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Three-dimensional motion corrected sensitivity encoding reconstruction for multi-shot multi-slice MRI: Application to neonatal brain imaging

机译:多次运动多层MRI的三维运动校正灵敏度编码重建:在新生儿脑成像中的应用

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摘要

Purpose. To introduce a methodology for the reconstruction of multi-shot, multi-slice magnetic resonance imaging able to cope with both within-plane and through-plane rigid motion and to describe its application in structural brain imaging.Theory and Methods. The method alternates between motion estimation and reconstruction using a common objective function for both. Estimates of three-dimensional motion states for each shot and slice are gradually refined by improving on the fit of current reconstructions to the partial k-space information from multiple coils. Overlapped slices and super-resolution allow recovery of through-plane motion and outlier rejection discards artifacted shots. The method is applied to T2 and T1 brain scans acquired in different views.Results. The procedure has greatly diminished artifacts in a database of 1883 neonatal image volumes, as assessed by image quality metrics and visual inspection. Examples showing the ability to correct for motion and robustness against damaged shots are provided. Combination of motion corrected reconstructions for different views has shown further artifact suppression and resolution recovery.Conclusion. The proposed method addresses the problem of rigid motion in multi-shot multi-slice anatomical brain scans. Tests on a large collection of potentially corrupted datasets have shown a remarkable image quality improvement.
机译:目的。介绍一种能够应对平面内和平面内刚性运动的多发多层磁共振成像重建方法,并描述其在脑结构成像中的应用。理论与方法。该方法在运动估计和重建两者之间使用共同的目标函数进行交替。通过改进当前重构对来自多个线圈的部分k空间信息的拟合,逐步完善每个镜头和切片的三维运动状态估计。重叠的切片和超分辨率可恢复通过平面的运动,而异常剔除会丢弃人造的镜头。该方法适用于以不同视图获取的T2和T1脑部扫描结果。通过图像质量指标和视觉检查,该程序大大减少了1883个新生儿图像量数据库中的伪影。提供了一些示例,这些示例显示了针对损坏的镜头校正运动和鲁棒性的能力。针对不同视图进行运动校正的重建相结合已显示出进一步的伪影抑制和分辨率恢复。所提出的方法解决了多发多层大脑解剖扫描中的僵硬运动问题。对大量潜在损坏的数据集进行的测试表明,图像质量得到了显着改善。

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