首页> 外文会议>International Symposium on Therapeutic Ultrasound (2002- ) >Bandwidth Limitations in Characterization of High Intensity Focused Ultrasound Fields in the Presence of Shocks
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Bandwidth Limitations in Characterization of High Intensity Focused Ultrasound Fields in the Presence of Shocks

机译:震动存在下高强度聚焦超声场表征的带宽限制

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Nonlinear propagation effects result in the formation of weak shocks in high intensity focused ultrasound (HIFU) fields. When shocks are present, the wave spectrum consists of hundreds of harmonics. In practice, shock waves are modeled using a finite number of harmonics and measured with hydrophones that have limited bandwidths. The goal of this work was to determine how many harmonics are necessary to model or measure peak pressures, intensity, and heat deposition rates of the HIFU fields. Numerical solutions of the Khokhlov-Zabolotskaya-Kuznetzov-type (KZK) nonlinear parabolic equation were obtained using two independent algorithms, compared, and analyzed for nonlinear propagation in water, in gel phantom, and in tissue. Measurements were performed in the focus of the HIFU field in the same media using fiber optic probe hydrophones of various bandwidths. Experimental data were compared to the simulation results.
机译:非线性传播效应导致在高强度聚焦超声(HIFU)场中的弱冲击形成。当存在冲击时,波谱由数百个谐波组成。在实践中,使用有限数量的谐波进行冲击波,并用具有有限带宽的水听筒测量。这项工作的目标是确定模拟或测量HIFU字段的峰值压力,强度和热沉积速率所必需的谐波。使用两个独立的算法,比较,在水中的非线性繁殖,在凝胶幻像和组织中分析了khokhlov-zabolotskaya-kuznetzov型(Kzk)非线性抛物面方程的数值溶液。使用各种带宽的光纤探针流水声,在同一介质中的HIFU场的焦点中进行测量。将实验数据与模拟结果进行比较。

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