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A fast boundary element method for the scattering analysis of high-intensity focused ultrasound

机译:高强度聚焦超声散射分析的快速边界元方法

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摘要

High-intensity focused ultrasound (HIFU) techniques are promising modalities for the non-invasive treatment of cancer. For HIFU therapies of, e.g., liver cancer, one of the main challenges is the accurate focusing of the acoustic field inside a ribcage. Computational methods can play an important role in the patient-specific planning of these transcostal HIFU treatments. This requires the accurate modeling of acoustic scattering at ribcages. The use of a boundary element method (BEM) is an effective approach for this purpose because only the boundaries of the ribs have to be discretized instead of the standard approach to model the entire volume around the ribcage. This paper combines fast algorithms that improve the efficiency of BEM specifically for the high-frequency range necessary for transcostal HIFU applications. That is, a Galerkin discretized Burton-Miller formulation is used in combination with preconditioning and matrix compression techniques. In particular, quick convergence is achieved with the operator preconditioner that has been designed with on-surface radiation conditions for the high-frequency approximation of the Neumann-to-Dirichlet map. Realistic computations of acoustic scattering at 1MHz on a human ribcage model demonstrate the effectiveness of this dedicated BEM algorithm for HIFU scattering analysis. (C) 2015 Acoustical Society of America.
机译:高强度聚焦超声(HIFU)技术是无创治疗癌症的有前途的方式。对于例如肝癌的HIFU疗法,主要挑战之一是在胸腔内精确聚焦声场。在这些跨肋HIFU治疗的患者特定计划中,计算方法可以发挥重要作用。这就需要精确建模肋骨处的声散射。为此,使用边界元方法(BEM)是一种有效的方法,因为仅肋骨的边界必须离散化,而不是建模围绕肋骨的整个体积的标准方法。本文结合了可提高BEM效率的快速算法,特别是针对跨肋HIFU应用所需的高频范围。也就是说,将Galerkin离散化的Burton-Miller配方与预处理和基质压缩技术结合使用。尤其是,操作员预处理器实现了快速收敛,该预处理器已针对地面辐射条件进行了设计,以进行Neumann到Dirichlet图的高频近似。在人体胸腔模型上1MHz处的声散射的实际计算证明了这种专用BEM算法对HIFU散射分析的有效性。 (C)2015年美国声学学会。

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