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Specific Absorption Rate Evaluation in Human Body Model Comprising of Metallic Implant

机译:包含金属植入物的人体模型中的比吸收率评估

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In this paper, the human body absorption of electromagnetic energy emitted by a dipole antenna operating at the current mobile phone technology frequencies is investigated. The specific absorption rate within a realistic anatomical model comprising of the metallic implant was evaluated. The research was carried out using electromagnetic numerical modeling based on the Finite Integration method. The primary objective was to compare levels of absorbed electromagnetic energy as a function of the antenna distance and mobile phone carrier frequency. The effect of implants presence was also studied. The results show that SAR varies with respect to the antenna distance as well as to the considered mobile phone technology standard. However, the antenna shift in the tens of millimeters provides significant SAR decrease below the safety limit. The presence of metallic implant in superficial tissue layers causes significant SAR increase, particularly for PM implant while the SAR enhancement for needle implant was negligible.
机译:在本文中,研究了在当前移动电话技术频率下,人体对偶极子天线发射的电磁能的吸收情况。评价了由金属植入物组成的真实解剖模型内的比吸收率。该研究是使用基于有限积分法的电磁数值模型进行的。主要目的是比较吸收的电磁能水平与天线距离和手机载波频率的关系。还研究了植入物存在的影响。结果表明,SAR随天线距离以及所考虑的移动电话技术标准而变化。但是,数十毫米的天线偏移会使SAR大大降低,低于安全极限。表层组织层中金属植入物的存在会导致SAR显着增加,特别是对于PM植入物,而针头植入物的SAR增强可忽略不计。

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