Nonlinear effect in fat tissue for high-intensity focused ultrasound

Shou-bei Wang, Ke Li, Bo-fan Zhou, Xiang Ji
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Abstract

Nonlinearity plays a significant role in high-intensity focused ultrasound (HIFU) treatment since the generation of higher harmonic frequency components enhances absorption and thus heating effects. High-B/A fat layer commonly appears in the propagation path so that HIFU fields could be affected by nonlinearity and attention needs to be paid to the changes since caused for nonlinearity may not be easily perceived by usual linear viewpoint. To gain a more accurate knowledge in the interaction of ultrasound through multi-layered tissue and better control therapeutic outcome, a HIFU simulator software package is used to numerically simulate the axisymmetric ultrasound propagation through water-fat layered medium. Results show that nonlinearity plays a major part in increasing peak acoustic intensity (/peak) and decreasing focus deviation (Δzfocus) for HIFU propagation in fat. Furthermore, sharper focused transducer with higher acoustic power could enhance nonlinear effect.
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高强度聚焦超声在脂肪组织中的非线性效应
非线性在高强度聚焦超声(HIFU)治疗中起着重要作用,因为高谐波频率成分的产生增强了吸收,从而增强了加热效应。高b /A脂肪层通常出现在传播路径中,因此HIFU场会受到非线性的影响,需要注意非线性引起的变化,通常的线性视点可能不易察觉。为了更准确地了解超声在多层组织中的相互作用,更好地控制治疗结果,利用HIFU模拟器软件包对超声在水-脂肪层状介质中的轴对称传播进行数值模拟。结果表明,脂肪中HIFU传播的峰值声强(/peak)增加,聚焦偏差(Δzfocus)减小,非线性起主要作用。此外,更锐利的聚焦换能器和更高的声功率可以增强非线性效应。
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