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首页> 外文期刊>Medical Physics >Simplified skipped phase encoding and edge deghosting (SPEED) for imaging sparse objects with applications to MRA.
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Simplified skipped phase encoding and edge deghosting (SPEED) for imaging sparse objects with applications to MRA.

机译:简化的跳过相位编码和边缘反虚像(SPEED),可将稀疏对象成像并应用于MRA。

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The fast imaging method named skipped phase encoding and edge deghosting (SPEED) has been demonstrated to reduce scan time considerably with typical magnetic resonance imaging data. In this work, SPEED is simplified with improved efficiency to accelerate the scan of sparse objects; we refer to this method as S-SPEED. S-SPEED partially samples k-space into two interleaved data sets, each with the same skip size of N but a different relative shift in phase encoding. The sampled data are then Fourier transformed into two ghosted images with N aliasing ghosts. Given the sparseness of signal distribution, the ghosted images are simply modeled with a single-layer structure, analogous to that used in maximum-intensity projection. With an algorithm based on a least-square-error solution, a deghosted image is solved, and a residual map is output for quality control. S-SPEED can be generalized to include more layers with additional acquisitions for refined results. Without differential filtering and full centralk-space sampling, S-SPEED reduces scan time further and achieves more straightforward reconstruction, as compared with SPEED. In this work, S-SPEED is applied to accelerate magnetic resonance angiography (MRA) by taking advantage of the sparse nature of MRA data. With sparse phantom data and in vivo phase contrast MRA data, S-SPEED is demonstrated to achieve satisfactory results with an acceleration factor of 5.5 using a single coil.
机译:已经证明了一种称为跳跃相位编码和边缘去虚像(SPEED)的快速成像方法,可利用典型的磁共振成像数据显着减少扫描时间。在这项工作中,简化了SPEED,并提高了效率,以加速稀疏对象的扫描。我们将此方法称为S-SPEED。 S-SPEED将k空间部分采样到两个交错的数据集中,每个数据集具有相同的跳跃大小N,但相位编码中的相对偏移不同。然后将采样数据进行傅立叶变换为带有N个混叠幻影的两个幻影图像。给定信号分布的稀疏性,可以使用单层结构对重影图像进行简单建模,类似于在最大强度投影中使用的结构。使用基于最小平方误差解决方案的算法,可以解决反虚像的图像,并输出残差图以进行质量控制。可以将S-SPEED概括为包括更多层,并通过其他采集来获得更精确的结果。与SPEED相比,无需差分滤波和完整的中心空间采样,S-SPEED可以进一步减少扫描时间并实现更直接的重建。在这项工作中,利用MRA数据的稀疏性,将S-SPEED应用于加速磁共振血管造影(MRA)。利用稀疏的体模数据和体内相衬MRA数据,S-SPEED被证明可以使用单个线圈以5.5的加速因子获得令人满意的结果。

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