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Comparison of Parallel MRI Reconstruction Methods for Accelerated 3D Fast Spin-Echo Imaging

机译:加速3D快速自旋回波成像的并行MRI重建方法的比较

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摘要

Parallel MRI (pMRI) achieves imaging acceleration by partially substituting gradient-encoding steps with spatial information contained in the component coils of the acquisition array. Variable-density subsampling in pMRI was previously shown to yield improved two-dimensional (2D) imaging in comparison to uniform subsampling, but has yet to be used routinely in clinical practice. In an effort to reduce acquisition time for 3D fast spin-echo (3D-FSE) sequences, this work explores a specific nonuniform sampling scheme for 3D imaging, subsampling along two phase-encoding (PE) directions on a rectilinear grid. We use two reconstruction methods—2D-GRAPPA-Operator and 2D-SPACE RIP—and present a comparison between them. We show that high-quality images can be reconstructed using both techniques. To evaluate the proposed sampling method and reconstruction schemes, results via simulation, phantom study, and in vivo 3D human data are shown. We find that fewer artifacts can be seen in the 2D-SPACE RIP reconstructions than in 2D-GRAPPA-Operator reconstructions, with comparable reconstruction times.
机译:并行MRI(pMRI)通过用包含在采集阵列的分量线圈中的空间信息部分替换梯度编码步骤来实现成像加速。先前显示,与均匀子采样相比,pMRI中的可变密度子采样可产生改进的二维(2D)成像,但尚未在临床实践中常规使用。为了减少3D快速自旋回波(3D-FSE)序列的采集时间,这项工作探索了一种特定的非均匀采样方案,用于3D成像,在直线网格上沿两个相位编码(PE)方向进行二次采样。我们使用两种重建方法-2D-GRAPPA-Operator和2D-SPACE RIP-并进行比较。我们表明可以使用两种技术来重建高质量图像。为了评估提出的采样方法和重建方案,显示了通过模拟,体模研究和体内3D人类数据得出的结果。我们发现在2D-SPACE RIP重建中可以看到的伪像比在2D-GRAPPA-Operator重建中看到的伪像少,并且重建时间相当。

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