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高场磁共振成像扫描仪内部或附近人体运动所产生磁场的数值评估。

Numerical evaluation of the fields induced by body motion in or near high-field MRI scanners.

作者信息

Crozier Stuart, Liu Feng

机构信息

School of Information Technology and Electrical Engineering, The University of Queensland, GPS South Building, St. Lucia, Brisbane, Qld 4072, Australia.

出版信息

Prog Biophys Mol Biol. 2005 Feb-Apr;87(2-3):267-78. doi: 10.1016/j.pbiomolbio.2004.08.002.

Abstract

In modern magnetic resonance imaging , both patients and health care workers are exposed to strong, non-uniform static magnetic fields inside and outside of the scanner, in which body movement may be able to induce electric currents in tissues which could be potentially harmful. This paper presents theoretical investigations into the spatial distribution of induced E-fields in a tissue-equivalent human model when moving at various positions around the magnet. The numerical calculations are based on an efficient, quasi-static, finite-difference scheme. Three-dimensional field profiles from an actively shielded 4 T magnet system are used and the body model projected through the field profile with normalized velocity. The simulation shows that it is possible to induce E-fields/currents near the level of physiological significance under some circumstances and provides insight into the spatial characteristics of the induced fields. The methodology presented herein can be extrapolated to very high field strengths for the evaluation of the effects of motion at a variety of field strengths and velocities.

摘要

在现代磁共振成像中,患者和医护人员在扫描仪内外都会暴露于强的、非均匀的静磁场中,在这种磁场中身体移动可能会在组织中感应出电流,这可能具有潜在危害。本文对在磁体周围不同位置移动时,组织等效人体模型中感应电场的空间分布进行了理论研究。数值计算基于一种高效的准静态有限差分方案。使用了有源屏蔽4T磁体系统的三维场分布,并将人体模型以归一化速度投影穿过场分布。模拟结果表明,在某些情况下有可能感应出接近生理意义水平的电场/电流,并深入了解感应场的空间特性。本文提出的方法可以外推到非常高的场强,以评估在各种场强和速度下运动的影响。

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