Study of split-ring resonators for use on a pharmaceutical drug capsule for microwave activated drug release

S. P. Jonasson, B. S. Jensen, T. Johansen
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引用次数: 5

Abstract

In this paper, a novel method for externally activating a pharmaceutical drug capsule by use of split-ring resonators (SRR) is introduced. To this end, the effect of the orientation of the SRRs on the ability to activate the capsules is examined. A coplanar waveguide is used to excite an identical pair of SRRs fabricated on a substrate, representing an enlarged lid for a pharmaceutical drug capsule. Orientations where the electric field component of a quasi-TEM wave lies across the gap of the SRRs provides the largest response. The optimal case is when the electric field component lies across the gap simultaneously with the magnetic field component normal to the SRRs. Furthermore, an analysis of the optimal conductivity and relative permittivity for enhanced temperature rise in the lid is performed. Conductivity of 0.09 S/m and relative permittivity of 12 shows the highest temperature rise.
用于药物胶囊微波释放的分裂环谐振器的研究
本文介绍了一种利用劈裂环谐振器(SRR)进行药物胶囊外激活的新方法。为此,研究了srr的取向对胶囊激活能力的影响。共面波导用于激发在衬底上制造的一对相同的srr,代表药物胶囊的放大盖子。准瞬变电磁波的电场分量位于srr间隙的方向提供了最大的响应。最佳情况是电场分量与垂直于srr的磁场分量同时横过间隙。此外,还分析了盖子中提高温升的最佳电导率和相对介电常数。电导率为0.09 S/m,相对介电常数为12,温升最高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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