1 Department of Radiology, Seoul National University Children's Hospital, 101 Daehak-ro, Jongno-gu, Seoul, 03080 Korea.
2 Department of Radiology, Kyung Hee University Hospital, Graduate School, Kyung Hee University, Seoul, Korea.
AJR Am J Roentgenol. 2018 Apr;210(4):876-882. doi: 10.2214/AJR.17.18490. Epub 2018 Feb 15.
The purpose of this study was to evaluate the usefulness of radially sampled 3D fat-suppressed T1-weighted gradient-echo sequences (radial volumetric interpolated breath-hold examination [radial VIBE]) for contrast-enhanced brain MRI of children through comparison with a magnetization-prepared rapid-acquisition gradient-echo (MP-RAGE) sequence.
Sixty-five consecutive contrast-enhanced brain MRI examinations performed with axial MP-RAGE and radial VIBE sequences were included. For quantitative analysis, coefficients of variation of gray matter and white matter and CSF and relative contrast between tissue types (gray matter and white matter, gray matter and CSF, and white matter and CSF) for each sequence were calculated. For qualitative assessment, motion, pulsation artifacts, overall image quality, and lesion conspicuity were retrospectively scored on a 5-point scale. Quantitative and qualitative subgroup analyses were performed for patients with serious motion artifacts.
Images obtained with the radial VIBE sequence had fewer motion and pulsation artifacts than those obtained with the MP-RAGE sequence (MP-RAGE vs radial VIBE motion score, 3.57 ± 1.00 vs 4.52 ± 0.51; pulsation score, 3.57 ± 0.60 vs 4.91 ± 0.21; all p < 0.001). Among 25 images with serious motion artifacts, radial VIBE images had significantly higher scores for all qualitative parameters, including overall image quality, than did MP-RAGE images (overall image quality for MP-RAGE vs radial VIBE, 2.63 ± 0.82 vs 3.42 ± 0.55, p < 0.001).
The study showed that a radial fat-suppressed T1-weighted gradient-echo sequence is a viable alternative to conventional cartesian acquisition for contrast-enhanced brain imaging of restless children.
本研究旨在通过与磁化准备快速获取梯度回波(MP-RAGE)序列比较,评估径向采样 3D 脂肪抑制 T1 加权梯度回波序列(径向容积内插屏气检查[radial VIBE])在儿童增强脑 MRI 中的应用价值。
本研究共纳入 65 例连续行轴位 MP-RAGE 和径向 VIBE 序列增强脑 MRI 检查的患者。为了进行定量分析,计算了每个序列的灰质、白质和 CSF 的变异系数,以及组织类型之间的相对对比度(灰质和白质、灰质和 CSF、白质和 CSF)。为了进行定性评估,对运动伪影、搏动伪影、整体图像质量和病灶显影分别进行了 5 分制评分。对存在严重运动伪影的患者进行了定量和定性亚组分析。
与 MP-RAGE 序列相比,径向 VIBE 序列获得的图像运动伪影和搏动伪影更少(MP-RAGE 与径向 VIBE 的运动评分分别为 3.57±1.00 和 4.52±0.51,搏动评分分别为 3.57±0.60 和 4.91±0.21,均 P<0.001)。在 25 例存在严重运动伪影的图像中,径向 VIBE 图像在包括整体图像质量在内的所有定性参数上的评分均显著高于 MP-RAGE 图像(MP-RAGE 与径向 VIBE 的整体图像质量评分分别为 2.63±0.82 和 3.42±0.55,P<0.001)。
本研究表明,对于不配合的儿童增强脑成像,径向脂肪抑制 T1 加权梯度回波序列是传统笛卡尔采集的可行替代方案。