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Sparse parallel transmission on randomly perturbed spiral k-space trajectory

机译:随机扰动的螺旋k空间轨迹上的稀疏并行传输

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>>Abstract Combination of parallel transmission and sparse pulse is able to shorten the excitation by using both the coil sensitivity and sparse k-space, showing improved fast excitation capability over the use of parallel transmission alone. However, to design an optimal k-space trajectory for sparse parallel transmission is a challenging task. In this work, a randomly perturbed sparse k-space trajectory is designed by modifying the path of a spiral trajectory along the sparse k-space data, and the sparse parallel transmission RF pulses are subsequently designed based on this optimal trajectory. This method combines the parallel transmission and sparse spiral k-space trajectory, potentially to further reduce the RF transmission time. Bloch simulation of 90° excitation by using a four channel coil array is performed to demonstrate its feasibility. Excitation performance of the sparse parallel transmission technique at different reduction factors of 1, 2, and 4 is evaluated. For comparison, parallel excitation using regular spiral trajectory is performed. The passband errors of the excitation profiles of each transmission are calculated for quantitative assessment of the proposed excitation method.
机译:> >摘要并行传输和稀疏脉冲的组合能够通过同时使用线圈灵敏度和稀疏k空间来缩短激励,与单独使用并行传输相比,显示出更高的快速激励能力。然而,为稀疏并行传输设计最佳的k空间轨迹是一项艰巨的任务。在这项工作中,通过修改沿稀疏k空间数据的螺旋轨迹的路径来设计随机扰动的稀疏k空间轨迹,然后根据此最优轨迹设计稀疏并行传输RF脉冲。这种方法结合了并行传输和稀疏螺旋形k空间轨迹,有可能进一步减少RF传输时间。通过使用四通道线圈阵列对90°励磁进行Bloch仿真,以证明其可行性。评估了稀疏并行传输技术在1、2和4的不同折减系数下的激励性能。为了进行比较,使用规则的螺旋轨迹进行平行激励。计算每种传输的激励曲线的通带误差,以定量评估所提出的激励方法。

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