Center for Biomedical Imaging, Department of Radiology, New York University School of Medicine, New York, NY, USA.
Center for Biomedical Imaging, Department of Radiology, New York University School of Medicine, New York, NY, USA.
Neuroimage. 2018 Nov 15;182:39-61. doi: 10.1016/j.neuroimage.2018.06.046. Epub 2018 Jun 18.
Phantoms, both numerical (software) and physical (hardware), can serve as a gold standard for the validation of MRI methods probing the brain microstructure. This review aims to provide guidelines on how to build, implement, or choose the right phantom for a particular application, along with an overview of the current state-of-the-art of phantoms dedicated to study brain microstructure with MRI. For physical phantoms, we discuss the essential requirements and relevant characteristics of both the (NMR visible) liquid and (NMR invisible) phantom materials that induce relevant microstructural features detectable via MRI, based on diffusion, intra-voxel incoherent motion, magnetization transfer or magnetic susceptibility weighted contrast. In particular, for diffusion MRI, many useful phantoms have been proposed, ranging from simple liquids to advanced biomimetic phantoms consisting of hollow or plain microfibers and capillaries. For numerical phantoms, the focus is on Monte Carlo simulations of random walk, for which the basic principles, along with useful criteria to check and potential pitfalls are reviewed, in addition to a literature overview highlighting recent advances. While many phantoms exist already, the current review aims to stimulate further research in the field and to address remaining needs.
幻像,包括数字(软件)和物理(硬件),可以作为验证探测大脑微观结构的 MRI 方法的金标准。本综述旨在提供有关如何构建、实施或选择适合特定应用的正确幻像的指南,以及当前专门用于使用 MRI 研究大脑微观结构的幻像的最新技术概述。对于物理幻像,我们讨论了基于扩散、体素内非相干运动、磁化转移或磁化率加权对比来诱导可通过 MRI 检测的相关微观结构特征的(NMR 可见)液体和(NMR 不可见)幻像材料的基本要求和相关特性。特别是对于扩散 MRI,已经提出了许多有用的幻像,从简单的液体到由空心或普通微纤维和毛细血管组成的先进仿生幻像。对于数字幻像,重点是随机游走的蒙特卡罗模拟,除了概述最近进展的文献综述外,还回顾了基本原理、有用的检查标准和潜在陷阱。虽然已经存在许多幻像,但本综述旨在激发该领域的进一步研究并解决剩余需求。