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通用单通道线圈同频激发脉冲。

Universal pulses for homogeneous excitation using single channel coils.

机构信息

School of Biomedical Engineering and Imaging Sciences, Faculty of Life Sciences and Medicine, King's College London, London, United Kingdom; Center for the Developing Brain, School of Biomedical Engineering and Imaging Sciences, King's College London, St. Thomas' Hospital, London, United Kingdom; MR Research Collaborations, Siemens Healthcare Limited, Camberley, United Kingdom.

Wellcome Centre for Human Neuroimaging, UCL Queen Square Institute of Neurology, University College London, London, United Kingdom.

出版信息

Magn Reson Imaging. 2022 Oct;92:180-186. doi: 10.1016/j.mri.2022.07.002. Epub 2022 Jul 9.

Abstract

PURPOSE

Universal Pulses (UPs) are excitation pulses that reduce the flip angle inhomogeneity in high field MRI systems without subject-specific optimization, originally developed for parallel transmit (PTX) systems at 7 T. We investigated the potential benefits of UPs for single channel (SC) transmit systems at 3 T, which are widely used for clinical and research imaging, and for which flip angle inhomogeneity can still be problematic.

METHODS

SC-UPs were designed using a spiral nonselective k-space trajectory for brain imaging at 3 T using transmit field maps (B) and off-resonance maps (B) acquired on two different scanner types: a 'standard' single channel transmit system and a system with a PTX body coil. The effect of training group size was investigated using data (200 subjects) from the standard system. The PTX system was used to compare SC-UPs to PTX-UPs (15 subjects). In two additional subjects, prospective imaging using SC-UP was studied.

RESULTS

Average flip angle homogeneity error fell from 9.5 ± 0.5 % for 'default' excitation to 3.0 ± 0.6 % using SC-UPs trained over 50 subjects. Performance of the UPs was found to steadily improve as training group size increased, but stabilized after ~15 subjects. On the PTX-enabled system, SC-UPs again outperformed default excitation in simulations (4.8 ± 0.6 % error versus 10.6 ± 0.8 % respectively) though greater homogenization could be achieved with PTX-UPs (3.9 ± 0.6 %) and personalized pulses (SC-PP 3.6 ± 1.0 %, PTX-PP 2.9 ± 0.6 %). MP-RAGE imaging using SC-UP resulted in greater separation between grey and white matter signal intensities than default excitation.

CONCLUSIONS

SC-UPs can improve excitation homogeneity in standard 3 T systems without further calibration and could be used instead of a default excitation pulse for nonselective neuroimaging at 3 T.

摘要

目的

通用脉冲(UPs)是一种激发脉冲,可在无需针对特定个体进行优化的情况下减少高场 MRI 系统中的翻转角不均匀性,其最初是为 7T 下的并行发射(PTX)系统开发的。我们研究了 UPs 在广泛用于临床和研究成像的 3T 单通道(SC)发射系统中的潜在优势,在这些系统中,翻转角不均匀性仍然是一个问题。

方法

在两种不同的扫描仪类型上采集了脑成像的发射场图(B)和离频图(B),使用螺旋非选择性 k 空间轨迹设计了 SC-Ups:一种“标准”单通道发射系统和一种具有 PTX 体线圈的系统。使用标准系统的数据(200 例)研究了训练组大小的影响。使用 PTX 系统将 SC-Ups 与 PTX-Ups(15 例)进行了比较。在另外两名受试者中,研究了使用 SC-Ups 进行前瞻性成像。

结果

使用经过 50 多名受试者训练的 SC-Ups,平均翻转角均匀性误差从“默认”激励的 9.5±0.5%降至 3.0±0.6%。随着训练组大小的增加,UPs 的性能不断提高,但在 15 名受试者左右后趋于稳定。在支持 PTX 的系统上,SC-Ups 在模拟中再次优于默认激励(分别为 4.8±0.6%误差和 10.6±0.8%误差),尽管使用 PTX-Ups(3.9±0.6%)和个性化脉冲(SC-PP 3.6±1.0%,PTX-PP 2.9±0.6%)可以实现更大的均匀化。使用 SC-Ups 进行 MP-RAGE 成像导致灰质和白质信号强度之间的分离大于默认激励。

结论

SC-Ups 可以改善标准 3T 系统中的激励均匀性,无需进一步校准,可用于替代 3T 下非选择性神经成像的默认激励脉冲。

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