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Numerical Study for Lung Microwave Ablation in Different Thermal and Electrical Properties

机译:不同热电性能下肺部微波消融的数值研究

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Microwave ablation(MWA)is a minimal invasive operation for treating lung cancer,and it has been widely used in clinic.Lung contain tracheas and bronchus,and the properties of thermal conductivity,electrical conductivity and density change by variations in the lung's internal air volume.Thus,it is difficult to control the precise formation of coagulation zones.In this paper,we propose to use finite element method(FEM)to simulate the microwave ablation for lung cancer in a simple lung model.We set the power as 10 watts for 10 s at 2.45 GHz.We built the lung model and a small bronchus was placed close to the opened-tip coaxial antenna with airflow at the rate of 3 L/min.We operated eight patterns including the collapsed and aerated lung in different thermal conductivity,electrical conductivity and density to simulate.The results preliminarily showed that the electrical conductivity had the greatest influence on the microwave ablation temperature field of lung.
机译:微波消融(MWA)是治疗肺癌的最小侵袭性操作,它已广泛用于临床.Lung含有气囊和支气管,以及通过肺内部空气容积的变化的导热性,导电性和密度变化的性质.thus,很难控制凝血区域的精确形成。在本文中,我们建议使用有限元方法(FEM)来模拟简单的肺模型中的肺癌微波消融。我们将电源设置为10瓦在2.45 GHz的10 s中.WE构建肺模型,小支气管靠近开口尖端同轴天线,气流以3 L / min的速度.WE操作的八种模式,包括折叠和充气肺的不同热量导电性,导电性和密度模拟。预先概述的结果表明,电导率对肺的微波消融温度场具有最大的影响。

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