Anderson V, Joyner K H
Electromagnetic Compatibility Section, Telecom Research Laboratories, Clayton, Victoria, Australia.
Bioelectromagnetics. 1995;16(1):60-9. doi: 10.1002/bem.2250160112.
Electric fields (E-fields) induced within a phantom head from exposure to three different advanced mobile phone system (AMPS) hand-held telephones were measured using an implantable E-field probe. Measurements were taken in the eye nearest the phone and along a lateral scan through the brain from its centre to the side nearest the phone. During measurement, the phones were positioned alongside the phantom head as in typical use and were configured to transmit at maximum power (600 mW nominal). The specific absorption rate (SAR) was calculated from the in situ E-field measurements, which varied significantly between phone models and antenna configuration. The SARs induced in the eye ranged from 0.007 to 0.21 W/kg. Metal-framed spectacles enhanced SAR levels in the eye by 9-29%. In the brain, maximum levels were recorded at the measurement point closest to the phone and ranged from 0.12 to 0.83 W/kg. These SARs are below peak spatial limits recommended in the U.S. and Australian national standards [IEEE Standards Coordinating Committee 28 (1991): C95.1-1991 and Standards Australia (1990): AS2772.1-1990] and the IRPA guidelines for safe exposure to radio frequency (RF) electromagnetic fields [IRPA (1988): Health Phys 54:115-123]. Furthermore, a detailed thermal analysis of the eye indicated only a 0.022 degrees C maximum steady-state temperature rise in the eye from a uniform SAR loading of 0.21 W/kg. A more approximate thermal analysis in the brain also indicated only a small maximum temperature rise of 0.034 degrees C for a local SAR loading of 0.83 W/kg.
使用植入式电场探头测量了在模拟头部中,因暴露于三部不同的先进移动电话系统(AMPS)手持电话而感应产生的电场。在距离电话最近的眼睛中以及沿着从大脑中心到距离电话最近一侧的横向扫描路径进行了测量。测量期间,电话按照典型使用方式放置在模拟头部旁边,并配置为以最大功率(标称600毫瓦)发射。根据现场电场测量结果计算了比吸收率(SAR),不同手机型号和天线配置之间的SAR差异显著。眼睛中的SAR值范围为0.007至0.21瓦/千克。金属框架眼镜使眼睛中的SAR水平提高了9%至29%。在大脑中,在距离电话最近的测量点记录到的最高水平范围为0.12至0.83瓦/千克。这些SAR低于美国和澳大利亚国家标准[IEEE标准协调委员会28(1991):C95.1 - 1991和澳大利亚标准(1990):AS2772.1 - 1990]以及国际辐射防护协会(IRPA)关于安全暴露于射频(RF)电磁场的指南[IRPA(1988):《健康物理学》54:115 - 123]中推荐的峰值空间限值。此外,对眼睛的详细热分析表明,在均匀SAR负荷为0.21瓦/千克的情况下,眼睛中的最大稳态温度仅升高0.022摄氏度。对大脑进行的更近似热分析也表明,在局部SAR负荷为0.83瓦/千克的情况下,最大温度仅升高0.034摄氏度。