Fournet Gabrielle, Li Jing-Rebecca, Cerjanic Alex M, Sutton Bradley P, Ciobanu Luisa, Le Bihan Denis
1 NeuroSpin, CEA Saclay-Center, Gif-sur-Yvette, France.
2 INRIA Saclay, Palaiseau, France.
J Cereb Blood Flow Metab. 2017 Aug;37(8):2987-3000. doi: 10.1177/0271678X16681310. Epub 2016 Jan 1.
IntraVoxel Incoherent Motion (IVIM) is a magnetic resonance imaging (MRI) technique capable of measuring perfusion-related parameters. In this manuscript, we show that the mono-exponential model commonly used to process IVIM data might be challenged, especially at short diffusion times. Eleven rat datasets were acquired at 7T using a diffusion-weighted pulsed gradient spin echo sequence with b-values ranging from 7 to 2500 s/mm at three diffusion times. The IVIM signals, obtained by removing the diffusion component from the raw MR signal, were fitted to the standard mono-exponential model, a bi-exponential model and the Kennan model. The Akaike information criterion used to find the best model to fit the data demonstrates that, at short diffusion times, the bi-exponential IVIM model is most appropriate. The results obtained by comparing the experimental data to a dictionary of numerical simulations of the IVIM signal in microvascular networks support the hypothesis that such a bi-exponential behavior can be explained by considering the contribution of two vascular pools: capillaries and somewhat larger vessels.
体素内不相干运动(IVIM)是一种能够测量灌注相关参数的磁共振成像(MRI)技术。在本论文中,我们表明常用于处理IVIM数据的单指数模型可能受到挑战,尤其是在短扩散时间时。使用扩散加权脉冲梯度自旋回波序列在7T下采集了11个大鼠数据集,在三个扩散时间下b值范围为7至2500 s/mm²。通过从原始MR信号中去除扩散成分获得的IVIM信号,被拟合到标准单指数模型、双指数模型和凯南模型。用于找到最适合数据的模型的赤池信息准则表明,在短扩散时间时,双指数IVIM模型最为合适。通过将实验数据与微血管网络中IVIM信号的数值模拟字典进行比较所获得的结果支持了这样一种假设,即这种双指数行为可以通过考虑两个血管池的贡献来解释:毛细血管和稍大一些的血管。