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应用和实验验证用于模拟磁共振成像过程中导体内表面梯度感应涡流的积分方法。

Application and experimental validation of an integral method for simulation of gradient-induced eddy currents on conducting surfaces during magnetic resonance imaging.

机构信息

Department of Physics and Astronomy, Western University, London, Ontario N6A 3K7, Canada.

出版信息

Phys Med Biol. 2013 Jun 21;58(12):4367-79. doi: 10.1088/0031-9155/58/12/4367. Epub 2013 Jun 5.

Abstract

The time-varying magnetic fields created by the gradient coils in magnetic resonance imaging can produce negative effects on image quality and the system itself. Additionally, they can be a limiting factor to the introduction of non-MR devices such as cardiac pacemakers, orthopedic implants, and surgical robotics. The ability to model the induced currents produced by the switching gradient fields is key to developing methods for reducing these unwanted interactions. In this work, a framework for the calculation of induced currents on conducting surface geometries is summarized. This procedure is then compared to two separate experiments: (1) the analysis of the decay of currents induced upon a conducting cylinder by an insert gradient set within a head only 7 T MR scanner; and (2) analysis of the heat deposited into a small conductor by a uniform switching magnetic field at multiple frequencies and two distinct conductor thicknesses. The method was shown to allow the accurate modeling of the induced time-varying field decay in the first case, and was able to provide accurate estimation of the rise in temperature in the second experiment to within 30% when the skin depth was greater than or equal to the thickness of the conductor.

摘要

时变磁场由磁共振成像中的梯度线圈产生,可能对图像质量和系统本身产生负面影响。此外,它们可能成为引入非磁共振设备的限制因素,如心脏起搏器、骨科植入物和手术机器人。能够模拟切换梯度场产生的感应电流是开发减少这些不期望相互作用的方法的关键。在这项工作中,总结了用于计算导电表面几何形状上感应电流的框架。然后将该过程与两个独立的实验进行比较:(1)通过在仅 7 T 磁共振扫描仪中的头部内插入梯度集来分析对导电圆柱产生的电流衰减;(2)在多个频率和两个不同的导体厚度下通过均匀切换磁场分析沉积到小导体中的热量。该方法被证明可以在第一种情况下准确地模拟感应时变场衰减,并且在第二种实验中能够准确估计当趋肤深度大于或等于导体厚度时,温度升高 30%以内。

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