Department of Radiology, Tenth People's Hospital of Tongji University, Shanghai, China.
Department of Radiology, University of California, San Diego, California.
NMR Biomed. 2020 Oct;33(10):e4376. doi: 10.1002/nbm.4376. Epub 2020 Jul 15.
The purpose of this study is to investigate the effect of extending the spiral sampling window on quantitative 3D ultrashort echo time (UTE) Cones imaging of major knee joint tissues including articular cartilage, menisci, tendons and ligaments at 3 T. Nine cadaveric human whole knee specimens were imaged on a 3 T clinical MRI scanner. A series of quantitative 3D UTE Cones imaging biomarkers including T *, T , adiabatic T , magnetization transfer ratio (MTR) and macromolecular fraction (MMF) were estimated using spiral sampling trajectories with various durations. Errors in UTE MRI biomarkers as a function of sampling time were evaluated using a nonstretched spiral trajectory as a reference standard. No significant differences were observed by increasing the spiral sampling window from 1116 to 2232 μs in the calculated T *, T , adiabatic T , MTR and MMF, as all P-values were over .05 as assessed by ANOVA with two-sided Dunnett's test. Although extending the sampling window results in signal loss for short T components, there was limited effect on the calculated quantitative biomarkers, with error percentages typically smaller than 5% in all the evaluated tissues. The total scan time can be reduced by up to 54% with quantification errors of less than 5% in any evaluated major tissue in the knee joint, suggesting that 3D UTE Cones MRI techniques can be greatly accelerated by using a longer spiral sampling window without causing additional quantitative bias.
本研究旨在探讨在 3T 场强下,延长螺旋采样窗对包括关节软骨、半月板、肌腱和韧带在内的主要膝关节组织的三维超短回波时间(UTE)锥体定量成像的影响。我们在一台 3T 临床磁共振成像扫描仪上对 9 例人体全膝关节标本进行了成像。使用不同持续时间的螺旋采样轨迹,估计了一系列定量的 3D UTE 锥体成像生物标志物,包括 T*、T1、绝热 T1、磁化转移率(MTR)和大分子分数(MMF)。使用非拉伸螺旋轨迹作为参考标准,评估了 UTE MRI 生物标志物随采样时间的误差。通过增加螺旋采样窗从 1116 到 2232 μs,在计算的 T*、T1、绝热 T1、MTR 和 MMF 中未观察到显著差异,因为所有 P 值均大于 0.05,这是通过双侧 Dunnett 检验的方差分析评估的。尽管延长采样窗会导致短 T 成分的信号丢失,但对计算定量生物标志物的影响有限,在所有评估的组织中,误差百分比通常小于 5%。在任何评估的膝关节主要组织中,总扫描时间可减少多达 54%,而定量误差小于 5%,这表明在不引起额外定量偏差的情况下,3D UTE 锥体 MRI 技术可以通过使用更长的螺旋采样窗大大加速。