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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Design of a novel externally-tapped intertwining helical antenna for microwave ablation and its statistical analysis on tissue model
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Design of a novel externally-tapped intertwining helical antenna for microwave ablation and its statistical analysis on tissue model

机译:用于微波消融的新型外部螺纹交织螺旋天线的设计及其组织模型的统计分析

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Cancer is the leading cause of death in recent centuries and microwave ablation (MWA) has been evolving to thermally treat cancerous tissue through cell necrosis and is also a promising substitute to radio frequency ablation. In this article, a novel normal-mode helical antenna based MWA probe is investigated for the effect on ablation diameter in the presence of five critical parameters. The antenna consists of an intertwining helix structure mounted on a very small ground plane. An external tapping is used to match the antenna impedance. In the proposed design at the center frequency, a reflection coefficient of more than 23 dB without insertion into the tissue model and a reflection coefficient of more than 14 dB with insertion into the tissue model have been observed at 5 GHz frequency. The gain and percentage bandwidth of the antenna is 0.6 dB and 10%, respectively. At 20 W power, a maximum ablation diameter of 32 mm (transversal-T) and 44 mm (axial-A) is reached within 5 min of application time at a distance of 30 mm from the probe. Further, the L27 Taguchi's orthogonal array has been employed to study the effect on ablation diameter by varying five thermo-electrical parameters. The outcome of Taguchi's analysis has been ranked according to the contribution of each parameter. Further, F- and p-value test has been employed using analysis of variance to study the significance of each parameter on ablation diameter.
机译:癌症是近几个世纪以来的死亡原因,微波炉消融(MWA)一直在不断通过细胞坏死进行热处理癌组织,并且也是射频消融的有希望的替代品。在本文中,研究了一种新的正常模式基于螺旋天线的MWA探针,用于在存在五个关键参数存在下对消融直径的影响。天线包括安装在非常小的接地平面上的交叉螺旋结构。外部攻丝用于匹配天线阻抗。在中心频率的提出设计中,已经观察到在5GHz频率下观察到没有插入组织模型的23dB的反射系数,而没有插入组织模型的反射系数,并在组织模型中被插入到组织模型中。天线的增益和百分比带宽分别为0.6dB和10%。在20W的功率下,在探针30mm的距离在5分钟内达到32mm(横向-t)和44mm(轴向-a)的最大消融直径。此外,已经采用L27 Taguchi的正交阵列来通过改变五个热电参数来研究对消融直径的影响。 Taguchi分析的结果已根据每个参数的贡献排列。此外,使用差异分析来研究F和P值测试,以研究每个参数对消融直径的显着性。

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