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3D MODELING OF A HYPERTHERMIA ELECTROMAGNETIC APPLICATOR

机译:高温电磁涂抹器的3D建模

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This paper describes the model of an electromagnetic field applicator (waveguide) for oncology hyperthermia which achieves a better EM energy focusing. This technology works with non-ionizing radiation and it does not cause side effects to patients. In this paper, the mathematical design of an applicator based on the waveguide equations is described. A dielectric materials study was carried out in order to know which material had the best performance for its use inside the applicator with the intention of reduce its dimensions. Finally, this paper describes the system modeling with the best dielectric material. The model employed RF analysis, in order to generate EM waves in TE-mode, and the bioheat equation, which relates temperature increases in tissue due to EM waves. The modeling results of the system describe the temperature distributions inside the phantom. This applicator can be used in oncological therapy due to its efficiency and its low cost which represent an extra advantage.
机译:本文介绍了肿瘤能热疗的电磁场施加器(波导)的模型,其实现了更好的EM能量聚焦。该技术适用于非电离辐射,对患者造成副作用。在本文中,描述了基于波导方程的涂抹器的数学设计。进行了一种介电材料研究,以便了解哪种材料具有最佳性能,以减少其尺寸的意图。最后,本文介绍了用最佳介电材料建模。该模型采用RF分析,以便在TE模式下产生EM波,并且生物发热方程,其由于EM波而将温度增加的温度增加。系统的建模结果描述了幻像内的温度分布。由于其效率及其代表额外优势,该涂抹器可用于肿瘤学疗法。

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