Zhao Jie, Zhu Minhua, Xia Ling, Fan Yifeng, Liu Feng
School of Medical Imaging, Hangzhou Medical College, Hangzhou, 310053, China.
Key Laboratory of Biomedical Engineering, Ministry of Education, Zhejiang University, Hangzhou, 310007, China.
Sci Rep. 2025 Aug 4;15(1):28419. doi: 10.1038/s41598-025-13751-4.
In Magnetic Resonance Imaging (MRI), achieving a highly uniform main magnetic field (B) is essential for producing detailed images of human anatomy. Passive Shimming (PS) is a technique used to enhance B uniformity by strategically arranging shimming iron pieces inside the magnet bore. Traditionally, PS optimization has been implemented using Linear Programming (LP), posing challenges in balancing field quality with the quantity of iron used for shimming. This work aims to improve the efficacy of passive shimming by optimally balancing field quality, iron usage, and harmonics, leading to a smoother field profile. This study introduces a hybrid algorithm that combines a Pattern Search Algorithm with Sequential Quadratic Programming (PSA-SQP) to enhance shimming performance. Additionally, a regularization method is employed to effectively reduce the use of iron pieces. The magnetic field improved from 462 ppm to 6.7 ppm, utilizing merely 0.8 kg of iron in a 400 mm Diameter of Spherical Volume (DSV) of a 7T MRI magnet. Compared to traditional LP optimization techniques, this method notably enhanced magnetic field uniformity by 98.5% and reduced the iron weight requirement by 91.7%, showcasing impressive performance. The proposed new passive shimming algorithm is more effective in improving magnetic field uniformity for MRI applications.
在磁共振成像(MRI)中,实现高度均匀的主磁场(B)对于生成人体解剖结构的详细图像至关重要。被动匀场(PS)是一种通过在磁体孔内策略性地布置匀场铁片来提高B均匀性的技术。传统上,PS优化是使用线性规划(LP)来实现的,这在平衡场质量与用于匀场的铁的数量方面带来了挑战。这项工作旨在通过最佳地平衡场质量、铁的使用和谐波来提高被动匀场的效率,从而获得更平滑的场分布。本研究引入了一种将模式搜索算法与序列二次规划相结合的混合算法(PSA-SQP)来提高匀场性能。此外,采用正则化方法有效地减少了铁片的使用。在7T MRI磁体的400毫米直径球形体积(DSV)中,仅使用0.8千克铁,磁场就从462 ppm提高到了6.7 ppm。与传统的LP优化技术相比,该方法显著提高了磁场均匀性98.5%,并将铁的重量需求降低了91.7%,展现出令人印象深刻的性能。所提出的新的被动匀场算法在改善MRI应用的磁场均匀性方面更有效。