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Dynamics of magnetization under stimulus-induced rotary saturation sequence

机译:刺激型旋转饱和序列下磁化的动态

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We studied stimulus-induced rotary-saturation preparation (which enables measurement of oscillating magnetic fields using MRI) and derived an analytical solution of the Bloch equation to understand magnetization dynamics mathematically and comprehensively and to conduct simulations without sequential-calculation techniques such as the Runge-Kutta method. We formulated the dynamics using the Bloch equation, introducing an additional rotating frame and some approximations to make it into a homogeneous differential equation. Moreover, we found that there are two modes depending on the target oscillating magnetic field. To confirm the validity of the solution, we experimentally investigated its characteristics and performed curve fitting using the analytical model. Considering the constraints on the frame, the analytical solution was found to agree with experimental data. The experimental data indicate that it is necessary to design robust sequences compensating B(0 )or B-1lock spatial inhomogeneity to improve measurements. Therefore, experimenters should consider the dynamics of magnetization with RF pulses to rewind the spin phase for accurate measurements. (C) 2018 Elsevier Inc. All rights reserved.
机译:我们研究了刺激诱导的旋转饱和度制剂(能够使用MRI测量振荡磁场),并导出BLoch方程的分析解决方案以了解数学和全面地了解磁化动态,并在没有顺序计算技术的情况下进行仿真,如跳动 - Kutta方法。我们使用Bloch方程式制定了动态,引入了额外的旋转框架和一些近似,使其成为均匀微分方程。此外,我们发现,取决于目标振荡磁场有两种模式。为了确认解决方案的有效性,我们通过分析模型进行了实验研究了其特性并进行了曲线拟合。考虑到框架上的约束,发现分析解决方案与实验数据一致。实验数据表明需要设计鲁棒序列补偿B(0)或B-1锁空间不均匀性以改善测量。因此,实验者应考虑使用RF脉冲的磁化动态,以倒回旋转相以进行准确测量。 (c)2018年Elsevier Inc.保留所有权利。

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