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1.5T 下基于压缩感知的膝关节快速三维各向同性质子密度加权脂肪饱和 MRI:与常规多平面 2D 序列的比较。

Fast 3D Isotropic Proton Density-Weighted Fat-Saturated MRI of the Knee at 1.5 T with Compressed Sensing: Comparison with Conventional Multiplanar 2D Sequences.

机构信息

Department of Diagnostic and Interventional Radiology, University Hospital Bonn, Germany.

Quantitative Imaging Lab Bonn (QILaB), University Hospital Bonn, Germany.

出版信息

Rofo. 2021 Jul;193(7):813-821. doi: 10.1055/a-1337-3351. Epub 2021 Feb 3.

Abstract

PURPOSE

Compressed sensing (CS) is a method to accelerate MRI acquisition by acquiring less data through undersampling of k-space. In this prospective study we aimed to evaluate whether a three-dimensional (3D) isotropic proton density-weighted fat saturated sequence (PDwFS) with CS can replace conventional multidirectional two-dimensional (2D) sequences at 1.5 Tesla.

MATERIALS AND METHODS

20 patients (45.2 ± 20.2 years; 10 women) with suspected internal knee damage received a 3D PDwFS with CS acceleration factor 8 (acquisition time: 4:11 min) in addition to standard three-plane 2D PDwFS sequences (acquisition time: 4:05 min + 3:03 min + 4:46 min = 11:54 min) at 1.5 Tesla. Scores for homogeneity of fat saturation, image sharpness, and artifacts were rated by two board-certified radiologists on the basis of 5-point Likert scales. Based on these ratings, an overall image quality score was generated. Additionally, quantitative contrast ratios for the menisci (MEN), the anterior (ACL) and the posterior cruciate ligament (PCL) in comparison with the popliteus muscle were calculated.

RESULTS

The overall image quality was rated superior in 3D PDwFS compared to 2D PDwFS sequences (14.45 ± 0.83 vs. 12.85 ± 0.99; p < 0.01), particularly due to fewer artifacts (4.65 ± 0.67 vs. 3.65 ± 0.49; p < 0.01) and a more homogeneous fat saturation (4.95 ± 0.22 vs. 4.55 ± 0.51; p < 0.01). Scores for image sharpness were comparable (4.80 ± 0.41 vs. 4.65 ± 0.49; p = 0.30). Quantitative contrast ratios for all measured structures were superior in 3D PDwFS (MEN: p < 0.05; ACL: p = 0.06; PCL: p = 0.33). In one case a meniscal tear was only diagnosed using multiplanar reformation of 3D PDwFS, but it would have been missed on standard multiplanar 2D sequences.

CONCLUSION

An isotropic fat-saturated 3D PD sequence with CS enables fast and high-quality 3D imaging of the knee joint at 1.5 T and may replace conventional multiplanar 2D sequences. Besides faster image acquisition, the 3D sequence provides advantages in small structure imaging by multiplanar reformation.

KEY POINTS

· 3D PDwFS with compressed sensing enables knee imaging that is three times faster compared to multiplanar 2D sequences. · 3D PDwFS with compressed sensing provides high-quality knee imaging at 1.5 T. · Isotropic 3D sequences provide advantages in small structure imaging by using multiplanar reformations.

CITATION FORMAT

· Endler CH, Faron A, Isaak A et al. Fast 3D Isotropic Proton Density-Weighted Fat-Saturated MRI of the Knee at 1.5 T with Compressed Sensing: Comparison with Conventional Multiplanar 2D Sequences. Fortschr Röntgenstr 2021; 193: 813 - 821.

摘要

目的

压缩感知(CS)是一种通过对 k 空间进行欠采样来加速 MRI 采集的方法。在这项前瞻性研究中,我们旨在评估在 1.5T 场强下,三维(3D)各向同性质子密度加权脂肪饱和序列(PDwFS)与 CS 是否可以替代传统的多向二维(2D)序列。

材料与方法

20 例(45.2±20.2 岁;10 名女性)疑似膝关节内部损伤的患者在 1.5T 场强下接受 3D PDwFS 与 CS 加速因子 8(采集时间:4:11 分钟)的检查,同时还接受标准的三平面 2D PDwFS 序列(采集时间:4:05 分钟+3:03 分钟+4:46 分钟=11:54 分钟)的检查。两位经过认证的放射科医生根据 5 分制的李克特量表对脂肪饱和度均匀性、图像清晰度和伪影的评分进行评价。基于这些评分,生成了一个整体的图像质量评分。此外,还计算了半月板(MEN)、前交叉韧带(ACL)和后交叉韧带(PCL)与比目鱼肌的定量对比比。

结果

3D PDwFS 的整体图像质量评分明显优于 2D PDwFS 序列(14.45±0.83 比 12.85±0.99;p<0.01),特别是由于伪影更少(4.65±0.67 比 3.65±0.49;p<0.01)和脂肪饱和度更均匀(4.95±0.22 比 4.55±0.51;p<0.01)。图像清晰度评分相似(4.80±0.41 比 4.65±0.49;p=0.30)。所有测量结构的定量对比比在 3D PDwFS 中均更高(MEN:p<0.05;ACL:p=0.06;PCL:p=0.33)。有一例半月板撕裂仅在使用 3D PDwFS 的多平面重建中被诊断出来,但在标准的多平面 2D 序列中会被遗漏。

结论

在 1.5T 场强下,具有 CS 的各向同性脂肪饱和 3D PD 序列可实现快速、高质量的膝关节成像,可替代传统的多平面 2D 序列。除了更快的图像采集速度外,3D 序列还可以通过多平面重建在小结构成像方面提供优势。

重点

· 与多平面 2D 序列相比,具有 CS 的 3D PDwFS 可实现膝关节成像速度快 3 倍。· 具有 CS 的 3D PDwFS 在 1.5T 时提供高质量的膝关节成像。· 各向同性 3D 序列通过多平面重建在小结构成像方面具有优势。

引文格式

· Endler CH, Faron A, Isaak A 等。1.5T 下使用压缩感知的快速 3D 各向同性质子密度加权脂肪饱和膝关节 MRI:与传统多平面 2D 序列的比较。放射学进展 2021;193:813-821.

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