Koch Kevin M, McIntyre Scott, Nixon Terence W, Rothman Douglas L, de Graaf Robin A
Magnetic Resonance Research Center, Yale University, New Haven, CT, USA.
J Magn Reson. 2006 Jun;180(2):286-96. doi: 10.1016/j.jmr.2006.03.007. Epub 2006 Mar 30.
Dynamic alteration of shim settings during a multi-slice imaging experiment can improve static magnetic-field homogeneity over extended volumes. In this report, a pre-emphasized dynamic shim updating (DSU) system capable of rapidly updating all non-degenerate zeroth through second-order shims is presented and applied to high-field multi-slice imaging studies on the human brain. DSU is utilized in both non-oblique and oblique slicing geometries while updating in-plane and through-slice shims. Image-based magnetic-field maps are used to quantify homogeneity improvements and comparisons are made on a slice-specific basis between static global shimming and increasing orders of shim inclusion utilized DSU. The influence of oblique slicing geometry on DSU-utilized global homogeneity is also quantified computationally. Finally, the effect of DSU on susceptibility artifact reduction in single-shot axial-sliced EPI is analyzed using experimental acquisitions.
在多层成像实验中动态改变匀场设置可以改善扩展体积内的静磁场均匀性。在本报告中,提出了一种能够快速更新所有非简并零阶至二阶匀场的预加重动态匀场更新(DSU)系统,并将其应用于对人脑的高场多层成像研究。DSU在非倾斜和倾斜切片几何结构中均有使用,同时更新平面内和切片方向的匀场。基于图像的磁场图用于量化均匀性的改善情况,并在静态全局匀场与使用DSU增加匀场包含阶数之间进行切片特定基础上的比较。还通过计算量化了倾斜切片几何结构对使用DSU的全局均匀性的影响。最后,使用实验采集分析了DSU对单次轴向切片EPI中磁化率伪影减少的影响。