GIGA-Institute, CRC-In Vivo Imaging Unit, Bâtiment B30, Université de Liège, 4000, Liège, Belgium.
Faculty of Health, Medicine and Life Sciences, School for Mental Health and Neuroscience, Alzheimer Centre Limburg, Maastricht University, Maastricht, The Netherlands.
Sci Rep. 2023 Nov 27;13(1):20873. doi: 10.1038/s41598-023-47753-x.
The regional integrity of brain subcortical structures has been implicated in sleep-wake regulation, however, their associations with sleep parameters remain largely unexplored. Here, we assessed association between quantitative Magnetic Resonance Imaging (qMRI)-derived marker of the myelin content of the brainstem and the variability in the sleep electrophysiology in a large sample of 18-to-31 years healthy young men (N = 321; ~ 22 years). Separate Generalized Additive Model for Location, Scale and Shape (GAMLSS) revealed that sleep onset latency and slow wave energy were significantly associated with MTsat estimates in the brainstem (p ≤ 0.03), with overall higher MTsat value associated with values reflecting better sleep quality. The association changed with age, however (MTsat-by-age interaction-p ≤ 0.03), with higher MTsat value linked to better values in the two sleep metrics in the younger individuals of our sample aged ~ 18 to 20 years. Similar associations were detected across different parts of the brainstem (p ≤ 0.03), suggesting that the overall maturation and integrity of the brainstem was associated with both sleep metrics. Our results suggest that myelination of the brainstem nuclei essential to regulation of sleep is associated with inter-individual differences in sleep characteristics during early adulthood. They may have implications for sleep disorders or neurological diseases related to myelin.
脑皮质下结构的区域完整性与睡眠-觉醒调节有关,但它们与睡眠参数的关系在很大程度上尚未得到探索。在这里,我们评估了在大量 18 至 31 岁健康年轻男性(N = 321;~22 岁)中,基于定量磁共振成像(qMRI)的脑干部位髓鞘含量标记物与睡眠电生理学变异性之间的关联。单独的广义加性模型用于位置、比例和形状(GAMLSS)显示,睡眠潜伏期和慢波能量与脑干部位的 MTsat 估计值显著相关(p≤0.03),总体上更高的 MTsat 值与反映更好的睡眠质量的数值相关。然而,这种关联随着年龄的变化而变化(MTsat-年龄交互作用-p≤0.03),在我们样本中年龄约为 18 至 20 岁的年轻个体中,更高的 MTsat 值与这两个睡眠指标的更好值相关。在脑干部位的不同部位也检测到了类似的关联(p≤0.03),这表明脑干部位的整体成熟度和完整性与这两个睡眠指标都有关。我们的研究结果表明,对睡眠调节至关重要的脑干部位核的髓鞘形成与成年早期个体的睡眠特征的个体差异有关。它们可能对与髓鞘有关的睡眠障碍或神经疾病有影响。