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通过仿射全脑配准校正涡流和运动效应:三维变形评估及与分片校正的比较。

Correcting eddy current and motion effects by affine whole-brain registrations: evaluation of three-dimensional distortions and comparison with slicewise correction.

机构信息

Department of Neurology, University of Münster, Albert-Schweitzer-Straße 33, D-48129 Münster, Germany.

出版信息

Magn Reson Med. 2010 Oct;64(4):1047-56. doi: 10.1002/mrm.22501.

Abstract

Eddy-current (EC) and motion effects in diffusion-tensor imaging (DTI) bias the estimation of quantitative diffusion indices, such as the fractional anisotropy. Both effects can be retrospectively corrected by registering the strongly distorted diffusion-weighted images to less-distorted T2-weighted images acquired without diffusion weighting. Two different affine spatial transformations are usually employed for this correction: slicewise and whole-brain transformations. However, a relation between estimated transformation parameters and EC distortions has not been established yet for the latter approach. In this study, a novel diffusion-gradient-direction-independent estimation of the EC field is proposed based solely on affine whole-brain registration parameters. Using this model, it is demonstrated that a more distinct evaluation of the whole-brain EC effects is possible if the through-plane distortion was considered in addition to the well-known in-plane distortions. Moreover, a comparison of different whole-brain registrations relative to a slicewise approach is performed, in terms of the relative tensor error. Our findings suggest that for appropriate intersubject comparison of DTI data, a whole-brain registration containing nine affine parameters provides comparable performance (between 0 and 3%) to slicewise methods and can be performed in a fraction of the time.

摘要

涡流(EC)和扩散张量成像(DTI)中的运动效应对定量扩散指数(如各向异性分数)的估计产生偏差。这两种效应都可以通过将强烈变形的扩散加权图像与未进行扩散加权的 T2 加权图像进行配准来进行回溯校正。通常使用两种不同的仿射空间变换来进行这种校正:切片变换和全脑变换。然而,对于后一种方法,尚未建立估计变换参数与 EC 变形之间的关系。在这项研究中,基于仅基于仿射全脑配准参数,提出了一种新的扩散梯度方向独立的 EC 场估计方法。使用该模型,如果除了众所周知的平面内变形之外,还考虑了平面外变形,则可以更清晰地评估全脑 EC 效应。此外,根据相对张量误差,相对于切片方法,对不同的全脑配准进行了比较。我们的研究结果表明,对于 DTI 数据的适当受试者间比较,包含九个仿射参数的全脑配准与切片方法的性能相当(在 0 到 3%之间),并且可以在更短的时间内完成。

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