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超高场并行传输中基于明确比吸收率和功率约束的双辐条放置优化

Two-spoke placement optimization under explicit specific absorption rate and power constraints in parallel transmission at ultra-high field.

作者信息

Dupas Laura, Massire Aurélien, Amadon Alexis, Vignaud Alexandre, Boulant Nicolas

机构信息

CEA, DSV, I2BM, NeuroSpin, UNIRS, 91191 Gif-sur-Yvette, France.

CEA, DSV, I2BM, NeuroSpin, UNIRS, 91191 Gif-sur-Yvette, France.

出版信息

J Magn Reson. 2015 Jun;255:59-67. doi: 10.1016/j.jmr.2015.03.013. Epub 2015 Apr 11.

DOI:10.1016/j.jmr.2015.03.013
PMID:25912342
Abstract

The spokes method combined with parallel transmission is a promising technique to mitigate the B1(+) inhomogeneity at ultra-high field in 2D imaging. To date however, the spokes placement optimization combined with the magnitude least squares pulse design has never been done in direct conjunction with the explicit Specific Absorption Rate (SAR) and hardware constraints. In this work, the joint optimization of 2-spoke trajectories and RF subpulse weights is performed under these constraints explicitly and in the small tip angle regime. The problem is first considerably simplified by making the observation that only the vector between the 2 spokes is relevant in the magnitude least squares cost-function, thereby reducing the size of the parameter space and allowing a more exhaustive search. The algorithm starts from a set of initial k-space candidates and performs in parallel for all of them optimizations of the RF subpulse weights and the k-space locations simultaneously, under explicit SAR and power constraints, using an active-set algorithm. The dimensionality of the spoke placement parameter space being low, the RF pulse performance is computed for every location in k-space to study the robustness of the proposed approach with respect to initialization, by looking at the probability to converge towards a possible global minimum. Moreover, the optimization of the spoke placement is repeated with an increased pulse bandwidth in order to investigate the impact of the constraints on the result. Bloch simulations and in vivo T2(∗)-weighted images acquired at 7 T validate the approach. The algorithm returns simulated normalized root mean square errors systematically smaller than 5% in 10 s.

摘要

辐条法结合并行传输是一种很有前景的技术,可减轻二维成像中超高场下的B1(+)不均匀性。然而,迄今为止,结合幅度最小二乘脉冲设计的辐条放置优化从未与明确的比吸收率(SAR)和硬件约束直接结合进行。在这项工作中,在这些约束条件下,在小翻转角区域内明确地对双辐条轨迹和射频子脉冲权重进行联合优化。通过观察到在幅度最小二乘代价函数中只有两个辐条之间的向量是相关的,从而大大简化了问题,进而减小了参数空间的大小,并允许进行更详尽的搜索。该算法从一组初始k空间候选值开始,在明确的SAR和功率约束下,使用活动集算法对所有候选值同时并行执行射频子脉冲权重和k空间位置的优化。由于辐条放置参数空间的维度较低,通过查看收敛到可能全局最小值的概率,针对k空间中的每个位置计算射频脉冲性能,以研究所提方法相对于初始化的鲁棒性。此外,以增加的脉冲带宽重复辐条放置的优化,以研究约束对结果的影响。在7T下进行的Bloch模拟和体内T2(∗)加权图像验证了该方法。该算法在10秒内返回的模拟归一化均方根误差系统地小于5%。

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