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Correlation between peak spatial-average SAR and maximum temperature elevation in layered cubical model in the frequency range above 3 GHz

机译:3 GHz频率范围内分层立方体模型中峰值空平均SAR与最大温度高度的相关性

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The present study investigates the correlation between maximum temperature elevation and peak mass-averaged specific absorption rates (SARs) in layered one-dimensional model and layered cubical model. The resolution of the model is 0.5 mm or less in order to calculate the correlation in frequencies up to 10 GHz. Our computational investigation in the one-dimensional model showed that the variability due to the thickness is several dozen percents or more, which is dependent on the frequency. In the three-dimensional homogeneous model, SARs averaged over 10 g provides reasonable correlation with maximum temperature elevation for frequencies up to 6 GHz. For the layered cubical model, the SAR averaged over 1g provides better frequency characteristics of the correlation with the maximum temperature elevation, while the variability of the ratio for different tissue thickness remains future work.
机译:本研究研究了层状一维模型和分层立方模型中最大温度升高和峰值质量平均特异性吸收率(SARS)之间的相关性。模型的分辨率为0.5毫米或更小,以便计算高达10 GHz的频率的相关性。我们在一维模型中的计算研究表明,由于厚度引起的可变性是几十个以上百分比,这取决于频率。在三维均匀模型中,超过10g平均的SAR提供了合理的相关性,其最大温度高度高达6 GHz。对于分层立方体模型,SAR在1G上平均提供与最大温度高度相关的更好的频率特性,而不同组织厚度的比率的可变性仍然是未来的工作。

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