Institute of Applied Physics, University of Tsukuba, Ibaraki, Japan.
Magn Reson Med Sci. 2011;10(3):159-67. doi: 10.2463/mrms.10.159.
We measured the homogeneity and stability of the magnetic field of a high field (about 1.04 tesla) yokeless permanent magnet with 40-mm gap for high resolution nuclear magnetic resonance (NMR) imaging. Homogeneity was evaluated using a 3-dimensional (3D) lattice phantom and 3D spin-echo imaging sequences. In the central sphere (20-mm diameter), peak-to-peak magnetic field inhomogeneity was about 60 ppm, and the root-mean-square was 8 ppm. We measured room temperature, magnet temperature, and NMR frequency of the magnet simultaneously every minute for about 68 hours with and without the thermal insulator of the magnet. A simple mathematical model described the magnet's thermal property. Based on magnet performance, we performed high resolution (up to 20 µm) imaging with internal NMR lock sequences of several biological samples. Our results demonstrated the usefulness of the high field small yokeless permanent magnet for high resolution NMR imaging.
我们测量了一个具有 40-mm 间隙的高磁场(约 1.04 特斯拉)无铁芯永磁体的磁场均匀性和稳定性,用于高分辨率磁共振成像(NMR)。均匀性使用 3D 晶格仿体和 3D 自旋回波成像序列进行评估。在中心球体(20mm 直径)中,峰峰值磁场不均匀度约为 60ppm,均方根值为 8ppm。我们在大约 68 小时内,每一分钟同时测量有和没有磁铁隔热层的情况下,磁铁的室温、磁体温度和 NMR 频率。一个简单的数学模型描述了磁铁的热特性。基于磁铁性能,我们使用几个生物样本的内部 NMR 锁定序列进行了高分辨率(高达20 µm)成像。我们的结果表明,该高场小无铁芯永磁体可用于高分辨率 NMR 成像。