首页> 外文期刊>International Journal of Heat and Mass Transfer >Theoretical evaluation of the treatment effectiveness of a novel coaxial multi-slot antenna for conformal microwave ablation of tumors
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Theoretical evaluation of the treatment effectiveness of a novel coaxial multi-slot antenna for conformal microwave ablation of tumors

机译:新型同轴多缝天线对肿瘤进行保形微波消融治疗效果的理论评价

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摘要

Microwave ablation (MWA) is a form of thermal therapy that uses the heating effects of electromagnetic waves in the microwave energy spectrum to kill undesired or diseased tissues. Slot coaxial antennas are the most popular antennas used in MWA due to their minimal invasiveness and low cost. MWA with slot coaxial antenna has been proven to be very promising for the treatment of hepatic tumors, but the residual 'tail' seen in many of the specific absorption rate (SAR) patterns inevitably damages surrounding healthy tissues. This is because a treatment that fully conforms to the shape of liver tumor is difficult to achieve with conventional MWA antennas even with current optimization strategies. For the first time, we report a novel design for a coaxial antenna with greatly increased possibility of conformal treatment, a coaxial multi-slot antenna with multiple, preoperative, adjustable, slots for conformal microwave ablation. Theoretical simulations revealed that our coaxial multi-slot antenna could greatly decrease over-treatment compared with the conventional coaxial-slot antenna. Additionally, the coaxial-slot antenna with ten slots generates the smallest over-treatment region for spherical tumors, the most common hepatic tumor shape. For tumors with non-spherical shapes, optimal treatment could be routinely accomDlished bv selectine coaxial-slot antennas with different numbers of slots.
机译:微波消融(MWA)是一种热疗方法,利用微波能谱中电磁波的加热作用杀死不需要的或患病的组织。缝隙同轴天线由于其最小的侵入性和低成本而成为MWA中使用最广泛的天线。事实证明,带有缝隙同轴天线的MWA在治疗肝肿瘤方面非常有前途,但是在许多特定吸收率(SAR)模式中看到的残留“尾巴”不可避免地会损害周围的健康组织。这是因为即使采用当前的优化策略,也很难用常规的MWA天线来实现完全符合肝肿瘤形状的治疗。首次,我们报告了一种同轴天线的新颖设计,极大地提高了共形治疗的可能性,同轴多缝天线具有多个,术前,可调节的,用于共形微波消融的缝隙。理论仿真表明,与传统的同轴缝隙天线相比,我们的同轴多缝隙天线可以大大减少过度处理。此外,带有十个缝隙的同轴缝隙天线会产生最小的球形肿瘤过度治疗区域,这是最常见的肝肿瘤形状。对于具有非球形形状的肿瘤,可以通过选择带有不同缝数的同轴同轴缝天线来常规地进行最佳治疗。

著录项

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  • 作者单位

    Centre for Biomedical Engineering, Department of Electronic Science & Technology, University of Science and Technology of China, Hefei 230027, China,Anhui Provincial Engineering Technology Research Center for Biopreservation and Artificial Organs, Hefei 230027, China;

    Centre for Biomedical Engineering, Department of Electronic Science & Technology, University of Science and Technology of China, Hefei 230027, China,Anhui Provincial Engineering Technology Research Center for Biopreservation and Artificial Organs, Hefei 230027, China,Department of Electronic Science & Technology, University of Science and Technology of China, Road JinZhai 96, Hefei 230027, China;

    Centre for Biomedical Engineering, Department of Electronic Science & Technology, University of Science and Technology of China, Hefei 230027, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microwave ablation (MWA); Multi-slot coaxial antenna; Hepatic tumor; Heat transfer;

    机译:微波消融(MWA);多槽同轴天线;肝肿瘤;传播热量;

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