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Evaluation of Field Map and Nonlinear Registration Methods for Correction of Susceptibility Artifacts in Diffusion MRI

机译:场图和非线性配准方法对弥散MRI敏感性伪像校正的评估

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摘要

Correction of echo planar imaging (EPI)-induced distortions (called “unwarping”) improves anatomical fidelity for diffusion magnetic resonance imaging (MRI) and functional imaging investigations. Commonly used unwarping methods require the acquisition of supplementary images during the scanning session. Alternatively, distortions can be corrected by nonlinear registration to a non-EPI acquired structural image. In this study, we compared reliability using two methods of unwarping: (1) nonlinear registration to a structural image using symmetric normalization (SyN) implemented in Advanced Normalization Tools (ANTs); and (2) unwarping using an acquired field map. We performed this comparison in two different test-retest data sets acquired at differing sites (N = 39 and N = 32). In both data sets, nonlinear registration provided higher test-retest reliability of the output fractional anisotropy (FA) maps than field map-based unwarping, even when accounting for the effect of interpolation on the smoothness of the images. In general, field map-based unwarping was preferable if and only if the field maps were acquired optimally.
机译:校正回波平面成像(EPI)引起的畸变(称为“不变形”)可改善扩散磁共振成像(MRI)和功能成像研究的解剖学逼真度。常用的不变形方法需要在扫描过程中获取补充图像。可替代地,可以通过非线性配准到非EPI获取的结构图像来校正畸变。在这项研究中,我们比较了使用两种不变形方法的可靠性:(1)使用高级归一化工具(ANTs)中实现的对称归一化(SyN)将非线性配准与结构图像进行比较; (2)使用获取的场图进行变形。我们在不同站点(N = 39和N = 32)获得的两个不同的重测数据集中进行了此比较。在两个数据集中,即使考虑到插值对图像平滑度的影响,非线性配准也能提供比基于场图的不翘曲更高的输出分数各向异性(FA)图重测可靠性。通常,当且仅当以最佳方式获取场图时,才优选基于场图的不变形。

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