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Full-wave modeling of therapeutic ultrasound: Nonlinear ultrasound propagation in ideal fluids

机译:治疗超声的全波建模:理想流体中的非线性超声传播

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摘要

The number of applications of high-intense, focused ultrasound for therapeutic purposes is growing. Besides established applications like lithotripsy, new applications like ultrasound in orthopedics or for the treatment of tumors arise. Therefore, new devices have to be developed which provide pressure waveforms and distributions in the focal zone specifically for the application. In this paper, a nonlinear full-wave simulation model is presented which predicts the therapeutically important characteristics of the generated ultrasound field for a given transducer and initial pressure signal. A nonlinear acoustic approximation in conservation form of the original hydrodynamic equations for ideal fluids rather than a wave equation provides the base for the nonlinear model. The equations are implemented with an explicit high-order finite-difference time-domain algorithm. The necessary coefficients are derived according to the dispersion relation preserving method. Simulation results are presented for two different therapeutic transducers: a self-focusing piezoelectric and one with reflector focusing. The computational results are validated by comparison with analytical solutions and measurements. An agreement of about 10% is observed between the simulation and experimental results.
机译:用于治疗目的的高强度聚焦超声的应用数量正在增长。除了诸如碎石术之类的既定应用之外,还出现了诸如超声在骨科或肿瘤治疗中的新应用。因此,必须开发新的设备,该设备专门为应用提供聚焦区域中的压力波形和分布。在本文中,提出了一个非线性全波仿真模型,该模型可以预测给定换能器和初始压力信号所产生的超声场的治疗重要特性。理想流体的原始流体力学方程(而不是波动方程)的守恒形式的非线性声学近似为非线性模型提供了基础。用显式高阶有限差分时域算法实现方程。根据色散关系保持方法导出必要的系数。给出了两种不同治疗换能器的仿真结果:一个自聚焦压电式和一个具有反射器聚焦式的。通过与分析解决方案和测量结果进行比较,可以验证计算结果。在仿真和实验结果之间观察到大约10%的一致性。

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