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Increasing the nonlinear character of microbubble oscillations at low acoustic pressures

机译:在低声压下增加微气泡振荡的非线性特性

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摘要

The nonlinear response of gas bubbles to acoustic excitation is an important phenomenon in both the biomedical and engineering sciences. In medical ultrasound imaging, for example, microbubbles are used as contrast agents on account of their ability to scatter ultrasound nonlinearly. Increasing the degree of nonlinearity, however, normally requires an increase in the amplitude of excitation, which may also result in violent behaviour such as inertial cavitation and bubble fragmentation. These effects may be highly undesirable, particularly in biomedical applications, and the aim of this work was to investigate alternative means of enhancing nonlinear behaviour. In this preliminary report, it is shown through theoretical simulation and experimental verification that depositing nanoparticles on the surface of a bubble increases the nonlinear character of its response significantly at low excitation amplitudes. This is due to the fact that close packing of the nanoparticles restricts bubble compression.
机译:气泡对声激发的非线性响应在生物医学和工程科学中都是重要的现象。例如,在医学超声成像中,由于微气泡非线性散射超声的能力,它们被用作造影剂。但是,增加非线性程度通常需要增加激励幅度,这也可能导致剧烈的行为,例如惯性空化和气泡破碎。这些影响可能是非常不希望的,尤其是在生物医学应用中,这项工作的目的是研究增强非线性行为的替代方法。在这份初步报告中,通过理论模拟和实验验证表明,在气泡表面上沉积纳米颗粒会在低激发幅度下显着增加其响应的非线性特性。这是由于以下事实:纳米颗粒的紧密堆积限制了气泡压缩。

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