School of Biomedical Engineering, The Sixth Affiliated Hospital, Guangzhou Medical University, Guangzhou, China.
Siemens Healthineers, Shanghai 201318, China.
Magn Reson Imaging. 2023 Feb;96:17-26. doi: 10.1016/j.mri.2022.11.005. Epub 2022 Nov 11.
To develop and evaluate a sequence in which water excitation with lipid insensitive binomial off-resonant radio frequency excitation (LIBRE) pulses is incorporated into three-dimensional (3D) variable flip angle fast spin echo (LIBRE-vf-FSE) for fat-free and large field of view imaging at 3 Tesla (T).
Numerical simulation was conducted to optimize the parameters of LIBRE pulses, including the flip angle, pulse duration, and frequency offset, for maximizing the fat suppression effect of the proposed LIBRE-vf-FSE sequence. The sequence was then implemented at 3 T and assessed in phantoms, lower extremity imaging of 8 healthy volunteers, and head/neck imaging of 5 healthy volunteers. Conventional water excitation (WE) and fat saturation (FatSat) were also performed for comparison. Signal-to-noise ratio (SNR) of fat and contrast-to-noise ratio (CNR) between fat and water were used to evaluate the level of fat suppression. Standard deviation (SD) of SNR was used to evaluate the uniformity of fat suppression.
The numerical simulation demonstrated that LIBRE-vf-FSE enables large volume imaging with uniform fat suppression, which was further confirmed by phantom and healthy volunteer experiments. LIBRE provided the lowest fat SNR and offered more uniform fat suppression compared with the WE and FatSat. Specifically, average oil SNRs obtained by LIBRE (1.10 ms, 360 Hz, and 60°), WE, and FatSat were (180.1 vs. 280.2 vs. 811.2) in phantom experiments, and average fat SNRs and SDs in legs obtained by LIBRE (1.10 ms, 360 Hz, and 60°), WE, and FatSat were (85.1 vs. 105.0 vs. 105.1) and (22.4 vs. 27.4 vs. 56.4) in vivo experiments, respectively.
The proposed LIBRE-vf-FSE sequence allows for fat suppression and large field of view imaging at 3 T. It could be an alternative approach for fat-free vf-FSE scan.
开发并评估一种序列,即在三维(3D)可变翻转角快速自旋回波(vf-FSE)中加入带有脂质不敏感二项式离共振射频激发(LIBRE)脉冲的水激发,用于在 3 特斯拉(T)下进行无脂肪和大视野成像。
进行数值模拟以优化 LIBRE 脉冲的参数,包括翻转角、脉冲持续时间和频率偏移,以最大化所提出的 LIBRE-vf-FSE 序列的脂肪抑制效果。然后在 3T 下实现该序列,并在体模、8 名健康志愿者的下肢成像和 5 名健康志愿者的头颈部成像中进行评估。还进行了常规水激发(WE)和脂肪饱和(FatSat)以进行比较。使用信号噪声比(SNR)评估脂肪抑制水平,使用脂肪和水之间的对比噪声比(CNR)评估脂肪抑制的均匀性。
数值模拟表明,LIBRE-vf-FSE 能够进行具有均匀脂肪抑制的大容量成像,这在体模和健康志愿者实验中得到了进一步证实。LIBRE 提供的脂肪 SNR 最低,与 WE 和 FatSat 相比,提供了更均匀的脂肪抑制。具体而言,在体模实验中,LIBRE(1.10ms、360Hz 和 60°)、WE 和 FatSat 获得的平均油 SNR 分别为(180.1 与 280.2 与 811.2),在下肢中获得的平均脂肪 SNR 和 SD 分别为(1.10ms、360Hz 和 60°)、WE 和 FatSat 为(85.1 与 105.0 与 105.1)和(22.4 与 27.4 与 56.4)。
所提出的 LIBRE-vf-FSE 序列允许在 3T 下进行脂肪抑制和大视野成像。它可能是无脂肪 vf-FSE 扫描的替代方法。