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壳封装气泡的声学建模

Acoustic modeling of shell-encapsulated gas bubbles.

作者信息

Frinking P J, de Jong N

机构信息

Department of Experimental Echocardiography, Erasmus University, Rotterdam, The Netherlands.

出版信息

Ultrasound Med Biol. 1998 May;24(4):523-33. doi: 10.1016/s0301-5629(98)00009-x.

Abstract

Existing theoretical models do not adequately describe the scatter and attenuation properties of the ultrasound contrast agents Quantison and Myomap. An adapted version of the Rayleigh-Plesset equation, in which the shell is described by a viscoelastic solid, is proposed and validated for these agents and Albunex. The acoustic transmission and scattering are measured in the frequency band from 1-10 MHz. The measured transmission is used to estimate two parameters, the effective bulk modulus, Keff, describing the elasticity, and the friction parameter, SF, describing the viscosity of the shell. For the scattering, the difference between measurements and calculations is < 3 dB. For Quantison, the effective bulk modulus is independent of the bubble diameter. For Albunex, it increases for decreasing bubble diameter. The nonlinear response of Quantison is minimal for acoustic pressures up to 200 kPa. For acoustic pressures above 200 kPa, the measured scattering abruptly increases. This increase reaches a level of 20 dB for an acoustic pressure of 1.8 MPa. This response cannot be predicted by the theoretical model developed in this article.

摘要

现有的理论模型无法充分描述超声造影剂Quantison和Myomap的散射和衰减特性。本文提出了一种改进版的瑞利-普莱斯方程,其中外壳由粘弹性固体描述,并针对这些造影剂和Albunex进行了验证。在1-10 MHz频段测量了声传输和散射。测量得到的传输用于估计两个参数,即描述弹性的有效体积模量Keff和描述外壳粘度的摩擦参数SF。对于散射,测量值与计算值之间的差异<3 dB。对于Quantison,有效体积模量与气泡直径无关。对于Albunex,它随着气泡直径的减小而增加。对于高达200 kPa的声压,Quantison的非线性响应最小。对于高于200 kPa的声压,测量得到的散射会突然增加。对于1.8 MPa的声压,这种增加达到20 dB的水平。本文所开发的理论模型无法预测这种响应。

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