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基于定量磁共振神经影像学的白质结构总 g 比值的年龄相关性评估。

Age-related estimates of aggregate g-ratio of white matter structures assessed using quantitative magnetic resonance neuroimaging.

机构信息

Laboratory of Clinical Investigation, National Institute on Aging, National Institutes of Health, Baltimore, Maryland, USA.

Clinical Research Core, Office of the Scientific Director, National Institute on Aging, National Institutes of Health, Baltimore, Maryland, USA.

出版信息

Hum Brain Mapp. 2021 Jun 1;42(8):2362-2373. doi: 10.1002/hbm.25372. Epub 2021 Feb 17.

Abstract

The g-ratio, defined as the inner-to-outer diameter of a myelinated axon, is associated with the speed of nerve impulse conduction, and represents an index of axonal myelination and integrity. It has been shown to be a sensitive and specific biomarker of neurodevelopment and neurodegeneration. However, there have been very few magnetic resonance imaging studies of the g-ratio in the context of normative aging; characterizing regional and time-dependent cerebral changes in g-ratio in cognitively normal subjects will be a crucial step in differentiating normal from abnormal microstructural alterations. In the current study, we investigated age-related differences in aggregate g-ratio, that is, g-ratio averaged over all fibers within regions of interest, in several white matter regions in a cohort of 52 cognitively unimpaired participants ranging in age from 21 to 84 years. We found a quadratic, U-shaped, relationship between aggregate g-ratio and age in most cerebral regions investigated, suggesting myelin maturation until middle age followed by a decrease at older ages. As expected, we observed that these age-related differences vary across different brain regions, with the frontal lobes and parietal lobes exhibiting slightly earlier ages of minimum aggregate g-ratio as compared to more posterior structures such as the occipital lobes and temporal lobes; this agrees with the retrogenesis paradigm. Our results provide evidence for a nonlinear association between age and aggregate g-ratio in a sample of adults from a highly controlled population. Finally, sex differences in aggregate g-ratio were observed in several cerebral regions, with women exhibiting overall lower values as compared to men; this likely reflects the greater myelin content in women's brain, in agreement with recent investigations.

摘要

g-ratio 定义为有髓轴突的内-外径比,与神经冲动传导速度相关,是轴突髓鞘化和完整性的指标。它已被证明是神经发育和神经退行性变的敏感和特异性生物标志物。然而,在正常衰老背景下,关于 g-ratio 的磁共振成像研究非常少;在认知正常的受试者中,描述 g-ratio 的区域和时间依赖性脑变化将是区分正常和异常微观结构改变的关键步骤。在当前研究中,我们在一个由 52 名认知正常的参与者组成的队列中,研究了几个白质区域的 g-ratio 总合(即,对感兴趣区域内的所有纤维的 g-ratio 进行平均)与年龄的相关性。我们发现,在大多数研究的大脑区域中,g-ratio 总合与年龄之间存在二次、U 形的关系,这表明髓鞘成熟直到中年,然后在老年时减少。正如预期的那样,我们观察到这些与年龄相关的差异在不同的大脑区域之间存在差异,与后部结构(如枕叶和颞叶)相比,额叶和顶叶的 g-ratio 总合的最小年龄稍早;这与逆行发育范式一致。我们的研究结果为在一个高度受控的人群样本中,年龄和 g-ratio 总合之间的非线性关联提供了证据。最后,在几个大脑区域观察到 g-ratio 总合的性别差异,女性的总合值总体上低于男性;这可能反映了女性大脑中的髓鞘含量更高,与最近的研究结果一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf23/8090765/31e265518252/HBM-42-2362-g007.jpg

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