Dagher Joseph C, Meyer François G
Institute of Cognitive Science, University of Colorado, Boulder, CO, USA.
Annu Int Conf IEEE Eng Med Biol Soc. 2011;2011:3744-50. doi: 10.1109/IEMBS.2011.6090638.
One of the main sources of signal degradation in rapid MR acquisitions, such as Echo Planar Imaging (EPI), is magnetic field variations caused by field inhomogeneities and susceptibility gradients. If unaccounted for during the reconstruction process, this spatially-varying field can cause severe image artifacts. In this paper, we show that correcting for the resulting degradations can be formulated as a blind image deconvolution problem. We propose a novel joint acquisition-processing paradigm to solve this problem. We describe a practical implementation of this paradigm using a multi-image acquisition strategy and a corresponding joint estimation-reconstruction algorithm. The estimation step computes the spatial distribution of the field maps, while the reconstruction step yields a Minimum Mean Squared Error (MMSE) estimate of the imaged slice. Our simulations show that this proposed joint acquisition-reconstruction method is robust and efficient, offering factors of improvement in the quality of the reconstructed image as compared to other traditional methods.
在快速磁共振成像(MR)采集中,如回波平面成像(EPI),信号退化的主要来源之一是由磁场不均匀性和磁化率梯度引起的磁场变化。如果在重建过程中未考虑到这一点,这种空间变化的磁场会导致严重的图像伪影。在本文中,我们表明,对由此产生的退化进行校正可以被表述为一个盲图像去卷积问题。我们提出了一种新颖的联合采集 - 处理范式来解决这个问题。我们描述了使用多图像采集策略和相应的联合估计 - 重建算法对该范式的实际实现。估计步骤计算场图的空间分布,而重建步骤产生成像切片的最小均方误差(MMSE)估计。我们的模拟表明,这种提出的联合采集 - 重建方法是稳健且高效的,与其他传统方法相比,在重建图像质量上有显著的提升。