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Comparison of SAR in realistic fetus models of two fetal positions exposed to electromagnetic wave from business portable radio close to maternal abdomen

机译:在接近孕妇腹部的商用便携式无线电设备暴露于电磁波的两个胎儿位置的实际胎儿模型中,SAR的比较

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Since the diversification of the electromagnetic (EM) environment is spreading, it is essential to estimate the EM energy absorption rate [specific absorption rate (SAR)] of a pregnant woman's body and her fetus under various exposure situations. For example, if pregnant women work in jobs where they might wear business portable radios around their abdomens, they should also be concerned about this issue, because the fetuses are in their abdomens. In this paper, in order to evaluate the SAR in the pregnant woman and her fetus when wearing the wireless radio terminal on her abdomen, the SAR distribution in the fetus is calculated using the numerical model of the pregnant woman by exposed to near-field of a normal mode helical antenna (NHA) with a metallic case at 150 MHz. In addition, the SAR in the fetus will be evaluated under two fetal positions. It was found that the fetal SARs are greatly affected by the distance and penetration path from the antenna to the fetal surface. In addition, the fetal SARs are lower than the RF safety guidelines for occupational exposure.
机译:由于电磁(EM)环境的多样性正在蔓延,因此必须估计孕妇和胎儿在各种暴露情况下的EM能量吸收率[比吸收率(SAR)]。例如,如果孕妇从事可能会在腹部佩戴商务便携式收音机的工作,则由于胎儿在腹部,因此她们也应关注这一问题。在本文中,为了评估孕妇和胎儿在腹部无线无线电终端佩戴时的SAR,使用孕妇的数值模型,通过将其暴露在人体的近场中来计算胎儿的SAR分布。带有金属外壳的普通模式螺旋天线(NHA),频率为150 MHz。另外,将在两个胎儿位置下评估胎儿的SAR。发现从天线到胎儿表面的距离和穿透路径极大地影响了胎儿SAR。此外,胎儿的SAR比职业暴露的RF安全指南要低。

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