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基于流形配准的高分辨率自由门控动态腹部 MRI 成像技术

High-Resolution Self-Gated Dynamic Abdominal MRI Using Manifold Alignment.

出版信息

IEEE Trans Med Imaging. 2017 Apr;36(4):960-971. doi: 10.1109/TMI.2016.2636449. Epub 2017 Jan 20.

Abstract

We present a novel retrospective self-gating method based on manifold alignment (MA), which enables reconstruction of free breathing, high spatial, and temporal resolution abdominal magnetic resonance imaging sequences. Based on a radial golden-angle acquisition trajectory, our method enables a multidimensional self-gating signal to be extracted from the k -space data for more accurate motion representation. The k -space radial profiles are evenly divided into a number of overlapping groups based on their radial angles. MA is then used to simultaneously learn and align the low dimensional manifolds of all groups, and embed them into a common manifold. In the manifold, k -space profiles that represent similar respiratory positions are close to each other. Image reconstruction is performed by combining radial profiles with evenly distributed angles that are close in the manifold. Our method was evaluated on both 2-D and 3-D synthetic and in vivo data sets. On the synthetic data sets, our method achieved high correlation with the ground truth in terms of image intensity and virtual navigator values. Using the in vivo data, compared with a state-of-the-art approach based on the center of k -space gating, our method was able to make use of much richer profile data for self-gating, resulting in statistically significantly better quantitative measurements in terms of organ sharpness and image gradient entropy.

摘要

我们提出了一种新颖的基于流形对齐的回顾性自门控方法(MA),可重建自由呼吸、高空间和时间分辨率的腹部磁共振成像序列。基于径向黄金角度采集轨迹,我们的方法可以从 k 空间数据中提取多维自门控信号,以更准确地表示运动。根据径向角度,将 k 空间的径向轮廓均匀地划分为若干重叠组。然后,使用 MA 同时学习和对齐所有组的低维流形,并将它们嵌入到一个公共流形中。在流形中,代表相似呼吸位置的 k 空间轮廓彼此靠近。通过组合在流形中均匀分布且角度接近的径向轮廓来进行图像重建。我们的方法在二维和三维合成数据集以及体内数据集上进行了评估。在合成数据集上,我们的方法在图像强度和虚拟导航器值方面与真实值具有很高的相关性。与基于 k 空间门控中心的最先进方法相比,使用体内数据,我们的方法能够利用更丰富的轮廓数据进行自门控,从而在器官锐度和图像梯度熵方面进行定量测量时具有统计学上的显著优势。

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