Department of Psychology, School of Arts and Social Sciences, City University of London, London, UK.
Department of Neuroimaging, Institute of Psychiatry, Psychology and Neuroscience, King's College London, London, UK.
Hum Brain Mapp. 2022 Jan;43(1):452-469. doi: 10.1002/hbm.25320. Epub 2021 Feb 11.
Age has a major effect on brain volume. However, the normative studies available are constrained by small sample sizes, restricted age coverage and significant methodological variability. These limitations introduce inconsistencies and may obscure or distort the lifespan trajectories of brain morphometry. In response, we capitalized on the resources of the Enhancing Neuroimaging Genetics through Meta-Analysis (ENIGMA) Consortium to examine age-related trajectories inferred from cross-sectional measures of the ventricles, the basal ganglia (caudate, putamen, pallidum, and nucleus accumbens), the thalamus, hippocampus and amygdala using magnetic resonance imaging data obtained from 18,605 individuals aged 3-90 years. All subcortical structure volumes were at their maximum value early in life. The volume of the basal ganglia showed a monotonic negative association with age thereafter; there was no significant association between age and the volumes of the thalamus, amygdala and the hippocampus (with some degree of decline in thalamus) until the sixth decade of life after which they also showed a steep negative association with age. The lateral ventricles showed continuous enlargement throughout the lifespan. Age was positively associated with inter-individual variability in the hippocampus and amygdala and the lateral ventricles. These results were robust to potential confounders and could be used to examine the functional significance of deviations from typical age-related morphometric patterns.
年龄对脑容量有重大影响。然而,现有的规范研究受到样本量小、年龄范围有限和方法学差异大的限制。这些局限性导致结果不一致,可能掩盖或扭曲脑形态测量的寿命轨迹。为了解决这个问题,我们利用增强神经影像遗传学通过荟萃分析(ENIGMA)联盟的资源,使用从 18605 名 3-90 岁个体的磁共振成像数据,检查从脑室、基底节(尾状核、壳核、苍白球和伏隔核)、丘脑、海马体和杏仁核的横断面测量中推断出的与年龄相关的轨迹。所有皮质下结构的体积在生命早期达到最大值。此后,基底节的体积与年龄呈单调负相关;丘脑、杏仁核和海马体的体积与年龄没有显著相关性(在生命的第六个十年之前,丘脑体积有一定程度的下降),此后它们也与年龄呈陡峭的负相关。侧脑室在整个生命周期中持续扩大。年龄与海马体、杏仁核和侧脑室的个体间变异性呈正相关。这些结果在潜在混杂因素的情况下仍然稳健,可以用于研究偏离典型年龄相关形态测量模式的功能意义。