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一种改进的被动匀场方法,用于设计高场 MRI 的校正铁件。

An improved passive shimming approach to design correction iron pieces for high field MRI.

机构信息

Institute Plasma Physics, Chinese Academy of Sciences, Hefei 230031, China.

Changzhou Vocational Institute of Mechatronic Technology, Changzhou 213164, China.

出版信息

Rev Sci Instrum. 2020 Dec 1;91(12):124105. doi: 10.1063/5.0032047.

Abstract

This paper proposes a new passive shimming method to design correction iron pieces for compensating field impurities generated by the main magnets of high field magnetic resonance imaging (MRI) for human body imaging. First, the relationship formula of a magnetic dipole to any field point in space is established. Then, a sensitivity matrix in the form of spherical harmonic expansions can be set up based on the contribution of each shim piece to each field point. Next, an optimization procedure of linear programming is applied to determine the location and thickness of the ferromagnetic shim pieces. This is different from the previous methods that consider that all magnetic moments for each magnetized iron piece are located only at its central position, which may cause some intrinsic errors. This method takes the shim piece's volume into account and gives more accurate results in a sensitivity matrix by means of integration in the azimuthal and axial directions while the radial (thickness) direction remains constant. Finally, a case study combining the analytical method and a 3D finite element analysis simulation demonstrates that the new approach provides better results in terms of homogeneity. The method presented can also be used to design passive shims for various practical MRI applications.

摘要

本文提出了一种新的被动匀场方法,用于设计校正铁件,以补偿人体成像用高磁场磁共振成像(MRI)主磁体产生的磁场杂质。首先,建立了磁偶极子到空间任意场点的关系式。然后,可以根据每个匀场片对每个场点的贡献,建立球谐展开形式的灵敏度矩阵。接下来,应用线性规划的优化程序来确定铁磁匀场片的位置和厚度。这与以前的方法不同,以前的方法认为每个磁化铁片中的所有磁矩仅位于其中心位置,这可能会导致一些固有误差。该方法考虑了匀场片的体积,并通过在方位角和轴向方向进行积分,而在径向(厚度)方向保持不变,从而在灵敏度矩阵中给出更准确的结果。最后,通过结合解析方法和三维有限元分析模拟的案例研究,证明了该新方法在均匀性方面具有更好的效果。所提出的方法也可用于设计各种实际 MRI 应用中的无源匀场片。

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