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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Compressed Sensing Dynamic Cardiac Cine MRI Using Learned Spatiotemporal Dictionary
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Compressed Sensing Dynamic Cardiac Cine MRI Using Learned Spatiotemporal Dictionary

机译:使用学习的时空词典压缩感知动态心脏电影MRI

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In dynamic cardiac cine magnetic resonance imaging, the spatiotemporal resolution is limited by the low imaging speed. Compressed sensing (CS) theory has been applied to improve the imaging speed and thus the spatiotemporal resolution. In this paper, we propose a novel technique that employs a patch-based 3-D spatiotemporal dictionary for sparse representations of dynamic image sequence in the CS framework. Specifically, the dynamic image sequence is divided into overlapping patches along both the spatial and temporal directions. The dictionary is used to provide flexible sparse expressions for these patches. The underlying optimization problem is solved by variable splitting and the alternating direction method with multiplier. Experimental results based on in vivo cardiac data demonstrate that the proposed method is able to accelerate cardiac cine imaging by a factor up to 8 and outperforms the existing state-of-the-art CS methods at high accelerations. The method is expected to be useful in dynamic imaging with a higher spatiotemporal resolution.
机译:在动态心脏电影磁共振成像中,时空分辨率受成像速度低的限制。压缩传感(CS)理论已被应用来提高成像速度,从而提高时空分辨率。在本文中,我们提出了一种新颖的技术,该技术采用基于补丁的3-D时空字典对CS框架中的动态图像序列进行稀疏表示。具体地,动态图像序列沿着空间和时间方向都被划分为重叠的块。字典用于为这些补丁提供灵活的稀疏表达式。潜在的优化问题是通过变量拆分和乘数交替方向方法解决的。基于体内心脏数据的实验结果表明,所提出的方法能够以高达8的倍数加速心脏电影成像,并且在高加速度下优于现有的最新CS方法。该方法有望在具有较高时空分辨率的动态成像中有用。

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