/School:College of Science and Engineering > School of Engineering > Systems Power and Energy
Journal Name:Ultrasound in Medicine and Biology
Publisher:Elsevier
ISSN:0301-5629
ISSN (Online):1879-291X

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