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Enhancing the Multivariate Signal of 15O water PET Studies With a New Non-Linear Neuroanatomical Registration Algorithm

机译:用一种新的非线性神经解剖配准算法增强15O水pET研究的多元信号

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摘要

This paper addresses the problem of neuro-anatomical registration across individuals for functional [15O]water PET activation studies. A new algorithm for 3D non-linear structural registration (warping) of MR scans is presented. The method performs a hierarchically scaled search for a displacement field maximizing one of several voxel similarity measures derived from the two dimensional histogram of matched image intensities, subject to a regularizer that ensures smoothness of the displacement field. The effect of the non-line ar structural registration is studied when it is computed on anatomical MR scans and applied to co-registered [15O] water PET scans from the same subjects; in this experiment a study of visually guided saccadic eye movements. The performance of the non-linear warp is evaluated using multivariate functional signal and noise measures. These measures prove to be useful for comparing different inter-subject registration approaches, e.g. affine versus non-linear. A comparison of 12-parameter affine registration versus non-linear registration demonstrates that the proposed non-linear method increases the number of voxels retained in the cross-subject mask. We demonstrate that improved structural registration may result in an improved multivariate functional signal-tonoise ratio. Furthermore registration of PET scans using the 12-parameter affine transformations that align the co-registered MR images does not improve registration compared to 12-parameter affine alignment of the PET images directly.
机译:本文讨论了功能性[15O]水PET活化研究中各个人的神经解剖学配准问题。提出了一种用于MR扫描的3D非线性结构配准(翘曲)的新算法。该方法对位移场进行分层缩放搜索,该位移场使从匹配图像强度的二维直方图得出的几种体素相似性度量之一最大化,并且要使用确保位移场平滑的规则化器。在解剖MR扫描上计算非线性ar结构配准的效果,并将其应用于来自同一受试者的共配准[15O]水PET扫描时,将对其进行研究。在该实验中,对视觉引导的眼跳运动进行了研究。非线性翘曲的性能是使用多元功能信号和噪声测量来评估的。这些措施被证明对于比较不同的受试者间注册方法是有用的,例如。仿射与非线性。 12参数仿射配准与非线性配准的比较表明,所提出的非线性方法会增加保留在交叉对象蒙版中的体素数量。我们证明,改进的结构配准可能会导致改进的多元功能信号音比。此外,与直接对准PET图像的12参数仿射对准相比,使用对准共同对准的MR图像的12参数仿射变换对PET扫描进行对准不会改善对准。

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