van der Zwaag Wietske, Schäfer Andreas, Marques José P, Turner Robert, Trampel Robert
Centre d'Imagerie Biomédicale, Ecole Polytechnique Fédérale de Lausanne, Switzerland.
Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.
NMR Biomed. 2016 Sep;29(9):1274-88. doi: 10.1002/nbm.3275. Epub 2015 Mar 12.
The increased availability of ultra-high-field (UHF) MRI has led to its application in a wide range of neuroimaging studies, which are showing promise in transforming fundamental approaches to human neuroscience. This review presents recent work on structural and functional brain imaging, at 7 T and higher field strengths. After a short outline of the effects of high field strength on MR images, the rapidly expanding literature on UHF applications of blood-oxygenation-level-dependent-based functional MRI is reviewed. Structural imaging is then discussed, divided into sections on imaging weighted by relaxation time, including quantitative relaxation time mapping, phase imaging and quantitative susceptibility mapping, angiography, diffusion-weighted imaging, and finally magnetization-transfer imaging. The final section discusses studies using the high spatial resolution available at UHF to identify explicit links between structure and function. Copyright © 2015 John Wiley & Sons, Ltd.
超高场(UHF)磁共振成像(MRI)设备的日益普及,使其在广泛的神经影像学研究中得到应用,这些研究有望改变人类神经科学的基础研究方法。本综述介绍了在7T及更高场强下进行的脑结构和功能成像的最新研究成果。在简要概述高场强对磁共振图像的影响之后,本文回顾了基于血氧水平依赖性功能磁共振成像(BOLD-fMRI)的超高场应用方面迅速增长的文献。接着讨论了结构成像,分为基于弛豫时间加权成像的部分,包括定量弛豫时间映射、相位成像和定量磁化率映射、血管造影、扩散加权成像,最后是磁化传递成像。最后一部分讨论了利用超高场可用的高空间分辨率来确定结构与功能之间明确联系的研究。版权所有© 2015约翰威立父子有限公司。