Cercignani Mara, Giulietti Giovanni, Dowell Nick G, Gabel Matt, Broad Rebecca, Leigh P Nigel, Harrison Neil A, Bozzali Marco
Department of Neuroscience, Clinical Imaging Sciences Centre, Brighton and Sussex Medical School, University of Sussex, Brighton, East Sussex, UK; Neuroimaging Laboratory, Santa Lucia Foundation, Rome, Italy.
Neuroimaging Laboratory, Santa Lucia Foundation, Rome, Italy.
Neurobiol Aging. 2017 Jan;49:109-118. doi: 10.1016/j.neurobiolaging.2016.09.016. Epub 2016 Sep 30.
The g-ratio, equal to the ratio of the inner-to-outer diameter of a myelinated axon, is associated with the speed of conduction, and thus reflects axonal function and integrity. It is now possible to estimate an "aggregate" g-ratio in vivo using MRI. The aim of this study was to assess the variation of the MRI-derived fiber g-ratio in the brain of healthy individuals, and to characterize its variation across the lifespan. Thirty-eight healthy participants, aged between 20 and 76, were recruited. Whole-brain g-ratio maps were computed and analyzed voxel-wise. Median tract g-ratio values were also extracted. No significant effect of gender was found, whereas age was found to be significantly associated with the g-ratio within the white matter. The tract-specific analysis showed this relationship to follow a nearly-linear increase, although the slope appears to slow down slightly after the 6th decade of life. The most likely interpretation is a subtle but consistent reduction in myelin throughout adulthood, with the density of axons beginning to decrease between the 4th and 5th decade.
g值等于有髓鞘轴突的内径与外径之比,它与传导速度相关,因此反映了轴突的功能和完整性。现在可以使用磁共振成像(MRI)在体内估计“总体”g值。本研究的目的是评估健康个体大脑中MRI衍生的纤维g值的变化,并描述其在整个生命周期中的变化特征。招募了38名年龄在20至76岁之间的健康参与者。计算并逐体素分析全脑g值图。还提取了束状g值的中位数。未发现性别有显著影响,而年龄与白质内的g值显著相关。束状特异性分析表明这种关系呈近乎线性增加,尽管在生命的第六个十年后斜率似乎略有放缓。最可能的解释是整个成年期髓鞘有细微但持续的减少,轴突密度在第四和第五个十年之间开始下降。