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Multipolar laminated electromagnet for low-field magnetic resonance imaging and electron paramagnetic resonance imaging

机译:用于低场磁共振成像和电子顺磁共振成像的多极层状电磁体

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摘要

A cylindrical 16-pole electromagnet (EM) for electron paramagnetic resonance imaging (EPRI) and low-field magnetic resonance imaging (MRI) has been designed by means of two-dimensional and three-dimensional (3-D) finite element analysis (FEA). The use of an automatic procedure that combines FEA with a minimization routine allowed the optimization of the design, in order to improve the homogeneity along the axis of the EM. A prototype has been built by using electrical steel sheets that were cut by laser; this solution reduced significantly the manufacturing cost. The EM operates with a maximum flux density, in the bore, of 0.08 T and has a homogeneity along the axis of about 40 parts per million (ppm) in a spherical region 10 cm in diameter. It generates the main field and two of the three field gradients required in the 3-D image reconstruction. Good agreement was found between the results of simulation and the measured values.
机译:通过二维和三维(3-D)有限元分析(FEA)设计了用于电子顺磁共振成像(EPRI)和低场磁共振成像(MRI)的圆柱形1​​6极电磁体(EM) )。通过结合使用FEA和最小化例程的自动程序,可以优化设计,以改善沿EM轴的均匀性。使用激光切割的电工钢板制成了原型。该解决方案大大降低了制造成本。 EM在孔中的最大磁通密度为0.08 T,并且在直径为10 cm的球形区域中沿轴的均匀性约为百万分之40(ppm)。它生成3D图像重建所需的主场和三个场梯度中的两个。在模拟结果和测量值之间找到了很好的一致性。

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