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The theoretical and experimental analysis of ultrasound contrast agent micro bubbles: The Sonovue

机译:超声造影剂微气泡的理论和实验分析:Sonovue

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Sonovue is a kind of ultrasound contrast agent (UCA) with a stable shell made by lipid, within which is SF6. Due to the specific acoustic characteristics, UCA has been widely used in ultrasound diagnosis and therapy. In some cases, the 2nd harmonic wave of the scattered signal should be strong enough to help form a high quality image. To better utilize the bubbles to get enough intensity of the 2nd harmonic wave of the scattered signal, numerical simulation and corresponding experiments based on the several models proposed before have been analyzed to study the behavior of the bubbles. In this paper, we use the ratio of the second harmonic wave and fundamental wave to evaluate the oscillation of the bubbles. Besides, we have compared different simulation models and designed corresponding platform of phantom study. Finally, we find that the second harmonic wave will get a remarkable growth when the driving pressure is under 150KPa in the simulation or under 200KPa in the experiment.
机译:Sonovue是一种超声造影剂(UCA),具有由脂质制成的稳定外壳,其中包含SF6。由于特定的声学特性,UCA已广泛用于超声诊断和治疗。在某些情况下,散射信号的二次谐波应足够强以帮助形成高质量的图像。为了更好地利用气泡以获得足够强度的散射信号的二次谐波,已经对基于先前提出的几种模型的数值模拟和相应的实验进行了分析,以研究气泡的行为。在本文中,我们使用二次谐波与基波的比值来评估气泡的振荡。此外,我们比较了不同的仿真模型,并设计了相应的体模研究平台。最后,我们发现,当驱动压力在模拟中低于150KPa或在实验中低于200KPa时,二次谐波将显着增长。

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