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Verification for EMI Test of Cardiac Pacemaker by Portable Telephones with an Anatomically Based Human Model

机译:通过基于解剖学的人模型的便携式电话通过便携式电话验证心脏起搏器的EMI测试

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Due to the difficulty of electromagnetic interference (EMI) measurement in an actual pacemaker use situation, the recommendations for the management of health risks of implanted pacemaker users from portable telephones have been developed, based mainly on an in-vitro measuring system with a cuboid liquid phantom simulating a homogeneous human body. The validity of such a highly simplified human body model, however, has never been carefully examined. In this paper, with the application of our previously proposed numerical method for the EMI evaluation of pacemakers by portable telephones, we first confirmed Irnich's finding that the maximum interference distance increases with the third root of the antenna transmitting power for a homogeneous cuboid torso model in order to show the validity of our modeling. We then investigated whether the finding holds true for an actual human body using an anatomically based human model. and confirmed the usefulness of the simple cuboid model in the EMI evaluation for cardiac pacemakers.
机译:由于电磁干扰(EMI)测量在实际的起搏器使用情况下,已经开发了用于从便携式电话的植入的起搏器用户的健康风险管理的建议,主要是基于液体液体的体外测量系统模拟均质人体的幻影。然而,这种高度简化的人体模型的有效性从未被仔细检查过。在本文中,随着我们先前提出的用于通过便携式电话的EMI评估的先前提出的数值方法,我们首先确认了Irnich发现最大干扰距离随着天线发射功率的第三根来增加均匀的长方体躯干模型为了显示我们建模的有效性。然后,我们研究了使用解剖学的人体的实际人体是否适用于实际的人体。并确认了简单的长方体模型在心脏起搏器EMI评估中的有用性。

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