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Flexible Microwave Ablation Applicator for the Treatment of Pulmonary Malignancies

机译:柔性微波消融器治疗肺部恶性肿瘤

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Microwave ablation (MWA) is an emerging minimally invasive treatment option for malignant lung tumors. Compared to other energy modalities, such as radiofrequency ablation, MWA offers the advantages of deeper penetration within high impedance tissues such as aerated lung, shorter treatment times, and less susceptibility to the cooling heat-sink effects of air and blood flow. Previous studies have demonstrated clinical use of MWA for treating lung tumors; however, these procedures have relied upon the percutaneous application of rigid microwave antennas. The objective of our work was to develop and characterize a novel flexible microwave applicator which could be integrated with a bronchoscopic imaging and software guidance platform to expand the use of MWA as a treatment option for small (< 2cm) pulmonary tumors. This applicator would allow physicians an even less invasive, immediate treatment option for lung tumors identified within the scope of current medical procedures. It may also improve applicator placement accuracy and increase efficacy while minimizing the risk of procedural complications. A 2D-axisymmetric coupled FEM electromagnetic-heat transfer model was implemented to characterize expected antenna radiation patterns, ablation size and shape, and optimize antenna design for lung tissue. A prototype device was fabricated and evaluated in ex vivo tissues to verify simulation results and serve as proof-of-concept. Additional experiments were conducted in an in vivo animal model to further characterize the proposed system.
机译:微波消融(MWA)是一种针对恶性肺肿瘤的新兴微创治疗选择。与其他能量模式(例如射频消融)相比,MWA具有以下优势:在高阻抗组织(如充气肺)中具有更深的穿透力,更短的治疗时间以及对空气和血液流动的散热效果的敏感性较低。先前的研究表明MWA在治疗肺部肿瘤方面的临床应用;然而,这些程序依赖于刚性微波天线的经皮应用。我们工作的目的是开发和表征一种新型的柔性微波辐射器,该辐射器可以与支气管镜成像和软件指导平台集成,以扩大MWA作为治疗小(<2cm)肺部肿瘤的选择。该涂药器将使医生对在当前医疗程序范围内确定的肺肿瘤具有更低的侵入性,立即治疗的选择。它还可以提高涂药器放置的准确性并提高功效,同时最大程度地减少手术并发症的风险。实施了二维轴对称耦合FEM电磁传热模型,以表征预期的天线辐射方向图,消融尺寸和形状,并优化肺组织的天线设计。制造了原型设备并在离体组织中进行了评估,以验证模拟结果并用作概念验证。在体内动物模型中进行了其他实验,以进一步表征拟议的系统。

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