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Acoustic Radiation Force of a Quasi-Gaussian Beam on an Elastic Sphere in a Fluid

机译:流体中弹性球上的准高斯光束的声辐射力

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摘要

Acoustic radiation force has many applications. One of the related technologies is the ability to noninvasively expel stones from the kidney. To optimize the procedure it is important to develop theoretical approaches that can provide rapid calculations of the radiation force depending in stone size and elastic properties, together with ultrasound beam diameter, intensity, and frequency. We hypothesize that the radiation force nonmonotonically depends on the ratio between the acoustic beam width and stone diameter because of coupling between the acoustic wave in the fluid and shear waves in the stone. Testing this hypothesis by considering a spherical stone and a quasi-Gaussian beam was performed in the current work. The calculation of the radiation force was conducted for elastic spheres of two types. Dependence of the magnitude of the radiation force on the beam diameter at various fixed values of stone diameters was modeled. In addition to using real material properties, speed of shear wave in the stone was varied to reveal the importance of shear waves in the stone. It was found that the radiation force reaches its maximum at the beamwidth comparable to the stone diameter; the gain in the force magnitude can reach 40% in comparison with the case of a narrow beam.
机译:声辐射力有许多应用。相关技术之一是非侵入性地从肾脏排出石头的能力。为了优化程序,重要的是要开发出理论方法,这些方法可以根据石材的大小和弹性以及超声波束的直径,强度和频率提供对辐射力的快速计算。我们假设辐射力非单调地取决于声束宽度与石头直径之间的比率,因为流体中的声波与石头中的剪切波之间存在耦合。在当前工作中,通过考虑球形石头和准高斯光束来检验该假设。对于两种类型的弹性球体进行辐射力的计算。在不同的石材直径固定值下,辐射力的大小取决于光束直径。除了使用真实的材料特性外,还改变了石头中的剪切波速度,以揭示石头中的剪切波的重要性。发现辐射力在与石直径相当的束宽处达到最大。与窄梁相比,力的增益可以达到40%。

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