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Characterization of a Multi-element Clinical HIFU System Using Acoustic Holography and Nonlinear Modeling

机译:使用声学全息和非线性建模表征多元素临床HIFU系统

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摘要

High-intensity focused ultrasound (HIFU) is a treatment modality that relies on the delivery of acoustic energy to remote tissue sites to induce thermal and/or mechanical tissue ablation. To ensure the safety and efficacy of this medical technology, standard approaches are needed for accurately characterizing the acoustic pressures generated by clinical ultrasound sources under operating conditions. Characterization of HIFU fields is complicated by nonlinear wave propagation and the complexity of phased-array transducers. Previous work has described aspects of an approach that combines measurements and modeling, and here we demonstrate this approach for a clinical phased array transducer. First, low-amplitude hydrophone measurements were performed in water over a scan plane between the array and the focus. Second, these measurements were used to holographically reconstruct the surface vibrations of the transducer and to set a boundary condition for a 3-D acoustic propagation model. Finally, nonlinear simulations of the acoustic field were carried out over a range of source power levels. Simulation results were compared to pressure waveforms measured directly by hydrophone at both low and high power levels, demonstrating that details of the acoustic field including shock formation are quantitatively predicted.
机译:高强度聚焦超声(HIFU)是一种治疗方式,它依赖于将声能传递到远端组织部位以引起热和/或机械组织消融。为了确保该医疗技术的安全性和有效性,需要标准方法来精确表征在操作条件下临床超声源产生的声压。 HIFU场的表征由于非线性波传播和相控阵换能器的复杂性而变得复杂。先前的工作已经描述了将测量与建模相结合的方法的各个方面,在这里,我们将为临床相控阵换能器演示这种方法。首先,在阵列和焦点之间的扫描面上,在水中进行低振幅水听器测量。其次,这些测量用于全息重建换能器的表面振动,并设置3-D声传播模型的边界条件。最后,在一定范围的源功率水平上进行了声场的非线性模拟。将模拟结果与通过水听器在低功率和高功率水平下直接测量的压力波形进行了比较,表明可以定量预测包括震动形成在内的声场细节。

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