Institute of Medical Device and Imaging, National Taiwan University College of Medicine, Taipei, Taiwan; Molecular Imaging Center, National Taiwan University, Taipei, Taiwan.
Acroviz Technology Inc, Taipei, Taiwan.
Neurobiol Aging. 2021 Feb;98:160-172. doi: 10.1016/j.neurobiolaging.2020.10.006. Epub 2020 Nov 13.
White matter fiber tracts demonstrate heterogeneous vulnerabilities to aging effects. Here, we estimated age-related differences in tract properties using UK Biobank diffusion magnetic resonance imaging data of 7167 47- to 76-year-old neurologically healthy people (3368 men and 3799 women). Tract properties in terms of generalized fractional anisotropy, axial diffusivity, radial diffusivity, and mean diffusivity were sampled on 76 fiber tracts; for each tract, age-related differences were estimated by fitting these indices against age in a linear model. This cross-sectional study demonstrated 4 age-difference patterns. The dominant pattern was lower generalized fractional anisotropy and higher axial diffusivity, radial diffusivity, and mean diffusivity with age, constituting 45 of 76 tracts, mostly involving the association, projection, and commissure fibers connecting the prefrontal lobe. The other 3 patterns constituted only 14 tracts, with atypical age differences in diffusion indices, and mainly involved parietal, occipital, and temporal cortices. By analyzing the large volume of diffusion magnetic resonance imaging data available from the UK Biobank, the study has provided a detailed description of heterogeneous age-related differences in tract properties over the whole brain which generally supports the myelodegeneration hypothesis.
白质纤维束表现出对衰老效应的异质性脆弱性。在这里,我们使用英国生物银行的扩散磁共振成像数据估计了 7167 名 47 至 76 岁神经健康个体(3368 名男性和 3799 名女性)的纤维束特性与年龄相关的差异。在 76 条纤维束上采样了广义各向异性分数、轴向扩散系数、径向扩散系数和平均扩散系数的纤维束特性;对于每条纤维束,通过在线性模型中拟合这些指数与年龄来估计与年龄相关的差异。这项横断面研究显示出 4 种年龄差异模式。主要模式是随着年龄的增长,广义各向异性分数降低,轴向扩散系数、径向扩散系数和平均扩散系数升高,76 条纤维束中有 45 条符合这种模式,主要涉及连接前额叶的联合、投射和连合纤维。其余 3 种模式仅占 14 条纤维束,扩散指数的年龄差异不典型,主要涉及顶叶、枕叶和颞叶皮质。通过分析英国生物银行提供的大量扩散磁共振成像数据,该研究详细描述了整个大脑中纤维束特性的异质性与年龄相关的差异,这总体上支持了髓鞘退化假说。