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Optimization of white matter fiber tractography with diffusional kurtosis imaging

机译:扩散峰度成像优化白质纤维束成像

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Diffusional kurtosis imaging (DKI) is a clinically feasible diffusion MRI technique for white matter (WM) fiber tractography (FT) with the ability to directly resolve intra-voxel crossing fibers by means of the kurtosis diffusion orientation distribution function (dODF). Here we expand on previous work by exploring properties of the kurtosis dODF and their subsequent effects on WM FT for in vivo human data. For comparison, the results are contrasted with fiber bundle orientation estimates provided by the diffusion tensor, which is the primary quantity obtained from diffusion tensor imaging. We also outline an efficient method for performing DKI-based WM FT that can substantially decrease the computational requirements. The recommended method for implementing the kurtosis ODF is demonstrated to optimize the reproducibility and sensitivity of DKI for detecting crossing fibers while reducing the occurrence of non-physically-meaningful, negative values in the kurtosis dODF approximation. In addition, DKI-based WM FT is illustrated for different protocols differing in image acquisition times from 48 to 5.3 min. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:扩散峰度成像(DKI)是一种用于白质(WM)纤维束成像(FT)的临床可行的扩散MRI技术,具有借助峰度扩散取向分布函数(dODF)直接分解体素交叉纤维的能力。在这里,我们通过探索峰度dODF的特性及其对体内人体数据的WM FT的后续影响,扩展了以前的工作。为了进行比较,将结果与由扩散张量提供的纤维束取向估计进行对比,扩散张量是从扩散张量成像获得的主要量。我们还概述了一种用于执行基于DKI的WM FT的有效方法,该方法可以大大降低计算要求。已证明实现峰度ODF的推荐方法可优化DKI的可重复性和灵敏度,以检测交叉纤维,同时减少峰度dODF近似值中非具有物理意义的负值的发生。此外,针对不同协议的基于DKI的WM FT,其图像获取时间从48分钟到5.3分钟不等。版权所有(C)2015 John Wiley&Sons,Ltd.

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