Laule Cornelia, Vavasour Irene M, Kolind Shannon H, Li David K B, Traboulsee Tony L, Moore G R Wayne, MacKay Alex L
Department of Radiology, University of British Columbia, Vancouver, BC, V6T 2B5 Canada.
Neurotherapeutics. 2007 Jul;4(3):460-84. doi: 10.1016/j.nurt.2007.05.004.
The ability to measure myelin in vivo has great consequences for furthering our knowledge of normal development, as well as for understanding a wide range of neurological disorders. The following review summarizes the current state of myelin imaging using MR. We consider five MR techniques that have been used to study myelin: 1) conventional MR, 2) MR spectroscopy, 3) diffusion, 4) magnetization transfer, and 5) T2 relaxation. Fundamental studies involving peripheral nerve and MR/histology comparisons have aided in the interpretation and validation of MR data. We highlight a number of important findings related to myelin development, damage, and repair, and we conclude with a critical summary of the current techniques available and their potential to image myelin in vivo.
在体内测量髓磷脂的能力对于增进我们对正常发育的了解以及理解多种神经系统疾病具有重大意义。以下综述总结了使用磁共振成像(MR)进行髓磷脂成像的现状。我们考虑了五种已用于研究髓磷脂的MR技术:1)传统MR,2)磁共振波谱,3)扩散,4)磁化传递,以及5)T2弛豫。涉及周围神经和MR/组织学比较的基础研究有助于对MR数据的解释和验证。我们强调了一些与髓磷脂发育、损伤和修复相关的重要发现,并在最后对当前可用技术及其在体内对髓磷脂成像的潜力进行了批判性总结。