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超声造影剂微泡非线性响应的动力学分析。

Dynamical analysis of the nonlinear response of ultrasound contrast agent microbubbles.

机构信息

Department of Mechanical and Aerospace Engineering, University of Colorado, Colorado Springs, 1420 Austin Bluffs Parkway, Colorado Springs, Colorado 80918, USA.

出版信息

J Acoust Soc Am. 2013 May;133(5):2641-9. doi: 10.1121/1.4796128.

Abstract

The nonlinear response of spherical ultrasound contrast agent microbubbles is investigated to understand the effects of common shells on the dynamics. A compressible form of the Rayleigh-Plesset equation is combined with a thin-shell model developed by Lars Hoff to simulate the radial response of contrast agents subject to ultrasound. The responses of Albunex, Sonazoid, and polymer shells are analyzed through the application of techniques from dynamical systems theory such as Poincaré sections, phase portraits, and bifurcation diagrams to illustrate the qualitative dynamics and transition to chaos that occurs under certain changes in system parameters. Corresponding calculations of Lyapunov exponents provide quantitative data on the system dynamics. The results indicate that Albunex and polymer shells sufficiently stabilize the response to prevent transition to the chaotic regime throughout typical clinical ranges of ultrasound pressure and frequency. By contrast, Sonazoid shells delay the onset of chaos relative to an unshelled bubble but do not prevent it. A contour plot identifying regions of periodic and chaotic behavior over clinical ranges of ultrasound pressure and frequency is provided for Sonazoid. This work characterizes the nonlinear response of various ultrasound contrast agents, and shows that shell properties have a profound influence on the dynamics.

摘要

研究了球形超声造影微泡的非线性响应,以了解常见外壳对动力学的影响。瑞利-普莱塞方程的可压缩形式与 Lars Hoff 开发的薄壳模型相结合,模拟了超声作用下造影剂的径向响应。通过应用动力系统理论的技术,如庞加莱截面、相图和分岔图,分析了 Albunex、Sonazoid 和聚合物外壳的响应,以说明在系统参数发生某些变化时发生的定性动力学和混沌转变。对应的李雅普诺夫指数计算提供了系统动力学的定量数据。结果表明,Albunex 和聚合物外壳足以稳定响应,防止在典型的临床超声压力和频率范围内过渡到混沌状态。相比之下,Sonazoid 外壳相对于无壳气泡延迟了混沌的发生,但不能阻止它。为 Sonazoid 提供了一个在临床超声压力和频率范围内识别周期性和混沌行为区域的等高线图。这项工作描述了各种超声造影剂的非线性响应,并表明外壳特性对动力学有深远的影响。

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