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白质完整性、纤维数量及其他谬论:弥散磁共振成像的注意事项。

White matter integrity, fiber count, and other fallacies: the do's and don'ts of diffusion MRI.

机构信息

Cardiff University Brain Research Imaging Centre (CUBRIC), School of Psychology, Cardiff University, Park Place, Cardiff, CF10 3AT, UK.

出版信息

Neuroimage. 2013 Jun;73:239-54. doi: 10.1016/j.neuroimage.2012.06.081. Epub 2012 Jul 23.

Abstract

Diffusion-weighted MRI (DW-MRI) has been increasingly used in imaging neuroscience over the last decade. An early form of this technique, diffusion tensor imaging (DTI) was rapidly implemented by major MRI scanner companies as a scanner selling point. Due to the ease of use of such implementations, and the plausibility of some of their results, DTI was leapt on by imaging neuroscientists who saw it as a powerful and unique new tool for exploring the structural connectivity of human brain. However, DTI is a rather approximate technique, and its results have frequently been given implausible interpretations that have escaped proper critique and have appeared misleadingly in journals of high reputation. In order to encourage the use of improved DW-MRI methods, which have a better chance of characterizing the actual fiber structure of white matter, and to warn against the misuse and misinterpretation of DTI, we review the physics of DW-MRI, indicate currently preferred methodology, and explain the limits of interpretation of its results. We conclude with a list of 'Do's and Don'ts' which define good practice in this expanding area of imaging neuroscience.

摘要

在过去的十年中,扩散加权磁共振成像(DW-MRI)在神经影像学中的应用越来越广泛。该技术的早期形式——弥散张量成像(DTI)很快被主要的磁共振成像扫描仪公司作为扫描仪的卖点实施。由于这些应用程序易于使用,并且其结果具有一定的合理性,因此成像神经科学家们将其视为探索人类大脑结构连接的强大而独特的新工具。然而,DTI 是一种相当近似的技术,其结果经常被赋予不合理的解释,这些解释逃脱了适当的批评,并在声誉很高的期刊中出现误导性。为了鼓励使用更有可能描述白质实际纤维结构的改进 DW-MRI 方法,并防止 DTI 的滥用和误解,我们回顾了 DW-MRI 的物理学,指出了目前首选的方法,并解释了其结果解释的局限性。最后,我们列出了一份“应该做和不应该做”的清单,定义了这一不断发展的成像神经科学领域的良好实践。

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