腔内微波热疗应用与电阻涂层的目标热输送

S. Kp, K. Arunachalam
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引用次数: 1

摘要

有针对性的加热和最小的侵入性是间质或腔内热疗和消融应用器的理想特性。同轴单极线天线提供最小的侵入性,但外部导体上感应的电流向后辐射并将加热区扩展到天线有源区之外。同轴BALUN被广泛用于抑制回流,其代价是增加了应用器的尺寸和对组织的侵入性。在本文中,我们研究了915 MHz单极天线外导体上电阻涂层的范围。通过对传统同轴单极子进行数值模拟,研究了在不同的天线插入深度下,PEDOT:PSS涂层对抑制外导体感应电流和组织比吸收率(SAR)的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intracavitary Microwave Hyperthermia Applicator with Resistive Coating for Targeted Heat Delivery
Targeted heating and minimum invasiveness are desired characteristics for interstitial or intracavitary hyperthermia and ablation applicators. Coaxial monopole wire antennas provide minimum invasiveness, but the current induced on the outer conductor radiates backwards and extends the heating zone beyond the antenna active zone. Coaxial BALUN is widely used for choking the back current at the cost of increased applicator size and invasiveness in the tissue. In this paper, we investigate the scope of resistive coating on the outer conductor of a 915 MHz monopole antenna proposed for hyperthermia treatment. Numerical simulations are presented for a conventional coaxial monopole with and without a thin coating of PEDOT:PSS to study the influence of the resistive coating on suppressing the current induced on the outer conductor and tissue specific absorption rate (SAR) for varying antenna insertion depth in the tissue.
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