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Acceleration of high angular and spatial resolution diffusion imaging using compressed sensing

机译:使用压缩感测量的高角度和空间分辨率扩散成像的加速度

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Achieving simultaneously high angular and spatial resolution in diffusion imaging is challenging because of the long acquisition times involved. We propose a novel compressed sensing method to acquire high angular and spatial resolution diffusion imaging data, while keeping the scan time reasonable. We show that joint under sampling of 6-D k-q space is more efficient than undersampling only one of the dimensions. We use a sparse Gaussian mixture model and an iterative reconstruction scheme to recover the peaks of the orientation distribution functions (ODF) with high accuracy. We show that at least 6-fold acceleration of acquisition is possible, thereby enabling high angular and spatial resolution diffusion imaging in a reasonable scan time.
机译:由于所涉及的长时间时间,在扩散成像中同时实现高角度和空间分辨率是具有挑战性的。我们提出了一种新颖的压缩感测方法来获取高角度和空间分辨率扩散成像数据,同时保持扫描时间合理。我们表明,在6-D K-Q空间采样下的关节比欠采样的效率更高,只有一个尺寸。我们使用稀疏的高斯混合模型和迭代重建方案,以高精度地恢复定向分布函数(ODF)的峰值。我们表明,可以在合理的扫描时间内实现至少6倍的采集加速度,从而实现高角度和空间分辨率扩散成像。

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