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Microwave Ablation With a Triaxial Antenna: Results in ex vivo Bovine Liver

机译:三轴天线微波消融:牛肝离体的结果。

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We apply a new triaxial antenna for microwave ablation procedures to an ex vivo bovine liver. The antenna consists of a coaxial monopole inserted through a biopsy needle positioned one quarter-wavelength from the antenna base. The insertion needle creates a triaxial structure, which enhances return loss more than 10 dB, maximizing energy transfer to the tissue while minimizing feed cable heating and invasiveness. Numerical electromagnetic and thermal simulations are used to optimize the antenna design and predict heating patterns. Numerical and ex vivo experimental results show that the lesion size depends strongly on ablation time and average input power, but not on peak power. Pulsing algorithms are also explored. We were able to measure a 3.8-cm lesion using 50 W for 7 min, which we believe to be the largest lesion reported thus far using a 17-gauge insertion needle.
机译:我们将新的三轴天线应用于离体牛肝的微波消融程序。天线由一个同轴的单极子组成,该单极子穿过一个活检针插入,该活检针位于距天线底座四分之一波长处。插入针可形成三轴结构,可将回波损耗提高10 dB以上,从而最大程度地将能量传递到组织,同时最大程度地减少进料电缆的发热和侵袭性。数值电磁和热仿真用于优化天线设计和预测加热模式。数值和离体实验结果表明,病变大小在很大程度上取决于消融时间和平均输入功率,而不取决于峰值功率。还探讨了脉冲算法。我们能够使用50 W的功率在7分钟内测量3.8厘米的病变,我们相信这是迄今为止使用17号针头报告的最大病变。

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