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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Design of universal parallel‐transmit refocusing k T T ‐point pulses and application to 3D T 2 2 ‐weighted imaging at 7T
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Design of universal parallel‐transmit refocusing k T T ‐point pulses and application to 3D T 2 2 ‐weighted imaging at 7T

机译:通用并行传递重新焦瘤K T T-TPOTPOPT脉冲的设计与7T的3D T 2 2-Wutighted成像的应用

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摘要

Purpose T 2 ‐weighted sequences are particularly sensitive to the radiofrequency (RF) field inhomogeneity problem at ultra‐high‐field because of the errors accumulated by the imperfections of the train of refocusing pulses. As parallel transmission (pTx) has proved particularly useful to counteract RF heterogeneities, universal pulses were recently demonstrated to save precious time and computational efforts by skipping B 1 calibration and online RF pulse tailoring. Here, we report a universal RF pulse design for non‐selective refocusing pulses to mitigate the RF inhomogeneity problem at 7T in turbo spin‐echo sequences with variable flip angles. Method Average Hamiltonian theory was used to synthetize a single non‐selective refocusing pulse with pTx while optimizing its scaling properties in the presence of static field offsets. The design was performed under explicit power and specific absorption rate constraints on a database of 10 subjects using a 8Tx‐32Rx commercial coil at 7T. To validate the proposed design, the RF pulses were tested in simulation and applied in vivo on 5 additional test subjects. Results The root‐mean‐square rotation angle error (RA‐NRMSE) evaluation and experimental data demonstrated great improvement with the proposed universal pulses (RA‐NRMSE ~8%) compared to the standard circularly polarized mode of excitation (RA‐NRMSE ~26%). Conclusion This work further completes the spectrum of 3D universal pulses to mitigate RF field inhomogeneity throughout all 3D MRI sequences without any pTx calibration. The approach returns a single pulse that can be scaled to match the desired flip angle train, thereby increasing the modularity of the proposed plug and play approach. Magn Reson Med 80:53–65, 2018. ? 2017 International Society for Magnetic Resonance in Medicine.
机译:目的T 2 -wutigryed序列对超高场的射频(RF)域不均匀性问题特别敏感,因为通过重新聚焦脉冲的缺陷累积的误差累积。作为并行传输(PTX)已经证明特别有用以抵消RF异质性,最近将通过跳过B 1校准和在线RF脉冲剪裁来拯救宝贵的时间和计算工作。这里,我们报告了一种用于非选择性重键点脉冲的通用RF脉冲设计,以减轻具有可变翻转角度的Turbo旋转回波序列中的7T的RF不均匀性问题。方法平均哈密顿理论用于合成具有PTX的单个非选择性重键脉冲,同时在存在静态场偏移时优化其缩放属性。在7T处的10个受试者的数据库中,在明确的功率和特定吸收率约束下进行设计。为了验证所提出的设计,RF脉冲在模拟中进行了测试,并在5个额外的测试对象中施用体内。结果根均方旋转角误差(RA-NRMSE)评估和实验数据表现出与所提出的通用脉冲(RA-NRMSE〜8%)相比,与标准的循环激发模式(RA-NRMSE〜26 %)。结论这项工作进一步完成了3D通用脉冲的光谱,以减轻所有3D MRI序列的RF场不均匀性,而无需任何PTX校准。该方法返回一个可以缩放以匹配所需的翻转角度系的单个脉冲,从而增加所提出的插头和播放方法的模块化。 Magn Reson Med 80:53-65,2018。 2017年医学磁共振的国际社会。

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