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Average absorption cross-section of the human body measured at 1-12 GHz in a reverberant chamber : results of a human volunteer study

机译:在混响室中在1-12GHz下测量的人体的平均吸收截面:人类志愿者研究的结果

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摘要

The electromagnetic absorption cross-section (ACS) averaged over polarization and angle-of-incidence of 60 ungrounded adult subjects was measured at microwave frequencies of 1-12 GHz in a reverberation chamber. Average ACS is important in non-ionizing dosimetry and exposure studies, and is closely related to the whole-body averaged specific absorption rate (WBSAR). The average ACS was measured with a statistical uncertainty of less than 3% and high frequency resolution for individuals with a range of body shapes and sizes allowing the statistical distribution of WBSAR over a real population with individual internal and external morphologies to be determined. The average ACS of all subjects was found to vary from 0.15 to 0.4 m(2); for an individual subject it falls with frequency over 1-6 GHz, and then rises slowly over the 6-12 GHz range in which few other studies have been conducted. Average ACS and WBSAR are then used as a surrogate for worst-case ACS/WBSAR, in order to study their variability across a real population compared to literature results from simulations using numerical phantoms with a limited range of anatomies. Correlations with body morphological parameters such as height, mass and waist circumference have been investigated: the strongest correlation is with body surface area (BSA) at all frequencies above 1 GHz, however direct proportionality to BSA is not established until above 5 GHz. When the average ACS is normalized to the BSA, the resulting absorption efficiency shows a negative correlation with the estimated thickness of subcutaneous body fat. Surrogate models and statistical analysis of the measurement data are presented and compared to similar models from the literature. The overall dispersion of measured average WBSAR of the sample of the UK population studied is consistent with the dispersion of simulated worst-case WBSAR across multiple numerical phantom families. The statistical results obtained allow the calibration of human exposure assessments made with particular phantoms to a population with a range of individual morphologies.
机译:在混响室内以1-12 GHz的微波频率测量了60位未接地成年人的极化和入射角的平均电磁吸收截面(ACS)。平均ACS在非电离剂量和暴露研究中很重要,并且与全身平均比吸收率(WBSAR)密切相关。测量的平均ACS具有小于3%的统计不确定性,并且对于具有各种体形和大小的个体具有较高的频率分辨率,从而可以确定WBSAR在具有内部和外部个体形态的真实人群中的统计分布。发现所有受试者的平均ACS从0.15到0.4 m(2)不等;对于单个对象,它会以1-6 GHz以上的频率下降,然后在6-12 GHz范围内缓慢上升,在此范围内几乎没有进行其他研究。然后,将平均ACS和WBSAR用作最坏情况的ACS / WBSAR的替代物,以便与使用有限范围的解剖模型的数字体模进行仿真的文献结果进行比较,从而研究其在真实人群中的变异性。已经研究了与身体形态参数(例如身高,体重和腰围)的相关性:最强的相关性是在1 GHz以上的所有频率下与体表面积(BSA)相关,但是直到5 GHz以上才与BSA成正比。将平均ACS标准化为BSA时,所得吸收效率与皮下脂肪的估计厚度呈负相关。介绍了替代模型和测量数据的统计分析,并将其与文献中的类似模型进行了比较。所研究的英国人口样本的平均WBSAR实测值的总体分散度与模拟的最坏情况WBSAR在多个数字幻象系列中的分散度一致。所获得的统计结果允许将具有特定体模的人体暴露评估校准到具有一系列个体形态的人群。

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