Yokosawa Suguru, Sasaki Makoto, Bito Yoshitaka, Ito Kenji, Yamashita Fumio, Goodwin Jonathan, Higuchi Satomi, Kudo Kohsuke
Central Research Laboratory, Hitachi, Ltd.
Magn Reson Med Sci. 2016;15(1):41-8. doi: 10.2463/mrms.2014-0139. Epub 2015 Jun 23.
To shorten acquisition of diffusion kurtosis imaging (DKI) in 1.5-tesla magnetic resonance (MR) imaging, we investigated the effects of the number of b-values, diffusion direction, and number of signal averages (NSA) on the accuracy of DKI metrics.
We obtained 2 image datasets with 30 gradient directions, 6 b-values up to 2500 s/mm(2), and 2 signal averages from 5 healthy volunteers and generated DKI metrics, i.e., mean, axial, and radial kurtosis (MK, K∥, and K⊥) maps, from various combinations of the datasets. These maps were estimated by using the intraclass correlation coefficient (ICC) with those from the full datasets.
The MK and K⊥ maps generated from the datasets including only the b-value of 2500 s/mm(2) showed excellent agreement (ICC, 0.96 to 0.99). Under the same acquisition time and diffusion directions, agreement was better of MK, K∥, and K⊥ maps obtained with 3 b-values (0, 1000, and 2500 s/mm(2)) and 4 signal averages than maps obtained with any other combination of numbers of b-value and varied NSA. Good agreement (ICC > 0.6) required at least 20 diffusion directions in all the metrics.
MK and K⊥ maps with ICC greater than 0.95 can be obtained at 1.5T within 10 min (b-value = 0, 1000, and 2500 s/mm(2); 20 diffusion directions; 4 signal averages; slice thickness, 6 mm with no interslice gap; number of slices, 12).
为缩短1.5特斯拉磁共振成像中扩散峰度成像(DKI)的采集时间,我们研究了b值数量、扩散方向和信号平均次数(NSA)对DKI指标准确性的影响。
我们从5名健康志愿者身上获取了2个图像数据集,每个数据集有30个梯度方向、高达2500 s/mm²的6个b值以及2次信号平均次数,并从这些数据集的各种组合中生成DKI指标,即平均峰度、轴向峰度和径向峰度(MK、K∥和K⊥)图。这些图通过使用组内相关系数(ICC)与完整数据集的图进行估计。
仅包含2500 s/mm² b值的数据集生成的MK和K⊥图显示出极佳的一致性(ICC,0.96至0.99)。在相同的采集时间和扩散方向下,使用3个b值(0、1000和2500 s/mm²)和4次信号平均次数获得的MK、K∥和K⊥图的一致性优于使用b值数量和不同NSA的任何其他组合获得的图。所有指标中,良好的一致性(ICC > 0.6)需要至少20个扩散方向。
在1.5T场强下,10分钟内即可获得ICC大于0.95的MK和K⊥图(b值 = 0、1000和2500 s/mm²;20个扩散方向;4次信号平均次数;层厚6 mm,无层间距;层数12)。