基于逆边界元法的Halbach磁体有源补偿线圈设计

Yajie Xu , Feng Wang , Ya Wang , Peng Yu , Jingzhong Zhang , Xiaodong Yang
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引用次数: 2

摘要

Halbach阵列磁体具有体积小、场强高、杂散场紧凑等优点,在桌面核磁共振应用中具有很大的潜力。然而,场的非均匀性是其应用的主要障碍。主动摆振是改善磁场均匀性的必要条件。介绍了一种基于反边界元法(iBEM)的圆柱形哈尔巴赫磁体主动片圈设计方法。针对第1 ~ 3和Z4/Z5/Z6球面谐波(SH)项设计了Shim线圈,并考虑了磁场精度、电阻、电感和电流密度的约束。为了进一步提高高阶垫片线圈的性能,讨论了线圈环和对称特性的影响。最后,通过构建垫片线圈的原型,通过场方向图和SH变换证明了所设计的线圈能够拟合目标SH分布,尽管高阶项存在低阶分量的污染。在半径为2.5 mm、高度为5mm的圆柱形样品空间中,Halbach磁体的均匀性从40.3 ppm提高到3.8 ppm,验证了该线圈的补偿能力。本文提出了一种圆柱形哈尔巴赫磁体的柔性逆线圈设计方法,并讨论了高阶垫片线圈的设计与实现,这在基于哈尔巴赫磁体阵列的核磁共振应用中具有潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Active shim coils design for Halbach magnet based on inverse boundary element method

Active shim coils design for Halbach magnet based on inverse boundary element method

With advantages of small volume, high field strength, and compact stray field, the Halbach array magnet is of great potential in desktop NMR applications. However, field inhomogeneity poses a main obstacle to its applications. Active shimming is necessary for improving the field homogeneity. An active shim coil design method for cylindrical Halbach magnet based on inverse boundary element method (iBEM) is introduced in this work. Shim coils targeting 1st∼3rd and Z4/Z5/Z6 spherical harmonic (SH) terms were designed with constraints of field accuracy, resistance, inductance, and current density. Wire loops and symmetric property influence were discussed to further improve the performance of high-order shim coils. Finally, with the prototype of the shim coils constructed, field pattern and SH transformation proved that the coils designed could fit the target SH distribution, though contamination from low-order components existed in high-order terms. A practical shimming experiment on the Halbach magnet has improved the homogeneity from 40.3 ppm to 3.8 ppm in radius 2.5 mm, height 5 mm cylindrical sample space, verifying the coils' compensation ability. This work provides a flexible inverse coil design method for cylindrical Halbach magnet and discusses the high-order shim coil design and implementation, which is potential in nuclear magnetic resonance applications based on Halbach magnet arrays.

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来源期刊
Magnetic Resonance Letters
Magnetic Resonance Letters Analytical Chemistry, Spectroscopy, Radiology and Imaging, Biochemistry, Genetics and Molecular Biology (General)
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