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Liver DCE-MRI Registration in Manifold Space Based on Robust Principal Component Analysis

机译:基于鲁棒主成分分析的流形空间肝脏DCE-MRI配准

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摘要

A technical challenge in the registration of dynamic contrast-enhanced magnetic resonance (DCE-MR) imaging in the liver is intensity variations caused by contrast agents. Such variations lead to the failure of the traditional intensity-based registration method. To address this problem, a manifold-based registration framework for liver DCE-MR time series is proposed. We assume that liver DCE-MR time series are located on a low-dimensional manifold and determine intrinsic similarities between frames. Based on the obtained manifold, the large deformation of two dissimilar images can be decomposed into a series of small deformations between adjacent images on the manifold through gradual deformation of each frame to the template image along the geodesic path. Furthermore, manifold construction is important in automating the selection of the template image, which is an approximation of the geodesic mean. Robust principal component analysis is performed to separate motion components from intensity changes induced by contrast agents; the components caused by motion are used to guide registration in eliminating the effect of contrast enhancement. Visual inspection and quantitative assessment are further performed on clinical dataset registration. Experiments show that the proposed method effectively reduces movements while preserving the topology of contrast-enhancing structures and provides improved registration performance.
机译:肝脏中动态对比增强磁共振(DCE-MR)成像配准中的技术挑战是由对比剂引起的强度变化。这样的变化导致传统的基于强度的配准方法的失败。为了解决这个问题,提出了针对肝脏DCE-MR时间序列的基于流形的注册框架。我们假设肝脏DCE-MR时间序列位于低维流形上,并确定帧之间的内在相似性。基于获得的流形,可以通过沿测地线将每个帧逐渐变形为模板图像,将两个不同图像的大变形分解为流形上相邻图像之间的一系列小变形。此外,歧管构造对于自动选择模板图像非常重要,模板图像是测地线平均值的近似值。进行稳健的主成分分析,以将运动成分与造影剂引起的强度变化区分开;运动引起的分量用于指导配准,以消除对比度增强的影响。在临床数据集注册上进一步执行视觉检查和定量评估。实验表明,该方法在保持对比度增强结构拓扑的同时,有效地减少了运动,并提高了配准性能。

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