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Education mediates microstructural changes in bilateral hippocampus

机译:教育介导双侧海马的微结构变化

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摘要

Education has been extensively considered an influential factor in the modulation of interindividual differences in cognitive performance and cerebral structure. Consequently, education has been linked to the concept of reserve, which refers to an unspecified aspect of brain structure or function that enables people with more education to cope better with brain pathology or age‐related changes. Nevertheless, the education‐related neural mechanisms involved in reserve are still not completely understood. In this study, 150 healthy subjects were submitted to a comprehensive sociodemographic, clinical and cognitive assessment, and a high‐resolution structural MRI and diffusion tensor imaging scan protocol. Data of micro‐ (mean diffusivity, MD) and macro‐ (volume) structural changes of six bilateral deep gray matter structures (thalamus, caudate nucleus, putamen, hippocampus, amygdala, and globus pallidus) were analyzed with reference to years of formal education. Results show that decreased MD in both left and right hippocampi was the only structural parameter that, along with decreasing age, significantly correlated with higher education. The present findings suggest that the hippocampal formation might be one site where education‐mediated microstructural changes occur, possibly compensating for cognitive decline. Hum Brain Mapp, 2011. © 2010 Wiley‐Liss, Inc.
机译:教育已被广泛认为是调节个人认知能力和大脑结构差异的影响因素。因此,教育与储备金的概念相关联,储备金是指大脑结构或功能的未指定方面,可使受过高等教育的人更好地应对脑部病理或与年龄相关的变化。尽管如此,与储备有关的与教育有关的神经机制仍未完全了解。在这项研究中,对150名健康受试者进行了全面的社会人口统计学,临床和认知评估,以及高分辨率的结构MRI和扩散张量成像扫描方案。参照多年正规教育,分析了六个双边深部灰质结构(丘脑,尾状核,壳状核,海马,杏仁核和苍白球)的微观(平均扩散率,MD)和宏观(体积)结构变化的数据。 。结果表明,左,右海马体中MD的降低是唯一的结构参数,并且随着年龄的增长,与高等教育程度显着相关。目前的发现表明,海马形成可能是受教育介导的微结构改变发生的场所,可能弥补了认知能力下降。嗡嗡的脑图,2011年。©2010 Wiley-Liss,Inc.

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