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Brain Aging: Uncovering Cortical Characteristics of Healthy Aging in Young Adults

机译:脑衰老:揭示年轻人健康衰老的皮质特征

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摘要

Despite extensive research in the field of aging neuroscience, it still remains unclear whether age related cortical changes can be detected in different functional networks of younger adults and whether these networks respond identically to healthy aging. We collected high-resolution brain anatomical data from 56 young healthy adults (mean age = 30.8 ± 8.1 years, 29 males). We performed whole brain parcellation into seven functional networks, including visual, somatomotor, dorsal attention, ventral attention, limbic, frontoparietal and default mode networks. We estimated intracranial volume (ICV) and averaged cortical thickness (CT), cortical surface area (CSA) and cortical volume (CV) over each hemisphere as well as for each network. Averaged cortical measures over each hemisphere, especially CT and CV, were significantly lower in older individuals compared to younger ones (one-way ANOVA, p < 0.05, corrected for multiple comparisons). There were negative correlations between age and averaged CT and CV over each hemisphere (p < 0.05, corrected for multiple comparisons) as well as between age and ICV (p = 0.05). Network level analysis showed that age was negatively correlated with CT for all functional networks (p < 0.05, corrected for multiple comparisons), apart from the limbic network. While age was unrelated to CSA, it was negatively correlated with CV across several functional networks (p < 0.05, corrected for multiple comparisons). We also showed positive associations between CV and CT and between CV and CSA for all networks (p < 0.05, corrected for multiple comparisons). We interpret the lack of association between age and CT of the limbic network as evidence that the limbic system may be particularly resistant to age-related declines during this period of life, whereas the significant age-related declines in averaged CT over each hemisphere as well as in all other six networks suggests that CT may serve as a reliable biomarker to capture the effect of normal aging. Due to the simultaneous dependence of CV on CT and CSA, CV was unable to identify such effects of normal aging consistently for the other six networks, but there were negative associations observed between age and averaged CV over each hemisphere as well as between age and ICV. Our findings suggest that the identification of early cortical changes within various functional networks during normal aging might be useful for predicting the effect of aging on the efficiency of functional performance even during early adulthood.
机译:尽管在衰老神经科学领域进行了广泛的研究,但仍不清楚是否可以在不同的年轻人功能网络中检测到与年龄相关的皮层变化,以及这些网络是否对健康衰老具有相同的反应。我们从56位年轻健康成年人(平均年龄= 30.8±8.1岁,29位男性)中收集了高分辨率的大脑解剖数据。我们将全脑分割成七个功能网络,包括视觉,躯体运动,背侧注意,腹侧注意,边缘,额顶和默认模式网络。我们估算了每个半球以及每个网络的颅内体积(ICV)和平均皮质厚度(CT),皮质表面积(CSA)和皮质体积(CV)。与年轻人相比,老年人中每个半球的平均皮质测量值,尤其是CT和CV显着降低(单向方差分析,p <0.05,经多次比较校正)。每个半球的年龄与平均CT和CV之间呈负相关(p <0.05,经多次比较校正),年龄与ICV之间也呈负相关(p = 0.05)。网络水平分析表明,除边缘网络外,所有功能网络的年龄均与CT呈负相关(p <0.05,经多次比较校正)。年龄与CSA无关,但在多个功能网络中与CV呈负相关(p <0.05,经多次比较校正)。我们还显示了所有网络的CV与CT之间以及CV与CSA之间呈正相关(p <0.05,已通过多次比较进行校正)。我们认为年龄与边缘网络的CT之间缺乏关联是证据,表明边缘系统在这一生期间可能对与年龄相关的下降特别有抵抗力,而每个半球的平均CT显着下降也与年龄相关正如在所有其他六个网络中所暗示的那样,CT可以充当捕获正常衰老影响的可靠生物标记。由于CV同时依赖于CT和CSA,因此CV无法始终如一地识别出其他六个网络的正常衰老效应,但是在每个半球的年龄与平均CV以及年龄与ICV之间观察到负相关。我们的研究结果表明,即使在成年早期,正常衰老过程中各种功能网络内早期皮质变化的识别也可能有助于预测衰老对功能表现效率的影响。

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