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首页> 外文期刊>Physics in medicine and biology. >Electromagnetic fields inside a lossy, multilayered spherical head phantom excited by MRI coils: models and methods
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Electromagnetic fields inside a lossy, multilayered spherical head phantom excited by MRI coils: models and methods

机译:MRI线圈激发的有损多层球形头部幻影内部的电磁场:模型和方法

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摘要

The precise evaluation of electromagnetic field (EMF) distributions inside biological samples is becoming an increasingly important design requirement for high field MRI systems. In evaluating the induced fields caused by magnetic field gradients and RF transmitter coils, a multilayered dielectric spherical head model is proposed to provide a better understanding of electromagnetic interactions when compared to a traditional homogeneous head phantom. This paper presents Debye potential (DP) and Dyadic Green's function (DGF)-based solutions of the EMFs inside a head-sized, stratified sphere with similar radial conductivity and permittivity profiles as a human head. The DP approach is formulated for the symmetric case in which the source is a circular loop carrying a harmonic-formed current over a wide frequency range. The DGF method is developed for generic cases in which the source may be any kind of RF coil whose current distribution can be evaluated using the method of moments. The calculated EMFs can then be used to deduce MRI imaging parameters. The proposed methods, while not representing the full complexity of a head model, offer advantages in rapid prototyping as the computation times are much lower than a full finite difference time domain calculation using a complex head model. Test examples demonstrate the capability of the proposed models/methods. It is anticipated that this model will be of particular value for high field MRI applications, especially the rapid evaluation of RF resonator (surface and volume coils) and high performance gradient set designs.
机译:对生物样品内部电磁场(EMF)分布的精确评估正成为高场MRI系统越来越重要的设计要求。在评估由磁场梯度和RF发射器线圈引起的感应场时,与传统的均质头部模型相比,提出了多层介电球形头部模型,以更好地理解电磁相互作用。本文介绍了在头大小的分层球体中,基于电动势的德拜势(DP)和基于Dyadic Green函数(DGF)的解决方案,其径向电导率和介电常数曲线与人的头类似。 DP方法适用于对称情况,在这种情况下,源是一个在宽频率范围内承载谐波形成电流的圆形环路。 DGF方法是为一般情况而开发的,在这种情况下,源可能是可以使用矩量法评估电流分布的任何类型的RF线圈。然后可以将计算出的EMF用于推导MRI成像参数。所提出的方法虽然不能代表头部模型的全部复杂性,但在快速原型制作方面具有优势,因为其计算时间比使用复杂头部模型的完全有限时域时域计算要低得多。测试示例证明了所提出模型/方法的能力。可以预料,该模型对于高场MRI应用特别有价值,尤其是对RF谐振器(表面和体积线圈)的快速评估以及高性能梯度装置设计。

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