Shaping and resizing of multifed slot radiators used in conformal microwave antenna arrays for hyperthermia treatment of large superficial diseases.

Paolo F Maccarini, Kavitha Arunachalam, Titania Juang, Valeria De Luca, Sneha Rangarao, Daniel Neumann, Carlos Daniel Martins, Oana Craciunescu, Paul R Stauffer
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引用次数: 6

Abstract

It has been recently shown that chestwall recurrence of breast cancer and many other superficial diseases can be successfully treated with the combination of radiation, chemotherapy and hyperthermia. Conformal microwave antenna array for hyperthermia treatment of large area superficial diseases can significantly increase patient comfort while at the same time facilitate treatment of larger and more irregularly shaped disease. A large number of small efficient antennas is preferable for improved control of heating, as the disease can be more accurately contoured and the lower power requirement correlates with system reliability, linearity and reduced cost. Thus, starting from the initially proposed square slot antennas, we investigated new designs for multi-fed slot antennas of several shapes that maximize slot perimeter while reducing radiating area, thus increasing antenna efficiency. Simulations were performed with commercial electromagnetic simulation software packages (Ansoft HFSS) to demonstrate that the antenna size reduction method is effective for several dual concentric conductor (DCC) aperture shapes and operating frequencies. The theoretical simulations allowed the development of a set of design rules for multi-fed DCC slot antennas that facilitate conformal heat treatments of irregular size and shape disease with large multi-element arrays. Independently on the shape, it is shown that the perimeter of 10cm at 915 MHz delivers optimal radiation pattern and efficiency. While the maximum radiation is obtained for a circular pattern the rectangular shape is the one that feels more efficiently the array space.

适形微波天线阵列中用于大面积表面疾病热疗的多馈槽散热器的成型和尺寸调整。
最近的研究表明,胸壁复发的乳腺癌和许多其他浅表疾病可以成功地治疗结合放疗,化疗和热疗。适形微波天线阵用于大面积浅表疾病的热疗治疗,可显著提高患者的舒适度,同时便于治疗较大且形状不规则的疾病。大量的小型高效天线是改善加热控制的首选,因为疾病可以更精确地勾画轮廓,并且较低的功率要求与系统可靠性,线性度和降低成本相关。因此,从最初提出的方形缝隙天线开始,我们研究了几种形状的多馈缝隙天线的新设计,以最大化缝隙周长,同时减少辐射面积,从而提高天线效率。利用商用电磁仿真软件包(Ansoft HFSS)进行了仿真,验证了天线尺寸减小方法对多种双同心导体(DCC)孔径形状和工作频率的有效性。理论模拟允许开发一套多馈电DCC插槽天线的设计规则,以促进大型多单元阵列的不规则尺寸和形状疾病的保形热处理。独立于形状,在915 MHz下,10厘米的周长提供了最佳的辐射方向图和效率。而最大辐射是获得圆形图案,矩形形状是一个更有效地感觉阵列空间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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