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SonoKnife: Feasibility of a line-focused ultrasound device for thermal ablation therapy

机译:SonoKnife:行聚焦超声设备用于热消融治疗的可行性

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>Purpose: To evaluate the feasibility of line-focused ultrasound for thermal ablation of superficially located tumors.>Methods: A SonoKnife is a cylindrical-section ultrasound transducer designed to radiate from its concave surface. This geometry generates a line-focus or acoustic edge. The motivation for this approach was the noninvasive thermal ablation of advanced head and neck tumors and positive neck nodes in reasonable treatment times. Line-focusing may offer advantages over the common point-focusing of spherically curved radiators such as faster coverage of a target volume by scanning of the acoustic edge. In this paper, The authors report studies using numerical models and phantom and ex vivo experiments using a SonoKnife prototype.>Results: Acoustic edges were generated by cylindrical-section single-element ultrasound transducers numerically, and by the prototype experimentally. Numerically, simulations were performed to characterize the acoustic edge for basic design parameters: transducer dimensions, line-focus depth, frequency, and coupling thickness. The dimensions of the acoustic edge as a function of these parameters were determined. In addition, a step-scanning simulation produced a large thermal lesion in a reasonable treatment time. Experimentally, pressure distributions measured in degassed water agreed well with acoustic simulations, and sonication experiments in gel phantoms and ex vivo porcine liver samples produced lesions similar to those predicted with acoustic and thermal models.>Conclusions: Results support the feasibility of noninvasive thermal ablation with a SonoKnife.
机译:>目的::评估线聚焦超声对浅表性肿瘤进行热消融的可行性。>方法: SonoKnife是一种圆柱截面超声换能器,旨在从其凹面辐射表面。这种几何形状会产生线聚焦或声学边缘。这种方法的动机是在合理的治疗时间内对晚期头颈部肿瘤和阳性颈部结节进行无创热消融。线聚焦可以提供优于球形弯曲辐射器的公共点聚焦的优势,例如通过扫描声边缘更快地覆盖目标体积。在本文中,作者报告了使用数值模型进行的研究以及使用SonoKnife原型的体模和离体实验的研究。>结果:声学边缘由圆柱截面单元素超声换能器以数值方式生成,并由原型产生实验上。在数值上,进行了仿真以表征基本设计参数的声学边缘:换能器尺寸,线聚焦深度,频率和耦合厚度。确定了作为这些参数的函数的声学边缘的尺寸。此外,分步扫描模拟在合理的治疗时间内产生了较大的热损伤。实验上,在脱气水中测量的压力分布与声学模拟非常吻合,凝胶体模和离体猪肝脏样品中的超声处理产生的损伤与声学和热模型预测的相似。>结论:结果支持SonoKnife进行无创热消融的可行性。

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