论文标题
具有定量瞬态成像的快速三维多参数MRI
Rapid three-dimensional multiparametric MRI with quantitative transient-state imaging
论文作者
论文摘要
越来越多地证明了定量,瞬态多参数成像的新方法,以评估疾病和治疗功效。在这里,我们通过评估最常见的非 - 牙齿读数轨迹(2D/3D径向和螺旋)来建立这些基础,从而证明了使用K空间视图共享技术进行有效的抗声明,并提出了与神经网络的参数推断的新方法,以结合Proton密度的估计。我们的结果表明,对于1.5T和3T的所有读数轨迹,与黄金标准和幻影参考非常吻合。通过神经网络推断出的参数与高分辨率词典推断的参数差为6.58%。一致性相关系数高于0.92,相对于T1和T2的金标准幻象参考,归一化的均方根误差在4.2%-12.7%之间。体内采集表明,在五分钟内,重建时间和推理时间<7分钟,在五分钟内显示了亚毫米的分辨率。我们的3D定量瞬态成像方法可以在临床上可接受的采集和重建时间内实现高分辨率多参数组织定量。
Novel methods for quantitative, transient-state multiparametric imaging are increasingly being demonstrated for assessment of disease and treatment efficacy. Here, we build on these by assessing the most common Non-Cartesian readout trajectories (2D/3D radials and spirals), demonstrating efficient anti-aliasing with a k-space view-sharing technique, and proposing novel methods for parameter inference with neural networks that incorporate the estimation of proton density. Our results show good agreement with gold standard and phantom references for all readout trajectories at 1.5T and 3T. Parameters inferred with the neural network were within 6.58% difference from the parameters inferred with a high-resolution dictionary. Concordance correlation coefficients were above 0.92 and the normalized root mean squared error ranged between 4.2% - 12.7% with respect to gold-standard phantom references for T1 and T2. In vivo acquisitions demonstrate sub-millimetric isotropic resolution in under five minutes with reconstruction and inference times < 7 minutes. Our 3D quantitative transient-state imaging approach could enable high-resolution multiparametric tissue quantification within clinically acceptable acquisition and reconstruction times.