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Coaxial Slot Antenna Design for Microwave Hyperthermia using Finite-Difference Time-Domain and Finite Element Method

机译:有限时域和有限元法设计的微波热疗同轴缝隙天线

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Hyperthermia also called thermal therapy or thermotherapy is a type of cancer treatment in which body tissue is exposed to high temperatures. Research has shown that high temperatures can damage and kill cancer cells, usually with minimal injury to normal tissues. Otherwise, ablation or high temperature hyperthermia, including lasers and the use of radiofrequency, microwaves, and high-intensity focused ultrasound, are gaining attention as an alternative to standard surgical therapies. The electromagnetic microwave irradiation applied to the tumor tissue causes water molecules to vibrate and rotate, resulting in tissue heating and subsequently cell death via thermal-induced protein denaturation. The effectiveness of this technique is related to the temperature achieved during the therapy, as well as the length time of treatment and cell and tissue characteristics. Numerical electromagnetic and thermal simulations are used to optimize the antenna design and predict heating patterns. A computer modeling of a double slot antenna for interstitial hyperthermia was designed using two different numerical methods, the Finite Element Method and a Finite-Difference Time-Domain. The aim of this work is to analyze both numerical methods and finally experiments results are compared to the simulated results generated by a thermal model. Our results show that normalized SAR patterns using FEM and FDTD look broadly similar. Furthermore,the computed 60#x00B0;C isotherm using FEM and the measured lesion diameter in ex vivo tissue results agree very well.
机译:热疗也称为热疗或热疗,是一种将身体组织暴露在高温下的癌症治疗方法。研究表明,高温可以破坏并杀死癌细胞,通常对正常组织的伤害最小。否则,作为标准手术疗法的替代方法,包括激光以及射频,微波和高强度聚焦超声在内的消融或高温热疗正在引起关注。施加于肿瘤组织的电磁微波辐射使水分子振动并旋转,从而导致组织发热,并随后通过热诱导的蛋白质变性而导致细胞死亡。该技术的有效性与治疗过程中达到的温度以及治疗时间长短以及细胞和组织特性有关。数值电磁和热仿真用于优化天线设计并预测加热模式。利用两种不同的数值方法,有限元法和时差有限域法,设计了一种用于间隙热疗的双缝隙天线的计算机模型。这项工作的目的是分析两种数值方法,最后将实验结果与热模型生成的模拟结果进行比较。我们的结果表明,使用FEM和FDTD归一化的SAR模式看起来大致相似。此外,使用FEM计算的60#x00B0; C等温线和离体组织中测得的病灶直径结果非常吻合。

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