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An iterative method for the computation of nonlinear, wide-angle, pulsed acoustic fields of medical diagnostic transducers

机译:计算医学诊断换能器非线性,广角脉冲声场的迭代方法

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摘要

The development and optimization of medical ultrasound transducers and imaging modalities requires a computational method that accurately predicts the nonlinear acoustic pressure field. A prospective method should provide the wide-angle, pulsed field emitted by an arbitrary planar source distribution and propagating in a three-dimensional, large scale domain holding a nonlinear acoustic medium. In this paper, a method is presented that is free of any assumed directionality. The nonlinear acoustic wave equation is solved by treating the nonlinear term as a contrast source. This formulation leads to an iterative scheme that involves the repetitive solution of a linear wave problem through a Green's function method. It is shown that accurate field predictions may be obtained within a few iterations. Moreover, by employing a dedicated numerical convolution technique, the method allows for a discretization down to two points per wavelength or period of the highest frequency of interest. The performance of the method is evaluated through a number of nonlinear field predictions for pulsed transducers with various geometries. The results demonstrate the directional independence of the method. Moreover, comparison with results from several existing methods shows that the method accurately predicts the nonlinear field for weak to moderate nonlinearity.
机译:医学超声换能器和成像模态的发展和优化需要一种能够准确预测非线性声压场的计算方法。一种预期的方法应提供由任意平面源分布发射并在包含非线性声介质的三维大规模域中传播的广角脉冲场。在本文中,提出了一种没有任何假定方向性的方法。通过将非线性项作为对比源来求解非线性声波方程。这种表述导致了一种迭代方案,该方案涉及通过格林函数方法的线性波问题的重复求解。示出了可以在几次迭代内获得准确的场预测。此外,通过采用专用的数值卷积技术,该方法允许离散化到感兴趣的最高频率的每个波长或周期的两个点。通过对具有各种几何形状的脉冲换能器的许多非线性场预测,可以评估该方法的性能。结果证明了该方法的方向独立性。此外,与几种现有方法的结果进行比较表明,该方法可准确预测弱到中等非线性的非线性场。

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