论文标题

预测3T的人脑MRI的运动磁场

Prediction of motion induced magnetic fields for human brain MRI at 3T

论文作者

Zhou, Jiazheng, Hagberg, Gisela E, Aghaeifar, Ali, Bause, Jonas, Zaitsev, Maxim, Scheffler, Klaus

论文摘要

B0领域不均匀性的客观地图通常也用于提高MRI图像质量,即使是以回顾性的方式。这些领域不均匀性取决于静态字段中的确切头部位置,但是在每个位置获取场图(FM)是耗时的。在这里,我们探讨了在不同头部位置获得B0预测的不同方法。方法是从具有四个磁场因子的迭代模拟中预测的方法:1)样品诱导的B0场,2)系统的球形谐波垫片场,3)源自视野之外的扰动场,4)序列相误差。通过包括根据UTE扫描和特定位置面具估计的局部易感源来改善模拟。将模拟FMS和从测量参考FM获得的转换的FM的估计性能与不同头部位置处的实际FM进行了比较。结果转换后的FM为大头部移动(> 5度旋转)提供了不一致的结果,而模拟策略对于所有位置都具有较高的预测准确性。模拟的FM用于优化相对于变换的FM方法,其提高了22.2%的B0垫片。结论所提出的仿真策略能够预测运动引起的B0场不均匀性,从而比转换的FM更精确地对地面真相场均匀性进行了更精确的估计。

Objective Maps of B0 field inhomogeneities are often used to improve MRI image quality, even in a retrospective fashion. These field inhomogeneities depend on the exact head position within the static field but acquiring field maps (FM) at every position is time consuming. Here we explore different ways to obtain B0 predictions at different head positions. Methods FM were predicted from iterative simulations with four field factors: 1) sample induced B0 field, 2) system's spherical harmonic shim field, 3) perturbing field originating outside the field of view, 4) sequence phase errors. The simulation was improved by including local susceptibility sources estimated from UTE scans and position-specific masks. The estimation performance of the simulated FMs and a transformed FM, obtained from the measured reference FM, were compared with the actual FM at different head positions. Results The transformed FM provided inconsistent results for large head movements (>5 degree rotation), while the simulation strategy had a superior prediction accuracy for all positions. The simulated FM was used to optimize B0 shims with up to 22.2% improvement with respect to the transformed FM approach. Conclusion The proposed simulation strategy is able to predict movement induced B0 field inhomogeneities yielding more precise estimates of the ground truth field homogeneity than the transformed FM.

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