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The Modeling Techniques for Analyses of Electromagnetic Distributions and Reflection Coefficients for Microwave Ablation

机译:微波消融电磁分布和反射系数分析的建模技术

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many advantages of microwave ablation over the other ablative therapies in the field of liver tumor ablation have driven researchers to develop innovative interstitial microwave antennas to effectively treat deep seated, nonre-scctable hepatic tumors. A new coaxial antenna for microwave ablation therapies has been proposed in this research paper. Three dimensional Finite Element Method (FEM) has been used to design the results of the proposed antenna. Objective metrics for assessing the characteristics of helix antennas for microwave ablation by analyzing the electromagnetic field distributions and reflection coefficients for efficiency of antenna has been specified and verified for the proposed antenna, at frequency of 2.45GHz. Our simulation results, Relative permittivity at 2.45 GHz during thermal ablation. Accumulated ablation times noted on each figure to identify temporal variations. Values tended to drop quickly in all cases when temperatures reached 100 °C and continued to drop as temperature was maintained and the tissue became more dehydrated. Changes were irreversible as tissue returned to baseline temperatures. We designs the antenna matching obtained at 2.45 GHz. During thermal ablation, the reflection coefficients it can be noted that the antenna resonance shifts toward higher frequencies and the electric field distribution at the near field region changing follow the temperature variations in tumor tissue.
机译:微波消融的许多优点在肝脏肿瘤消融领域中的其他侧消融疗法使研究人员开发了创新的间质性微波天线,以有效地治疗深层坐姿,非缩写的肝脏肿瘤。本研究论文提出了一种用于微波消融疗法的新的同轴天线。三维有限元方法(FEM)已经用于设计所提出的天线的结果。通过分析电磁场分布和用于天线效率的电磁场分布和反射系数来评估微波消融螺旋天线的特征的客观度量并验证了所提出的天线,频率为2.45GHz。我们的仿真结果,热消融期间2.45 GHz的相对介电常数。在每个数字上累计消融时间以识别时间变化。当温度达到100℃并继续降低随温度并且组织变得更加脱水时,在所有情况下均趋于迅速下降。随着组织恢复到基线温度的变化是不可逆转的。我们设计了在2.45 GHz的天线匹配。在热消融期间,反射系数可以注意到,天线谐振朝向较高频率偏移,并且近场区域的电场分布改变遵循肿瘤组织的温度变化。

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