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Motion-Robust Diffusion-Weighted Brain MRI Reconstruction Through Slice-Level Registration-Based Motion Tracking

机译:通过基于切片级配准的运动跟踪重建运动健壮扩散加权脑MRI

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摘要

This work proposes a novel approach for motion-robust diffusion-weighted (DW) brain MRI reconstruction through tracking temporal head motion using slice-to-volume registration. The slice-level motion is estimated through a filtering approach that allows tracking the head motion during the scan and correcting for out-of-plane inconsistency in the acquired images. Diffusion-sensitized image slices are registered to a base volume sequentially over time in the acquisition order where an outlier-robust Kalman filter, coupled with slice-to-volume registration, estimates head motion parameters. Diffusion gradient directions are corrected for the aligned DWI slices based on the computed rotation parameters and the diffusion tensors are directly estimated from the corrected data at each voxel using weighted linear least squares. The method was evaluated in DWI scans of adult volunteers who deliberately moved during scans as well as clinical DWI of 28 neonates and children with different types of motion. Experimental results showed marked improvements in DWI reconstruction using the proposed method compared to the state-of-the-art DWI analysis based on volume-to-volume registration. This approach can be readily used to retrieve information from motion-corrupted DW imaging data.
机译:这项工作提出了一种新的方法,通过使用切片到卷的配准跟踪颞部头部的运动来进行运动鲁棒扩散加权(DW)脑MRI重建。切片级运动是通过过滤方法估算的,该方法允许在扫描过程中跟踪头部运动并校正所获取图像中的平面外不一致。扩散敏感的图像切片按获取顺序随时间顺序记录到基本卷中,其中异常鲁棒的卡尔曼滤波器与切片到卷的配准一起估计头部运动参数。基于计算出的旋转参数,对对齐的DWI切片的扩散梯度方向进行校正,并使用加权线性最小二乘法从每个体素处的校正数据直接估计扩散张量。在成人志愿者的DWI扫描中评估了该方法,这些志愿者在扫描过程中故意移动,并对28名新生儿和不同运动类型的儿童进行了临床DWI。实验结果表明,与基于卷对卷配准的最新DWI分析相比,使用所提出的方法在DWI重构方面有显着改善。这种方法可以很容易地用于从运动受损的DW成像数据中检索信息。

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