Suppr超能文献

用于低场核磁共振测量的哈尔巴赫磁体易于实现的被动匀场方法。

Easy-to-implement passive shimming approach of Halbach magnet for low-field NMR measurement.

作者信息

Gao Mengjuan, Luo Sihui, Zhu Lin, Xiao Lizhi, Liu Huabing, Liao Guangzhi, Lv Xinman, Chen Hao, Wang Yi

机构信息

College of Artificial Intelligence, China University of Petroleum, Beijing 102249, China.

College of Carbon Neutral Energy, China University of Petroleum, Beijing 102249, China.

出版信息

J Magn Reson. 2025 Jul;376:107887. doi: 10.1016/j.jmr.2025.107887. Epub 2025 May 16.

Abstract

Halbach magnets have been widely employed to NMR instruments due to their low weight, low cost, and minimal leakage of magnetic field. However, field inhomogeneity remains challenge due to discrete magnet rings and manufacturing deviations of the magnetic elements. This paper aims to address this limitation through an effective passive shimming approach, which is considered the first step toward constructing high-homogeneity magnets because of its non-powered and inherently stable characteristics. We focus on the transverse dipole field generated by Halbach magnets and develop an easily implementable linear programming-genetic algorithm (LP-GA) hybrid optimization approach for passive shimming. Our methodology first employs an equivalent magnetic dipole model to calculate the sensitivity matrix of the shim pieces in the Region of Interest (ROI). Then, the LP-GA hybrid optimization algorithm determines the optimal position, number, and thickness of the shim pieces. By combining shim pieces of three different thicknesses (1 mm, 1.5 mm, and 2 mm), we significantly reduce the field inhomogeneity of a 48 mT Halbach magnet system. The effectiveness of our approach is validated through NMR measurements using water samples with copper sulfate at different concentrations, demonstrating an improvement in field homogeneity from approximately 1229 ppm to 320 ppm. The experimental results confirm that the proposed approach effectively enhances magnetic field homogeneity of low-field Halbach magnet systems and could be applied to shimming various Halbach-like magnet arrays.

摘要

哈尔巴赫磁体因其重量轻、成本低和磁场泄漏极小而被广泛应用于核磁共振仪器。然而,由于离散的磁环和磁性元件的制造偏差,磁场不均匀性仍然是一个挑战。本文旨在通过一种有效的被动匀场方法来解决这一限制,由于其无动力和固有稳定性,该方法被认为是构建高均匀性磁体的第一步。我们专注于哈尔巴赫磁体产生的横向偶极场,并开发了一种易于实现的线性规划 - 遗传算法(LP - GA)混合优化方法用于被动匀场。我们的方法首先采用等效磁偶极模型来计算感兴趣区域(ROI)中匀场片的灵敏度矩阵。然后,LP - GA混合优化算法确定匀场片的最佳位置、数量和厚度。通过组合三种不同厚度(1毫米、1.5毫米和2毫米)的匀场片,我们显著降低了48毫特斯拉哈尔巴赫磁体系统的磁场不均匀性。我们方法的有效性通过使用不同浓度硫酸铜水样的核磁共振测量得到验证,结果表明磁场均匀性从约1229 ppm提高到了320 ppm。实验结果证实,所提出的方法有效地提高了低场哈尔巴赫磁体系统的磁场均匀性,并且可应用于各种类似哈尔巴赫磁体阵列的匀场。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验