边界积分法在生物电磁学和电磁场的生物医学应用

D. Poljak, M. Cvetković, D. Cavka, A. Peratta, C. Peratta, Hrvoje Dodig, A. Hirata
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引用次数: 2

摘要

综述了电磁场在静态剂量学、低频剂量学和高频剂量学以及生物医学中的应用。将拉普拉斯方程/边界元法(BEM)应用于某些静电和低频暴露场景。采用表面积分方程(SIE)/矩量法(MoM)、张量体积积分方程(MoM)和Stratton Chu积分公式耦合矢量亥姆霍兹方程/混合边界元法(BEM)/有限元法(FEM)方案对高频辐射照射进行了分析。除了人体暴露于不需要的电磁辐射源之外,本工作还通过使用SIE/MoM方法处理电磁场的生物医学应用。文中还给出了感应电流密度、电场和SAR的一些数值结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BOUNDARY INTEGRAL METHODS IN BIOELECTROMAGNETICS AND BIOMEDICAL APPLICATIONS OF ELECTROMAGNETIC FIELDS
The paper reviews some integral methods used in static, low frequency (LF), and high frequency (HF) dosimetry, respectively, and biomedical applications of electromagnetic fields. Laplace equation/Boundary element method (BEM) is applied to certain electrostatic and LF exposure scenarios. Surface Integral Equation (SIE)/Method of Moments (MoM) and tensor volume integral equation/MoM and Stratton Chu integral formulation coupled with vector Helmholtz equations/hybrid Boundary element method (BEM)/Finite element method (FEM) scheme are used to analyze the exposure to HF radiation. In addition to human exposure to undesired electromagnetic radiation sources, this work also deals with biomedical applications of electromagnetic fields, by using SIE/MoM approach. Some illustrative numerical results for induced current densities, electric field and SAR, are also given in the paper.
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