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Design of ultrawideband applicator for microwave ablation aimed at thermal therapy in liver cancer

机译:针对肝癌热疗的微波消融超宽带敷贴器设计

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Thermal ablation is conducted by utilizing temperature changes to destroy the abnormal tissue or restore its function. The latest technique in thermal ablation is Microwave Ablation (MW Ablation) that rely on the propagation of electromagnetic waves that is able to increase the temperature of a tissue rapidly. Changes in temperature during the ablation process will reduce the water content in the body tissue (78% of the liver tissue is composed of water) and affect the value of permittivity and conductivity of the tissue. These changes cause the impedance matching of the antenna applicator also change during the ablation process. The change on impedance will make the system does not match with the previous resonant frequency. In addition, the microwave ablation applicator, which is designed for specific frequencies (2.4 GHz and 915MHz) with narrow band characteristics will be suffered from aforementioned phenomenon. Meanwhile, according to the previous studies there are other prominent resonant frequencies that used for MW Ablation, i.e. 1.9 GHz, 6 GHz, 9.2 GHz and 10 GHz. Therefore to accommodate some of the frequencies that are widely used in microwave ablation technique and to tackle the problems arising from the reduced transmission efficiency, then an applicator that has ultrawideband (UWB) characteristics is proposed. In this paper, we design an applicator, which has the characteristics of UWB by modifying the ground plane of the applicator by a hexagonal-sectioned coil. The applicator is designed on a FR4 substrate and numerically simulated with liver phantom by using CST Microwave Studio. The proposed applicator is able to have wide bandwidth by 8.1 GHz, with lower frequency (fl) 1.84 GHz and higher frequency (fh) 10 GHz.
机译:通过利用温度变化来破坏异常组织或恢复其功能来进行热消融。热消融的最新技术是微波消融(MW消融),它依赖于电磁波的传播,能够迅速提高组织的温度。消融过程中温度的变化将减少人体组织中的水分含量(肝组织的78%由水组成)并影响组织的介电常数和电导率。这些变化导致天线施加器的阻抗匹配在消融过程中也发生变化。阻抗的变化将使系统与先前的谐振频率不匹配。另外,针对具有窄带特性的特定频率(2.4GHz和915MHz)设计的微波消融施加器将遭受上述现象的困扰。同时,根据先前的研究,还有其他用于微波消融的突出谐振频率,即1.9 GHz,6 GHz,9.2 GHz和10 GHz。因此,为了适应微波消融技术中广泛使用的某些频率并解决由于传输效率降低而引起的问题,提出了一种具有超宽带(UWB)特性的施加器。在本文中,我们设计了一种涂药器,该涂药器通过用六边形截面线圈修改涂药器的接地面来具有UWB的特性。涂药器设计在FR4基材上,并使用CST Microwave Studio对肝脏模型进行数值模拟。所提出的施加器能够具有8.1 GHz的宽带宽,较低的频率(f l )1.84 GHz和较高的频率(f h )10 GHz。

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