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Efficient Deformable Motion Correction for 3-D Abdominal MRI Using Manifold Regression

机译:使用歧管回归对3-D腹部MRI有效的可变形运动校正

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We present a novel framework for efficient retrospective respiratory motion correction of 3-D abdominal MRI using manifold regression. K-space data are continuously acquired under free breathing using the stack-of-stars radial golden-angle trajectory. The stack-of-profiles (SoP) from all temporal positions are embedded into a common manifold, in which SoPs that were acquired at similar respiratory states are close together. Next, the SoPs in the manifold are clustered into groups using the k-means algorithm. One 3-D volume is reconstructed at the central SoP position of each cluster (a.k.a. key-volumes). Motion fields are estimated using deformable image registration between each of these key-volumes and a reference end-exhale volume. Subsequently, the motion field at any other SoP position in the manifold is derived using manifold regression. The regressed motion fields for each of the SoPs are used to determine a final motion-corrected MRI volume. The method was evaluated on realistic synthetic datasets which were generated from real MRI data and also tested on an in vivo dataset. The framework enables more accurate motion correction compared to the conventional binning-based approach, with high computational efficiency.
机译:我们使用歧管回归提出了一种用于3-D腹部MRI的高效回顾性呼吸运动校正的新框架。使用恒星径向金角轨迹在自由呼吸下连续获取K空间数据。从所有时间位置的叠层(SOP)嵌入到共同的歧管中,其中在类似呼吸状态下获取的SOPS在一起。接下来,使用K-Means算法将歧管中的SOP分成组。在每个群集的中央SOP位置(A.K.A.键卷)重建一个3-D卷。使用这些密钥卷中的每一个和参考结束呼气体积之间的可变形图像配准估计运动场。随后,使用歧管回归导出歧管中的任何其他SOP位置处的运动场。每个SOP的回归运动场用于确定最终运动校正的MRI卷。在真实的合成数据集中评估该方法,该数据集是从真实MRI数据生成的,并在体内数据集中进行测试。与传统的基于分子的方法相比,该框架能够更准确的运动校正,具有高计算效率。

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