Analysis and synthesis of multiple-focus phased array heating patterns through the rib cage: a simulation model

Y. Botros, J. Volakis, E. Ebbini
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引用次数: 4

Abstract

A computationally efficient hybrid ray-physical optics model is presented for the analysis and synthesis of multiple-focus ultrasound heating patterns through the human rib cage. In particular, a ray method is used to propagate the ultrasound fields from the source to the frontal plane of the rib cage. The physical optics integration method is then employed to obtain the field intensity pattern inside the rib cage. The solution of the matrix system is carried out by using the pseudo inverse technique to synthesize the desired heating pattern. This simulation model allows for the design and optimization of large-aperture phased array applicator systems for noninvasive ablative thermal surgery in the heart and the liver through the rib cage. This technology is applied for ablating cancerous malignant tissue in the liver and the treatment of life threatening cardiac arrhythmias.
通过胸腔的多焦点相控阵加热模式的分析与合成:一个仿真模型
提出了一种计算效率高的混合射线-物理光学模型,用于分析和合成通过人体胸腔的多聚焦超声加热图像。特别地,采用射线法将超声场从声源传播到胸腔正面。然后采用物理光学积分法获得胸腔内的场强图。利用伪逆技术对矩阵系统进行求解,合成了期望的加热模式。该仿真模型允许设计和优化大孔径相控阵应用系统,用于通过胸腔进行心脏和肝脏的无创烧蚀热手术。这项技术被应用于肝脏癌变恶性组织的消融和危及生命的心律失常的治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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