A new FDTD method for the study of MRI pulsed field gradient-induced fields in the human body

S. Crozier, Huawei Zhao, Liu Feng
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Abstract

In modern MRI, patients are exposed to strong, rapidly switched magnetic field gradients that may be able to elicit nerve stimulation. This paper provides the numerical results of an investigation into induced current spatial distributions inside human tissue when exposed to these pulsed magnetic field gradients. Conventional FDTD methods are unable to model these effects as the effective frequencies of the input source are less than 100 kHz or so, relatively low for FDTD calculations. A new high definition FDTD variant was developed to operate over this bandwidth and a number. of body and gradient models are analysed using the new method.
应用时域有限差分法研究MRI脉冲场在人体中的梯度感应场
在现代MRI中,患者暴露在强的、快速切换的磁场梯度中,这可能会引起神经刺激。本文提供了在这些脉冲磁场梯度作用下人体组织内感应电流空间分布的数值研究结果。传统的FDTD方法无法模拟这些影响,因为输入源的有效频率小于100khz左右,对于FDTD计算来说相对较低。一种新的高清晰度FDTD变体被开发来在这个带宽和数字上操作。用新方法对体模型和梯度模型进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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