School of Biomedical Engineering and Imaging Sciences, King's College London, London, UK.
Guy's and St Thomas' NHS Foundation Trust, London, UK.
Magn Reson Med. 2024 Aug;92(2):715-729. doi: 10.1002/mrm.30094. Epub 2024 Apr 16.
We propose a quantitative framework for motion-corrected T2 fetal brain measurements in vivo and validate the single-shot fast spin echo (SS-FSE) sequence to perform these measurements.
Stacks of two-dimensional SS-FSE slices are acquired with different echo times (TE) and motion-corrected with slice-to-volume reconstruction (SVR). The quantitative T2 maps are obtained by a fit to a dictionary of simulated signals. The sequence is selected using simulated experiments on a numerical phantom and validated on a physical phantom scanned on a 1.5T system. In vivo quantitative T2 maps are obtained for five fetuses with gestational ages (GA) 21-35 weeks on the same 1.5T system.
The simulated experiments suggested that a TE of 400 ms combined with the clinically utilized TEs of 80 and 180 ms were most suitable for T2 measurements in the fetal brain. The validation on the physical phantom confirmed that the SS-FSE T2 measurements match the gold standard multi-echo spin echo measurements. We measured average T2s of around 200 and 280 ms in the fetal brain grey and white matter, respectively. This was slightly higher than fetal T2* and the neonatal T2 obtained from previous studies.
The motion-corrected SS-FSE acquisitions with varying TEs offer a promising practical framework for quantitative T2 measurements of the moving fetus.
我们提出了一种用于在体运动校正 T2 胎儿脑测量的定量框架,并验证了单次激发快速自旋回波(SS-FSE)序列来进行这些测量。
使用不同回波时间(TE)采集二维 SS-FSE 切片,并使用切片到体积重建(SVR)进行运动校正。通过对模拟信号字典的拟合获得定量 T2 图谱。该序列通过在数值体模上的模拟实验进行选择,并在 1.5T 系统上扫描的物理体模上进行验证。在同一 1.5T 系统上,对 5 个孕龄 21-35 周的胎儿进行了体内定量 T2 图谱的测量。
模拟实验表明,TE 为 400ms,结合临床使用的 TE 为 80ms 和 180ms,最适合胎儿脑的 T2 测量。物理体模的验证证实了 SS-FSE T2 测量与金标准多回波自旋回波测量相符。我们测量了胎儿脑灰质和白质的平均 T2 值分别约为 200ms 和 280ms,略高于之前研究中获得的胎儿 T2*和新生儿 T2。
具有不同 TE 的运动校正 SS-FSE 采集为定量测量运动中的胎儿 T2 提供了一种很有前途的实用框架。