Song Sheng-Kwei, Sun Shu-Wei, Ramsbottom Michael J, Chang Chen, Russell John, Cross Anne H
Department of Chemistry, Washington University, St. Louis, Missouri 63110, USA.
Neuroimage. 2002 Nov;17(3):1429-36. doi: 10.1006/nimg.2002.1267.
Myelin loss and axonal damage are both observed in white matter injuries. Each may have significant impact on the long-term disability of patients. Currently, there does not exist a noninvasive biological marker that enables differentiation between myelin and axonal injury. We describe herein the use of magnetic resonance diffusion tensor imaging (DTI) to quantify the effect of dysmyelination on water directional diffusivities in brains of shiverer mice in vivo. The principal diffusion eigenvalues of eight axonal fiber tracts that can be identified with certainty on DTI maps were measured. The water diffusivity perpendicular to axonal fiber tracts, lambda(perpendicular), was significantly higher in shiverer mice compared with age-matched controls, reflecting the lack of myelin and the increased freedom of cross-fiber diffusion in white matter. The water diffusivity parallel to axonal fiber tracts, lambda(parallel), was not different, which is consistent with the presence of intact axons. It is clear that dysmyelination alone does not impact lambda(parallel). The presence of intact axons in the setting of incomplete myelination was confirmed by electron microscopy. Although further validation is still needed, our finding suggests that changes in lambda(perpendicular) and lambda(parallel) may potentially be used to differentiate myelin loss versus axonal injury.
在白质损伤中可观察到髓鞘脱失和轴突损伤。两者都可能对患者的长期残疾产生重大影响。目前,尚无一种非侵入性生物标志物能够区分髓鞘损伤和轴突损伤。我们在此描述了利用磁共振扩散张量成像(DTI)在体量化脱髓鞘对颤抖小鼠脑内水定向扩散率的影响。测量了在DTI图谱上可明确识别的八条轴突纤维束的主要扩散特征值。与年龄匹配的对照组相比,颤抖小鼠中垂直于轴突纤维束的水扩散率lambda(perpendicular)显著更高,这反映了髓鞘的缺失以及白质中跨纤维扩散自由度的增加。平行于轴突纤维束的水扩散率lambda(parallel)没有差异,这与完整轴突的存在一致。显然,单独的脱髓鞘不会影响lambda(parallel)。电子显微镜证实了在髓鞘形成不完全的情况下存在完整轴突。尽管仍需进一步验证,但我们的发现表明,lambda(perpendicular)和lambda(parallel)的变化可能潜在地用于区分髓鞘脱失与轴突损伤。