School of Behavioral and Brain Sciences, University of Texas at Dallas, Dallas, TX 75235, USA.
Neuroimage. 2011 Jan 15;54(2):750-9. doi: 10.1016/j.neuroimage.2010.09.068. Epub 2010 Oct 20.
Aging affects various structural and metabolic properties of the brain. However, associations among various aspects of brain aging are unclear. Moreover, those properties and associations among them may be modified by age-associated increase in vascular risk. In this study, we measured volume of brain regions that vary in their vulnerability to aging and estimated local iron content via T2* relaxometry. In 113 healthy adults (19-83 years old), we examined prefrontal cortex (PFC), primary visual cortex (VC), hippocampus (HC), entorhinal cortex (EC), caudate nucleus (Cd), and putamen (Pt). In some regions (PFC, VC, Cd, and Pt) age-related differences in iron and volume followed similar patterns. However, in the medial-temporal structures, volume and iron content exhibited different age trajectories. Whereas age-related volume reduction was mild in HC and absent in EC, iron content evidenced significant age-related declines. In hypertensive participants significantly greater iron content was noted in all examined regions. Thus, iron content as measured by T2* may be a sensitive index of regional brain aging and may reveal declines that are more prominent than gross anatomical shrinkage.
衰老是影响大脑结构和代谢特性的各种因素。然而,大脑老化各个方面之间的关联尚不清楚。此外,这些特性及其之间的关联可能会被与年龄相关的血管风险增加所改变。在这项研究中,我们通过 T2弛豫测量法测量了大脑区域的体积,这些区域在衰老方面存在差异,并估计了局部铁含量。在 113 名健康成年人(19-83 岁)中,我们检查了前额叶皮层(PFC)、初级视觉皮层(VC)、海马体(HC)、内嗅皮层(EC)、尾状核(Cd)和壳核(Pt)。在一些区域(PFC、VC、Cd 和 Pt)中,铁和体积的年龄相关性差异遵循相似的模式。然而,在中颞叶结构中,体积和铁含量表现出不同的年龄轨迹。虽然在 HC 中,与年龄相关的体积减少是轻微的,而在 EC 中则不存在,但铁含量则表现出显著的年龄相关性下降。在高血压参与者中,所有检查区域的铁含量明显更高。因此,通过 T2测量的铁含量可能是区域性大脑老化的敏感指标,并且可能揭示比大体解剖学萎缩更为明显的衰退。