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Interregional causal influences of brain metabolic activity reveal the spread of aging effects during normal aging

机译:脑代谢活动的区域间因果影响揭示了正常衰老过程中衰老效应的扩散

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摘要

During healthy brain aging, different brain regions show anatomical or functional declines at different rates, and some regions may show compensatory increases in functional activity. However, few studies have explored interregional influences of brain activity during the aging process. We proposed a causality analysis framework combining high dimensionality independent component analysis (ICA), Granger causality, and least absolute shrinkage and selection operator regression on longitudinal brain metabolic activity data measured by Fludeoxyglucose positron emission tomography (FDG–PET). We analyzed FDG–PET images from healthy old subjects, who were scanned for at least five sessions with an averaged intersession interval of 1 year. The longitudinal data were concatenated across subjects to form a time series, and the first‐order autoregressive model was used to measure interregional causality among the independent sources of metabolic activity identified using ICA. Several independent sources with reduced metabolic activity in aging, including the anterior temporal lobe and orbital frontal cortex, demonstrated causal influences over many widespread brain regions. On the other hand, the influenced regions were more distributed, and had smaller age‐related declines or even relatively increased metabolic activity. The current data demonstrated interregional spreads of aging on metabolic activity at the scale of a year, and have identified key brain regions in the aging process that have strong influences over other regions.
机译:在健康的大脑衰老过程中,不同的大脑区域会以不同的速率显示出解剖或功能下降,并且某些区域可能会显示出功能性活动的代偿性增加。但是,很少有研究探讨衰老过程中大脑活动的区域间影响。我们提出了因果关系分析框架,该框架结合了高维独立成分分析(ICA),格兰杰因果关系以及基于Fludeoxyglucose正电子发射断层扫描(FDG–PET)测量的纵向脑代谢活动数据的最小绝对收缩和选择算子回归。我们分析了健康老年受试者的FDG-PET图像,这些受试者至少扫描了五次,平均休会间隔为1年。纵向数据在各个受试者之间串联起来,形成一个时间序列,并且一阶自回归模型用于测量使用ICA识别的独立代谢活动来源之间的区域间因果关系。衰老过程中代谢活动降低的几个独立来源,包括前颞叶和眶额叶皮层,对许多广泛的大脑区域表现出因果关系。另一方面,受影响的区域分布更广,与年龄相关的下降较小,甚至代谢活动相对增加。目前的数据表明,衰老在代谢活动中的区域间传播约为一年,并确定了衰老过程中对其他区域有重大影响的关键大脑区域。

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