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The relation between the specific absorption rate and electromagnetic field intensity for heterogeneous exposure conditions at mobile communications frequencies.

机译:在移动通信频率下,异构吸收条件下的比吸收率与电磁场强度之间的关系。

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The relation between the incident electromagnetic field strength and both the whole-body and the local specific absorption rate (SAR) was investigated for typical heterogeneous exposure scenarios for frequencies relevant for mobile communication. The results were compared to results from plane wave exposure. Heterogeneous exposure arises from multiple path propagation of the electromagnetic waves to the location of interest. It is shown that plane wave exposure does not represent worst-case exposure conditions. When the electric field strength arising at plane wave exposure is compared to the electric field strength averaged over the volume of the human body occurring during multipath exposure, 12% of all heterogeneous cases examined represent worse exposure conditions than plane wave exposure for whole-body exposure at 946 MHz, 15% at 1840 MHz, and 22% at 2140 MHz. The deviation between plane wave and heterogeneous whole-body SAR ranges from -54% to 54%. For partial-body SAR averaged over 10 g of tissue, a range from -93% to 209% was found when comparing multiple wave exposure to single incoming plane waves. The investigations performed using the Visible Human as phantom showed that the basic restrictions are met as long as the reference levels are not exceeded. However, this must not be necessarily the case when different phantoms are used to perform similar investigations because recent studies demonstrated that reference levels might not be conservative when phantoms of children are used. Therefore, the results of this work indicate the need to extend the investigations to numerical simulations with additional human phantoms representing parts of the human population having different anatomy and morphology compared to the phantom used within the frame of this project. This also applies to phantoms of children.
机译:针对与移动通信相关的频率的典型异构接触场景,研究了入射电磁场强度与全身和局部比吸收率(SAR)之间的关系。将结果与平面波曝光的结果进行比较。电磁波向目标位置的多径传播会引起异质性暴露。结果表明,平面波曝光不代表最坏情况下的曝光条件。将平面波暴露时产生的电场强度与在多径暴露期间发生的人体体积上的平均电场强度进行比较,所检查的所有异质病例中有12%的暴露条件比全身暴露时的平面波暴露更差在946 MHz下为15%,在1840 MHz下为22%,在2140 MHz下为22%。平面波与异质全身SAR之间的偏差范围为-54%至54%。对于平均超过10 g组织的部分身体SAR,将多次波暴露与单个入射平面波进行比较时,发现范围为-93%至209%。使用可见人体模型进行的研究表明,只要不超出参考水平,基本限制就可以满足。但是,当使用不同的体模进行相似的研究时,情况不一定一定如此,因为最近的研究表明,使用儿童体模时参考水平可能并不保守。因此,这项工作的结果表明有必要将研究扩展到数值模拟,用其他人体模型来代表与该项目框架内使用的人体模型相比具有不同解剖结构和形态的部分人群。这也适用于儿童的幻像。

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