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Calculation of the SAR induced in head tissues using a high order DGTD method and triangulated geometrical models

机译:使用高阶DGTD方法和三角几何模型计算头部组织中诱发的SAR

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The great majority of numerical calculations of the Specific Absorption Rate (SAR) induced in human tissues exposed to microwaves are performed using the Finite Difference Time Domain (FDTD) method and voxel based geometrical models. The straightforward implementation of the method and its computational efficiency are among the main reasons for FDTD being currently the leading method for numerical assessment of human exposure to electromagnetic waves. However, the rather difficult departure from the commonly used cartesian grid and cell size limitations regarding the discretization of very detailed structures of human tissues are often recognized as the main weaknesses of the method in this application context. We present here an alternative numerical dosimetry methodology combining a high order Discontinuous Galerkin Time Domain (DGTD) method and adapted geometrical models based on unstructured triangulations, and discuss its application to the calculation of the SAR induced in head tissues.
机译:使用有限差分时域(FDTD)方法和基于体素的几何模型对在人体中暴露于微波的比吸收率(SAR)进行了大多数的数值计算。该方法的直接实现及其计算效率是FDTD成为当前人类电磁波暴露数值评估的主要方法的主要原因之一。但是,在人体组织的非常详细的结构的离散化方面,相对于通常使用的笛卡尔网格和细胞大小限制的相当困难的偏离通常被认为是该方法在该应用背景下的主要缺点。我们在这里提出一种替代的数字剂量学方法,该方法结合了高阶不连续Galerkin时域(DGTD)方法和基于非结构化三角剖分的自适应几何模型,并讨论了其在计算头部组织中产生的SAR方面的应用。

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