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用于微波消融的采用浮动金属套筒的双槽天线优化

Optimization of dual slot antenna using floating metallic sleeve for microwave ablation.

作者信息

Ibitoye Z A, Nwoye E O, Aweda M A, Oremosu A A, Annunobi C C, Akanmu O N

机构信息

Department of Radiation Biology and Radiotherapy, College of Medicine of the University of Lagos, Lagos, Nigeria.

Department of Biomedical Engineering, Faculty of Basic Sciences, College of Medicine of the University of Lagos, Lagos, Nigeria.

出版信息

Med Eng Phys. 2015 Apr;37(4):384-91. doi: 10.1016/j.medengphy.2015.01.015. Epub 2015 Feb 14.

Abstract

Backward heating reduction is vital in power distribution optimization in microwave thermal ablation. In this study, we optimized dual slot antenna to yield reduction in backward heating pattern along the antenna shaft with the application of floating metallic sleeve. Finite element methods were used to generate the electromagnetic (EM) field and thermal distribution in liver tissue. The position of the sleeve from the tip of the probe (z = 0 mm) was varied within the range 14 ≤ z ≤ 22 mm while sleeve length was varied within 16 ≤ z ≤ 48 mm at 2 mm interval using operating frequency of 2.45 GHz. The best optimized design has reflection coefficient of -20.87 dB and axial ratio of 0.41 when the sleeve position was at 17 mm and sleeve length was 18 mm. Experimental validation shows that inclusion of a floating metallic sleeve on dual slot antenna for hepatic microwave ablation averagely increased ablation diameter and aspect ratio by 17.8% and 33.9% respectively and decreased ablation length by 11.2%. Reduction in backward heating and increase in power deposition into liver tissue could be achieved by using this antenna to provide greater efficiency and localization of specific absorption rate in delivering microwave energy for hepatic ablation.

摘要

在微波热消融的配电优化中,减少反向加热至关重要。在本研究中,我们通过应用浮动金属套筒优化了双槽天线,以减少沿天线轴的反向加热模式。使用有限元方法生成肝组织中的电磁场(EM)和热分布。探头尖端(z = 0 mm)处套筒的位置在14≤z≤22 mm范围内变化,而套筒长度在16≤z≤48 mm范围内以2 mm的间隔变化,工作频率为2.45 GHz。当套筒位置为17 mm且套筒长度为18 mm时,最佳优化设计的反射系数为-20.87 dB,轴比为0.41。实验验证表明,在用于肝脏微波消融的双槽天线上加入浮动金属套筒,平均可使消融直径和纵横比分别增加17.8%和33.9%,并使消融长度减少11.2%。使用这种天线可以减少反向加热并增加肝脏组织中的功率沉积,从而在为肝脏消融输送微波能量时提供更高的效率和比吸收率定位。

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