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A Design Technique of MRI Active Shield Gradient Coil Using Node Current Potentials and Triangular Finite Elements

机译:基于节点电流势和三角形有限元的MRI有源屏蔽梯度线圈设计技术

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摘要

A design technique to calculate winding patterns of active shield gradient coils has been developed with the design tool using current potential and singular value decomposition (SVD) (DUCAS), which is a computer code to construct sheet current distributions on arbitrary surfaces using current potential (CP), triangular finite elements, and regularization of truncated SVD. The DUCAS calculates sheet currents on current carrying surfaces (CCSs) of CCS1 for the main coil and CCS2 for the shield coil, so as to reconstruct a gradient field and a magnetic field shielding iteratively. The iterative calculation converged in roughly ten steps. The obtained magnetic field showed very accurate shielding of below (10^{-7 }vphantom {sum ^{R^{R}}}) T with the gradient magnetic field. Then, the sheet currents on CCSs were discretized as filament currents for conductor placements along CP contours. The applicability of this technique has been confirmed by test designs. Furthermore, it was understood that optimization of the CCS2 shape could be possible using the developed technique.
机译:使用该工具使用电流电势和奇异值分解(SVD)(DUCAS)开发了一种计算有源屏蔽梯度线圈绕组模式的设计技术,这是一种使用电流电势在任意表面上构造薄板电流分布的计算机代码( CP),三角形有限元和截断SVD的正则化。 DUCAS计算主线圈CCS1和屏蔽线圈CCS2的载流表面(CCS)上的薄层电流,以重建梯度场和迭代屏蔽的磁场。迭代计算大约以十个步骤收敛。所获得的磁场显示出对 (10 ^ {-7} vphantom {sum ^ {R ^ {R}}}) T加上梯度磁场。然后,将CCS上的薄板电流离散化为灯丝电流,以便沿着CP轮廓放置导体。测试设计已证实了该技术的适用性。此外,据了解,使用所开发的技术可以优化CCS2形状。

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