UMR-S975, CRICM-INSERM-UPMC, Paris, Île-de-France, France.
J Magn Reson Imaging. 2011 Jun;33(6):1491-502. doi: 10.1002/jmri.22577.
To measure the impact of corrupted images often found to occur in diffusion-weighted magnetic resonance imaging (DW-MRI). To propose a robust method for the correction of outliers, applicable to diffusion tensor imaging (DTI) and q-ball imaging (QBI).
Monte Carlo simulations were carried out to measure the impact of outliers on DTI and QBI reconstruction in a single voxel. Methods to correct outliers based on q-space interpolation and direction removal were then implemented and validated in real image data.
Corruption in a single voxel led to clear variations in DTI and QBI metrics. In real data, the method of q-space interpolation was successful in identifying corrupted voxels and restoring them to values consistent with those of uncorrupted images.
For images containing few gradient directions, where outlier removal was either impossible due to limited volumes or resulted in large changes in DTI/QBI metrics, q-space interpolation proved to be the method of choice for image restoration. A simple decision support system is proposed to assist clinicians in the correction of their corrupted DW data.
测量在扩散加权磁共振成像(DW-MRI)中经常发现的图像损坏的影响。提出一种针对离群值的稳健校正方法,适用于扩散张量成像(DTI)和 q 球成像(QBI)。
通过蒙特卡罗模拟测量单个体素中离群值对 DTI 和 QBI 重建的影响。然后,在真实图像数据中实施并验证了基于 q 空间插值和方向去除的离群值校正方法。
单个体素的损坏导致 DTI 和 QBI 指标的明显变化。在真实数据中,q 空间插值方法成功识别损坏的体素并将其恢复为与未损坏图像一致的值。
对于包含较少梯度方向的图像,由于体积有限或导致 DTI/QBI 指标发生较大变化而无法进行离群值去除的情况,q 空间插值证明是图像恢复的首选方法。提出了一种简单的决策支持系统,以帮助临床医生校正其损坏的 DW 数据。