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磁共振成像中时变磁场梯度在人体中感应产生的电场:数值计算与相关性分析

Electric fields induced in the human body by time-varying magnetic field gradients in MRI: numerical calculations and correlation analysis.

作者信息

Bencsik Martin, Bowtell Richard, Bowley Roger

机构信息

School of Biomedical and Natural Sciences, Nottingham Trent University, Clifton Lane, Nottingham, NG11 8NS, UK.

出版信息

Phys Med Biol. 2007 May 7;52(9):2337-53. doi: 10.1088/0031-9155/52/9/001. Epub 2007 Apr 10.

Abstract

The spatial distributions of the electric fields induced in the human body by switched magnetic field gradients in MRI have been calculated numerically using the commercial software package, MAFIA, and the three-dimensional, HUGO body model that comprises 31 different tissue types. The variation of |J|, |E| and |B| resulting from exposure of the body model to magnetic fields generated by typical whole-body x-, y- and z-gradient coils has been analysed for three different body positions (head-, heart- and hips-centred). The magnetic field varied at 1 kHz, so as to produce a rate of change of gradient of 100 T m(-1) s(-1) at the centre of each coil. A highly heterogeneous pattern of induced electric field and current density was found to result from the smoothly varying magnetic field in all cases, with the largest induced electric fields resulting from application of the y-gradient, in agreement with previous studies. By applying simple statistical analysis to electromagnetic quantities within axial planes of the body model, it is shown that the induced electric field is strongly correlated to the local value of resistivity, and the induced current density exhibits even stronger correlation with the local conductivity. The local values of the switched magnetic field are however shown to bear little relation to the local values of the induced electric field or current density.

摘要

利用商业软件包MAFIA和包含31种不同组织类型的三维HUGO人体模型,对磁共振成像(MRI)中开关磁场梯度在人体中感应产生的电场空间分布进行了数值计算。针对三种不同的身体位置(头部、心脏和臀部为中心),分析了人体模型暴露于典型全身x、y和z梯度线圈产生的磁场时,|J|、|E|和|B|的变化情况。磁场以1 kHz的频率变化,以便在每个线圈中心产生100 T m⁻¹ s⁻¹的梯度变化率。在所有情况下,均发现由平滑变化的磁场产生的感应电场和电流密度具有高度不均匀的模式,其中y梯度施加时产生的感应电场最大,这与先前的研究一致。通过对人体模型轴向平面内的电磁量进行简单统计分析表明,感应电场与局部电阻率值密切相关,感应电流密度与局部电导率表现出更强的相关性。然而,开关磁场的局部值与感应电场或电流密度的局部值关系不大。

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