首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Simulation of non-linear acoustic field and thermal pattern of phased-array high-intensity focused ultrasound (HIFU)
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Simulation of non-linear acoustic field and thermal pattern of phased-array high-intensity focused ultrasound (HIFU)

机译:相控阵高强度聚焦超声(HIFU)的非线性声场和热模式的仿真

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Purpose: HIFU becomes an effective and non-invasive modality of solid tumour/cancer ablation. Simulation of the non-linear acoustic wave propagation using a phased-array transducer in multiple layered media using different focusing strategies and the consequent lesion formation are essential in HIFU planning in order to enhance the efficacy and efficiency of treatment.Materials and methods: An angular spectrum approach with marching fractional steps was applied in the wave propagation from phased-array HIFU transducer, and diffraction, attenuation, and non-linearity effects were accounted for by a second-order operator splitting scheme. The simulated distributions of the first three harmonics along and transverse to the transducer axis were compared to the hydrophone measurements. The bioheat equation was used to simulate the subsequent temperature elevation using the deposited acoustic energy, and lesion formation was determined by the thermal dose.Results: Better agreement was found between the measured harmonics distribution and simulation using the proposed algorithm than the Khokhlov-Zabozotskaya-Kuznetsov equation. Variable focusing of the phased-array transducer (geometric focusing, transverse shifting and the generation of multiple foci) can be simulated successfully. The shifting and splitting of focus was found to result in significantly less temperature elevation at the focus and the subsequently, the smaller lesion size, but the larger grating lobe grating lobe in the pre-focal region.Conclusions: The proposed algorithm could simulate the non-linear wave propagation from the source with arbitrary shape and distribution of excitation through multiple tissue layers in high computation accuracy. The performance of phased-array HIFU can be optimised in the treatment planning.
机译:目的:HIFU成为一种有效的非侵入性实体瘤/癌消融术。使用相控阵换能器在多层介质中使用不同的聚焦策略模拟非线性声波的传播以及随之而来的病变形成对于HIFU规划至关重要,以提高治疗的效率和效率。相控阵HIFU换能器的波传播中采用了具有分步步进的频谱方法,并且通过二阶算子分裂方案考虑了衍射,衰减和非线性效应。将前三个谐波沿换能器轴并垂直于换能器轴的模拟分布与水听器测量结果进行了比较。利用生物热方程,利用沉积的声能模拟随后的温度升高,并通过热剂量确定病变的形成。结果:与Khokhlov-Zabozotskaya-库兹涅佐夫方程。可以成功地模拟相控阵换能器的可变聚焦(几何聚焦,横向位移和多个焦点的生成)。发现焦点的移动和分裂导致焦点处的温度升高明显降低,并且随后的病变尺寸较小,但在焦点前区域中的栅瓣栅瓣较大。线性波从源以任意形状传播,并通过多个组织层以高计算精度分布激励。可以在治疗计划中优化相控阵HIFU的性能。

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