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Nonlinear dynamics of lipid-shelled ultrasound microbubble contrast agents

机译:脂壳超声微胶质造影剂的非线性动力学

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Encapsulated gas microbubbles, known as contrast agents, are widely used in ultrasound medical applications. The present study is devoted to modelling of the spatio-temporal dynamics of lipid-shelled contrast agents. A theoretical model is proposed that describes the radial and translational motion of a lipid-shelled microbubble in an ultrasound field. The model approximates the behaviour of the lipid shell by the linear 3-constant Oldroyd constitutive equation, incorporates the translational motion of the bubble, and accounts for acoustic radiation losses due to the compressibility of the surrounding liquid. The values of the shell parameters appearing in the model are evaluated by fitting simulated radius-time curves to experimental ones. The results are then used for the simulation of the translational motion of contrast agent bubbles of various radii and the evaluation of the relationship between equilibrium radii of lipid-shelled agents and their resonance frequencies in the regime of nonlinear oscillation.
机译:封装的气体微泡,称为造影剂,广泛用于超声医疗应用。本研究致力于建模脂壳造影剂的时空动态。提出了一种理论模型,其描述了超声波场中的脂壳微泡的径向和平移运动。该模型近似于线性的3常态旧型方程方程的脂质壳的行为,包括气泡的平移运动,并且由于周围液体的可压缩性而占声辐射损失的描述。通过拟合模拟的半径时间曲线对实验结果来评估模型中出现的shell参数的值。然后将结果用于模拟各种半径的造影剂泡沫的平移运动及其在非线性振荡方案中的脂壳试剂的平衡半径与其谐振频率之间的关系。

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