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The Role of Hippocampal Iron Concentration and Hippocampal Volume in Age-Related Differences in Memory

机译:海马铁含量和海马体积在与年龄相关的记忆差异中的作用

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摘要

The goal of this study was to examine the relationships between 2 age-sensitive indices of brain integrity—volume and iron concentration—and the associated age differences in memory performance. In 113 healthy adults (age 19–83 years), we measured the volume and estimated iron concentration in the hippocampus (HC), caudate nucleus (Cd), and primary visual cortex (VC) in vivo with T2* relaxation times, and assessed memory performance with multiple tests. We applied structural equation modeling to evaluate the contribution of individual differences in 2 indices of integrity, volume and T2*, to age-related memory variance. The results show that in healthy adults, age differences in memory can be explained in part by individual differences in HC volume that in turn are associated with differences in HC iron concentration. Lower memory scores were linked to smaller HC and higher HC iron concentration. No such associations were noted for Cd and VC. We conclude that the association between age-related declines in memory and reduced hippocampal volume may reflect the impact of oxidative stress related to increase in free iron concentration. Longitudinal follow-up is needed to test whether altered iron homeostasis in the HC is an early marker for age-related cognitive decline.
机译:这项研究的目的是检验两个年龄敏感的大脑完整性指数(体积和铁浓度)与记忆性能相关的年龄差异之间的关系。在113名健康成年人(年龄19-83岁)中,我们以T2 *放松时间测量了体内海马(HC),尾状核(Cd)和初级视皮层(VC)的体积并估计了铁浓度,并进行了评估多次测试的内存性能。我们应用结构方程模型评估了完整性,数量和T2 *的两个指标中个体差异对与年龄相关的记忆差异的影响。结果表明,在健康的成年人中,记忆力的年龄差异可以部分通过HC量的个体差异来解释,而这些差异又与HC铁浓度的差异有关。较低的记忆力分数与较小的HC和较高的HC铁浓度有关。 Cd和VC没有发现这种关联。我们得出结论,与年龄相关的记忆力下降与海马体积减少之间的关联可能反映了氧化应激与游离铁浓度增加相关的影响。需要进行纵向随访以测试HC中铁稳态的改变是否是与年龄相关的认知能力下降的早期标志。

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