Andersson Jesper L R, Sotiropoulos Stamatios N
FMRIB Centre, Oxford, United Kingdom.
FMRIB Centre, Oxford, United Kingdom.
Neuroimage. 2016 Jan 15;125:1063-1078. doi: 10.1016/j.neuroimage.2015.10.019. Epub 2015 Oct 20.
In this paper we describe a method for retrospective estimation and correction of eddy current (EC)-induced distortions and subject movement in diffusion imaging. In addition a susceptibility-induced field can be supplied and will be incorporated into the calculations in a way that accurately reflects that the two fields (susceptibility- and EC-induced) behave differently in the presence of subject movement. The method is based on registering the individual volumes to a model free prediction of what each volume should look like, thereby enabling its use on high b-value data where the contrast is vastly different in different volumes. In addition we show that the linear EC-model commonly used is insufficient for the data used in the present paper (high spatial and angular resolution data acquired with Stejskal-Tanner gradients on a 3T Siemens Verio, a 3T Siemens Connectome Skyra or a 7T Siemens Magnetome scanner) and that a higher order model performs significantly better. The method is already in extensive practical use and is used by four major projects (the WU-UMinn HCP, the MGH HCP, the UK Biobank and the Whitehall studies) to correct for distortions and subject movement.
在本文中,我们描述了一种用于回顾性估计和校正扩散成像中涡流(EC)引起的畸变和受试者运动的方法。此外,可以提供一个由磁化率引起的场,并将其纳入计算中,其方式能够准确反映在受试者运动的情况下这两个场(由磁化率和EC引起的)表现不同。该方法基于将各个体素配准到对每个体素应有的样子的无模型预测上,从而使其能够用于高b值数据,在这些数据中不同体素的对比度差异很大。此外,我们表明常用的线性EC模型不足以处理本文所使用的数据(在3T西门子Verio、3T西门子Connectome Skyra或7T西门子Magnetome扫描仪上使用Stejskal-Tanner梯度采集的高空间和角分辨率数据),而高阶模型的表现则显著更好。该方法已经在广泛的实际应用中使用,并且被四个主要项目(华盛顿大学-明尼苏达大学人类连接组计划、麻省总医院人类连接组计划、英国生物银行和白厅研究)用于校正畸变和受试者运动。