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Investigating the effects of external fields polarization on the coupling of pure magnetic waves in the human body in very low frequencies

机译:研究外部磁场极化对极低频下人体内纯电磁波耦合的影响

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摘要

In this paper we studied the effects of external fields' polarization on the coupling of pure magnetic fields into human body. Finite Difference Time Domain (FDTD) method is used to calculate the current densities induced in a 1 cm resolution anatomically based model with proper tissue conductivities. Twenty different tissues have been considered in this investigation and scaled FDTD technique is used to convert the results of computer code run in 15 MHz to low frequencies which are encountered in the vicinity of industrial induction heating and melting devices. It has been found that external magnetic field's orientation due to human body has a pronounced impact on the level of induced currents in different body tissues. This may potentially help developing protecting strategies to mitigate the situations in which workers are exposed to high levels of external magnetic radiation.
机译:在本文中,我们研究了外磁场极化对纯磁场与人体耦合的影响。有限差分时域(FDTD)方法用于计算在1 cm分辨率,基于解剖学的模型中具有适当组织电导率的感应电流密度。在这项研究中考虑了20种不同的组织,并且采用了比例缩放的FDTD技术将以15 MHz运行的计算机代码的结果转换为在工业感应加热和熔化设备附近遇到的低频。已经发现,由于人体引起的外部磁场的取向对不同身体组织中的感应电流的水平具有显着影响。这可能有助于制定保护策略,以减轻工人暴露于高水平外部磁辐射的情况。

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