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A discrete source model for simulating bowl-shaped focused ultrasound transducers on regular grids: Design and experimental validation

机译:用于在规则网格上模拟碗形聚焦超声换能器的离散源模型:设计和实验验证

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Accurately representing the behaviour of acoustic sources is an important part of ultrasound simulation. This is particularly challenging in ultrasound therapy where multi-element arrays are often used. Typically, sources are defined as a boundary condition over a 2D plane within the computational model. However, this approach is difficult to apply to arrays with multiple elements distributed over a non-planar surface. In this work, a grid-based discrete source model for single and multi-element bowl-shaped transducers is developed. The source model is defined as a symmetric, simply-connected surface with a single grid point thickness. Simulations using the source model with the open-source k-Wave toolbox are validated using the Rayleigh model and experimental measurements of a focused bowl transducer. The results show good agreement, even at very low grid resolutions. As the model only requires the geometry and drive signal, it allows modelling of multi-element transducers where measuring an input plane is not possible. This may be particularly useful for modelling hemispherical ultrasound arrays often used in transcranial applications.
机译:准确表示声源的行为是超声仿真的重要组成部分。这在经常使用多元素阵列的超声治疗中尤其具有挑战性。通常,源定义为计算模型内2D平面上的边界条件。然而,这种方法难以应用于具有分布在非平面表面上的多个元素的阵列。在这项工作中,为单个和多个元件碗形换能器开发了基于网格的离散源模型。源模型定义为具有单个栅格点厚度的对称,简单连接的表面。使用瑞利模型和聚焦碗形换能器的实验测量结果验证了使用带有开放源k-Wave工具箱的源模型进行的仿真。结果显示出很好的一致性,即使在非常低的网格分辨率下也是如此。由于该模型仅需要几何形状和驱动信号,因此可以在无法测量输入平面的情况下对多元素换能器进行建模。这对于建模通常在经颅应用中使用的半球形超声阵列可能特别有用。

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