论文标题
加速磁共振T1 \ r {HO}使用基于空间贴片和基于参数组的低级数张量(SMART)的映射
Accelerating Magnetic Resonance T1\r{ho} Mapping Using Simultaneously Spatial Patch-based and Parametric Group-based Low-rank Tensors (SMART)
论文作者
论文摘要
定量磁共振(MR)T1 \ r {HO}映射是表征内在组织依赖性信息的一种有前途的方法。但是,长期扫描时间极大地阻碍了其广泛的应用。最近,在加速MR T1 \ r {HO}映射方面已经采用了低量张量。在这项研究中,我们提出了一种新颖的方法,该方法同时使用基于空间斑块的基于空间斑块和基于参数组的低等级张量(SMART)来重建高度不足的K-Space数据。基于空间贴片的低级张量利用了T1 \ r {ho}映射中的对比度图像之间的高局部和非局部冗余和相似性。基于参数组的低级张量集成了图像信号的相似指数行为,共同用于在重建过程中执行多维低级度。体内脑数据集用于证明该方法的有效性。实验结果表明,所提出的方法分别在二维和三维采集中达到11.7倍和13.21倍的加速度,比几种最先进的方法具有更准确的重建图像和地图。前瞻性重建结果进一步证明了智能方法加速MR T1 \ r {HO}成像的能力。
Quantitative magnetic resonance (MR) T1\r{ho} mapping is a promising approach for characterizing intrinsic tissue-dependent information. However, long scan time significantly hinders its widespread applications. Recently, low-rank tensor has been employed and demonstrated good performance in accelerating MR T1\r{ho} mapping. In this study, we propose a novel method that uses spatial patch-based and parametric group-based low rank tensors simultaneously (SMART) to reconstruct images from highly undersampled k-space data. The spatial patch-based low-rank tensor exploits the high local and nonlocal redundancies and similarities between the contrast images in T1\r{ho} mapping. The parametric group based low-rank tensor, which integrates similar exponential behavior of the image signals, is jointly used to enforce the multidimensional low-rankness in the reconstruction process. In vivo brain datasets were used to demonstrate the validity of the proposed method. Experimental results have demonstrated that the proposed method achieves 11.7-fold and 13.21-fold accelerations in two-dimensional and three-dimensional acquisitions, respectively, with more accurate reconstructed images and maps than several state-of-the-art methods. Prospective reconstruction results further demonstrate the capability of the SMART method in accelerating MR T1\r{ho} imaging.