Dimbylow Peter
Radiation Protection Division, Health Protection Agency, Chilton, Didcot, Oxon OX11 0RQ, UK.
Phys Med Biol. 2005 Sep 7;50(17):4053-63. doi: 10.1088/0031-9155/50/17/009. Epub 2005 Aug 17.
Finite-difference time-domain (FDTD) calculations have been performed of the whole-body averaged specific energy absorption rate (SAR) in a female voxel model, NAOMI, under isolated and grounded conditions from 10 MHz to 3 GHz. The 2 mm resolution voxel model, NAOMI, was scaled to a height of 1.63 m and a mass of 60 kg, the dimensions of the ICRP reference adult female. Comparison was made with SAR values from a reference male voxel model, NORMAN. A broad SAR resonance in the NAOMI values was found around 900 MHz and a resulting enhancement, up to 25%, over the values for the male voxel model, NORMAN. This latter result confirmed previously reported higher values in a female model. The effect of differences in anatomy was investigated by comparing values for 10-, 5- and 1-year-old phantoms rescaled to the ICRP reference values of height and mass which are the same for both sexes. The broad resonance in the NAOMI child values around 1 GHz is still a strong feature. A comparison has been made with ICNIRP guidelines. The ICNIRP occupational reference level provides a conservative estimate of the whole-body averaged SAR restriction. The linear scaling of the adult phantom using different factors in longitudinal and transverse directions, in order to match the ICRP stature and weight, does not exactly reproduce the anatomy of children. However, for public exposure the calculations with scaled child models indicate that the ICNIRP reference level may not provide a conservative estimate of the whole-body averaged SAR restriction, above 1.2 GHz for scaled 5- and 1-year-old female models, although any underestimate is by less than 20%.
在10兆赫兹至3吉赫兹频率范围内,利用时域有限差分法(FDTD)计算了女性体素模型NAOMI在孤立和接地条件下的全身平均比吸收率(SAR)。分辨率为2毫米的体素模型NAOMI按国际放射防护委员会(ICRP)参考成年女性的尺寸进行缩放,高度为1.63米,质量为60千克。将其与参考男性体素模型NORMAN的SAR值进行了比较。在NAOMI模型的值中,大约900兆赫兹处发现了一个较宽的SAR共振,导致其值比男性体素模型NORMAN的值提高了25%。后一结果证实了之前报道的女性模型中较高的值。通过比较重新缩放至ICRP参考身高和体重(男女相同)的10岁、5岁和1岁人体模型的值,研究了解剖结构差异的影响。NAOMI儿童模型在1吉赫兹左右的宽共振仍然是一个显著特征。已将计算结果与国际非电离辐射防护委员会(ICNIRP)的导则进行了比较。ICNIRP职业参考水平对全身平均SAR限制提供了保守估计。为了匹配ICRP的身高和体重,在纵向和横向方向使用不同因子对成年人体模型进行线性缩放,并不能精确再现儿童的解剖结构。然而,对于公众暴露,使用缩放后的儿童模型进行的计算表明,对于缩放后的5岁和1岁女性模型,在1.2吉赫兹以上,ICNIRP参考水平可能无法对全身平均SAR限制提供保守估计,尽管任何低估都小于20%。