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首页> 外文期刊>IEEE Transactions on Medical Imaging >Deformable Slice-to-Volume Registration for Motion Correction of Fetal Body and Placenta MRI
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Deformable Slice-to-Volume Registration for Motion Correction of Fetal Body and Placenta MRI

机译:用于胎儿和胎盘MRI的运动校正的可变形切片卷注册

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摘要

In in-utero MRI, motion correction for fetal body and placenta poses a particular challenge due to the presence of local non-rigid transformations of organs caused by bending and stretching. The existing slice-to-volume registration (SVR) reconstruction methods are widely employed for motion correction of fetal brain that undergoes only rigid transformation. However, for reconstruction of fetal body and placenta, rigid registration cannot resolve the issue of misregistrations due to deformable motion, resulting in degradation of features in the reconstructed volume. We propose a Deformable SVR (DSVR), a novel approach for non-rigid motion correction of fetal MRI based on a hierarchical deformable SVR scheme to allow high resolution reconstruction of the fetal body and placenta. Additionally, a robust scheme for structure-based rejection of outliers minimises the impact of registration errors. The improved performance of DSVR in comparison to SVR and patch-to-volume registration (PVR) methods is quantitatively demonstrated in simulated experiments and 20 fetal MRI datasets from 28-31 weeks gestational age (GA) range with varying degree of motion corruption. In addition, we present qualitative evaluation of 100 fetal body cases from 20-34 weeks GA range.
机译:在UTO MRI中,由于通过弯曲和拉伸引起的器官的局部非刚性转化,胎儿和胎盘的运动校正构成了特殊的挑战。现有的切片体积配准(SVR)重建方法广泛用于胎儿脑的运动校正,该胎儿仅经历刚性转化。然而,对于重建胎儿和胎盘,由于变形的运动,刚性登记不能解决MISREGISTRATIONS的问题,导致重建量中的特征降低。我们提出了一种可变形的SVR(DSVR),基于分层可变形的SVR方案的胎儿MRI的非刚性运动校正的新方法,以允许胎儿身体和胎盘的高分辨率重建。另外,用于基于结构的异常值的鲁棒方案最小化登记误差的影响。在模拟实验中,在模拟实验和20胎儿MRI数据集中,在模拟实验和28-31周的胎龄(GA)范围内的20胎儿MRI数据集中,改善了DSVR与SVR和贴片载体对价值(PVR)方法的改进性能。此外,我们展示了遗传范围20-34周的100胎体病例的定性评估。

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