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Focused beam control for ultrasound surgery with spherical-section phased array: sound field calculation and genetic optimization algorithm

机译:球形截面相控阵用于超声外科的聚焦束控制:声场计算和遗传优化算法

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摘要

This study aims at a sound field calculation for the spherical-section phased array and an optimization algorithm for the focus patterns of phased array ultrasound surgery. An efficient field calculation formula represented as an explicit expression is derived by the strategies of projection and binomial expansion. An optimization algorithm based on genetic algorithm is constructed by the suitable fitness function and the selection strategies. The simulation results of 256-element spherical-section phased array show the capability of controlling focus accurately and effectively with the combined method made up of the explicit expression method and the genetic optimization algorithm. The simulation results of single focus, multiple foci, on-axial focus, and off-axial focus further convince the feasibility of three-dimensional (3-D) focus steering with excellent acoustic performances. A single focus with the focus dimension of 1.25 mm /spl times/ 1.25 mm /spl times/ 7 mm and with the intensity of 6080 W/cm/sup 2/ is formed. The multiple-focus pattern can enlarge the treatment volume 22 times larger than that of single focus with a sonication. In addition, a comparison between the explicit expression approach and the point source approach testifies to the applicability of the explicit expression approach. The experiment and simulation results of 16-element array actually confirm the feasibility of the combined method.
机译:这项研究的目的是针对球形截面相控阵的声场计算和相控阵超声手术聚焦模式的优化算法。通过投影和二项式展开策略,导出了一个有效的以显式表示的场计算公式。通过合适的适应度函数和选择策略,构造了基于遗传算法的优化算法。 256元素球面相控阵的仿真结果表明,由显式表示法和遗传优化算法相结合的方法可以准确有效地控制焦点。单焦点,多焦点,轴向焦点和离轴焦点的仿真结果进一步证明了具有出色声学性能的三维(3-D)焦点转向的可行性。形成聚焦尺寸为1.25mm / spl倍/1.25mm/spl倍/ 7mm且强度为6080W / cm / sup 2 /的单焦点。通过超声处理,多焦点模式可以将治疗体积扩大到单焦点模式的22倍。另外,显式表达方法和点源方法之间的比较证明了显式表达方法的适用性。 16单元阵列的实验和仿真结果实际证明了该组合方法的可行性。

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