Department of Neurology, Goethe University, Frankfurt am Main, Germany.
Brain Imaging Center, Goethe University, Frankfurt am Main, Germany.
Aging (Albany NY). 2020 Aug 27;12(16):16195-16210. doi: 10.18632/aging.103629.
Understanding the microstructural changes related to physiological aging of the cerebral cortex is pivotal to differentiate healthy aging from neurodegenerative processes. The aim of this study was to investigate the age-related global changes of cortical microstructure and regional patterns using multiparametric quantitative MRI (qMRI) in healthy subjects with a wide age range. 40 healthy participants (age range: 2 to 8 decade) underwent high-resolution qMRI including T1, PD as well as T2, T2* and T2' mapping at 3 Tesla. Cortical reconstruction was performed with the FreeSurfer toolbox, followed by tests for correlations between qMRI parameters and age. Cortical T1 values were negatively correlated with age (p=0.007) and there was a widespread age-related decrease of cortical T1 involving the frontal and the parietotemporal cortex, while T2 was correlated positively with age, both in frontoparietal areas and globally (p=0.004). Cortical T2' values showed the most widespread associations across the cortex and strongest correlation with age (r= -0.724, p=0.0001). PD and T2* did not correlate with age. Multiparametric qMRI allows to characterize cortical aging, unveiling parameter-specific patterns. Quantitative T2' mapping seems to be a promising imaging biomarker of cortical age-related changes, suggesting that global cortical iron deposition is a prominent process in healthy aging.
了解与大脑皮层生理性衰老相关的微观结构变化对于将健康衰老与神经退行性过程区分开来至关重要。本研究旨在使用多参数定量 MRI(qMRI)研究广泛年龄范围内健康受试者的皮质微观结构和区域模式的年龄相关性全局变化。40 名健康参与者(年龄范围:2 至 8 个十年)接受了高分辨率 qMRI 检查,包括 T1、PD 以及 T2、T2* 和 T2' 映射,均在 3 Tesla 下进行。使用 FreeSurfer 工具箱进行皮质重建,然后测试 qMRI 参数与年龄之间的相关性。皮质 T1 值与年龄呈负相关(p=0.007),并且存在广泛的与年龄相关的皮质 T1 减少,涉及额极和顶颞叶皮质,而 T2 与年龄呈正相关,在额顶叶区域和整体上均呈正相关(p=0.004)。皮质 T2' 值在整个皮质中具有最广泛的相关性,与年龄的相关性最强(r= -0.724,p=0.0001)。PD 和 T2* 与年龄无关。多参数 qMRI 可用于描述皮质衰老,揭示特定参数的模式。定量 T2' 映射似乎是皮质年龄相关性变化的有前途的成像生物标志物,表明全局皮质铁沉积是健康衰老的一个突出过程。