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Experimental Validation of Computational Models for Large-Scale Nonlinear Ultrasound Simulations in Heterogeneous, Absorbing Fluid Media

机译:异构,吸收流体介质中大型非线性超声模拟计算模型的实验验证

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To increase the effectiveness of high intensity focused ultrasound (HIFU) treatments, prediction of ultrasound propagation in biological tissues is essential, particularly where bones are present in the field. This requires complex full-wave computational models which account for nonlinearity, absorption, and heterogeneity. These models must be properly validated but there is a lack of analytical solutions which apply in these conditions. Experimental validation of the models is therefore essential. However, accurate measurement of HIFU fields is not trivial. Our aim is to establish rigorous methods for obtaining reference data sets with which to validate tissue realistic simulations of ultrasound propagation. Here, we present preliminary measurements which form an initial validation of simulations performed using the k-Wave MATLAB toolbox. Acoustic pressure was measured on a plane in the field of a focused ultrasound transducer in free field conditions to be used as a Dirichlet boundary condition for simulations. Rectangular and wedge shaped olive oil scatterers were placed in the field and further pressure measurements were made in the far field for comparison with simulations. Good qualitative agreement was observed between the measured and simulated nonlinear pressure fields.
机译:为了提高高强度聚焦超声(HIFU)处理的有效性,生物组织中超声波繁殖的预测是必不可少的,特别是在骨骼中存在骨骼的情况下。这需要复杂的全波计算模型,其考虑非线性,吸收和异质性。必须正确验证这些模型,但缺乏在这些条件下适用的分析解决方案。因此,模型的实验验证是必不可少的。但是,准确测量HIFU字段并不差。我们的目标是建立用于获得参考数据集的严格方法,以验证超声传播的组织逼真模拟。这里,我们提出了初步测量,其形成了使用K-Wave Matlab工具箱执行的模拟的初始验证。在聚焦超声换能器的场上的平面上测量声压,其自由场条件以用作模拟的Dirichlet边界条件。将矩形和楔形橄榄油散射体置于现场,在远场中进行了进一步的压力测量,以便与模拟进行比较。在测量和模拟的非线性压力场之间观察到良好的定性协议。

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