TEM Cell With a High-Transparency Aperture for Homogeneous Microwave Absorption and Real-Time Viewing of Thermoelastic Expansion of Tissue

IF 3.2 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Carissa J. Roper;Susan C. Hagness;Chu Ma
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引用次数: 0

Abstract

In this study we simulate and evaluate a transverse electromagnetic cell (TEM) for dosimetry applications in the UHF band with design modifications to allow real-time monitoring of tissue expansion due to microwave pulse absorption. We introduce an aperture for high-speed microscope-based imaging inside the waveguide and use simulations to assess the aperture' s impact on power absorption homogeneity and dosage level in tissue samples positioned at the site of the aperture. We consider both transparent, non-conductive borosilicate and semi-transparent, conductive indium tin oxide-coated glass plates covering the aperture. Our simulation results indicate a borosilicate covering provides optimal power absorption homogeneity when the tissue sample is smaller in diameter than the aperture. Analysis of the simulation results enabled us to construct an optimized TEM cell with a borosilicate-glass-covered aperture and experimentally verify that it maximizes dosage in the tissue sample. This modified TEM cell is expected to be an essential component in an experimental platform for observing and recording the macroscopic, dynamic thermoelastic expansion of tissue induced by pulsed microwave exposure.
具有高透明孔径的透射电镜细胞,用于均匀微波吸收和实时观察组织的热弹性膨胀
在这项研究中,我们模拟和评估了横向电磁细胞(TEM)在UHF波段的剂量学应用,并修改了设计,以允许实时监测由于微波脉冲吸收而引起的组织膨胀。我们在波导内部引入了一个用于高速显微镜成像的孔径,并通过模拟来评估该孔径对位于该孔径位置的组织样品的功率吸收均匀性和剂量水平的影响。我们考虑了透明的,不导电的硼硅酸盐和半透明的,导电的氧化铟锡涂层玻璃板覆盖孔径。我们的模拟结果表明,当组织样品的直径小于孔径时,硼硅酸盐覆盖层提供了最佳的功率吸收均匀性。对模拟结果的分析使我们能够构建具有硼硅酸盐玻璃覆盖孔径的优化TEM细胞,并通过实验验证其在组织样品中的剂量最大化。这种改进的TEM细胞有望成为观察和记录脉冲微波照射下组织宏观动态热弹性膨胀的实验平台的重要组成部分。
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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来源期刊
CiteScore
5.80
自引率
9.40%
发文量
58
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