Liu Feng, Crozier Stuart
The School of Information Technology and Electrical Engineering, The University of Queensland, St. Lucia, Brisbane, Queensland 4072, Australia.
J Magn Reson. 2004 Aug;169(2):323-7. doi: 10.1016/j.jmr.2004.05.011.
This paper evaluates a new, low-frequency finite-difference time-domain method applied to the problem of induced E-fields/eddy currents in the human body resulting from the pulsed magnetic field gradients in MRI. In this algorithm, a distributed equivalent magnetic current is proposed as the electromagnetic source and is obtained by quasistatic calculation of the empty coil's vector potential or measurements therein. This technique circumvents the discretization of complicated gradient coil geometries into a mesh of Yee cells, and thereby enables any type of gradient coil modelling or other complex low frequency sources. The proposed method has been verified against an example with an analytical solution. Results are presented showing the spatial distribution of gradient-induced electric fields in a multi-layered spherical phantom model and a complete body model.
本文评估了一种新的低频时域有限差分方法,该方法应用于磁共振成像(MRI)中脉冲磁场梯度在人体中感应产生电场/涡流的问题。在该算法中,提出了一种分布式等效磁流作为电磁源,它通过对空线圈矢量势进行准静态计算或在其中进行测量来获得。该技术避免了将复杂的梯度线圈几何形状离散化为Yee元网格,从而能够对任何类型的梯度线圈进行建模或处理其他复杂的低频源。所提出的方法已通过一个具有解析解的示例进行了验证。给出的结果展示了多层球形人体模型和完整人体模型中梯度感应电场的空间分布。