论文标题
衰老大脑的网络弹性
Network resilience in the aging brain
论文作者
论文摘要
退化和适应是在大脑衰老或疾病的渐进过程中,同一硬币的两个竞争性方面。变性在大脑衰老和其他脑活动期间积累,导致结构性萎缩和功能障碍。同时,适应允许大脑网络重组以补偿结构损失以维持认知功能。尽管隐藏的弹性机制对于揭示大脑老化法至关重要,但由于缺乏数据集和适当的方法,但基本上未知这两个过程如何在大脑网络之间动态相互作用。为了定量研究这个复杂的过程,我们根据63人的6年随访多模式神经影像学数据库分析衰老的大脑。我们揭示了网络弹性的关键机制,即各种扰动可能会导致大脑结构性萎缩,然后大脑可以重新组织其功能布局以降低其运营效率,这有助于减慢结构性萎缩,并最终恢复其功能效率平衡。这一经验发现可以通过我们的理论模型来解释,这表明一种通用的弹性动力学功能。这种弹性是在大脑功能网络中实现的,具有不断发展的渗透和丰富的俱乐部特征。我们的发现可以帮助理解大脑衰老过程,并设计可能的缓解方法,从弹性观点调整变性和适应性之间的相互作用。
Degeneration and adaptation are two competing sides of the same coin called resilience in the progressive processes of brain aging or diseases. Degeneration accumulates during brain aging and other cerebral activities, causing structural atrophy and dysfunction. At the same time, adaptation allows brain network reorganize to compensate for structural loss to maintain cognition function. Although hidden resilience mechanism is critical and fundamental to uncover the brain aging law, due to the lack of datasets and appropriate methodology, it remains essentially unknown how these two processes interact dynamically across brain networks. To quantitatively investigate this complex process, we analyze aging brains based on 6-year follow-up multimodal neuroimaging database from 63 persons. We reveal the critical mechanism of network resilience that various perturbation may cause fast brain structural atrophy, and then brain can reorganize its functional layout to lower its operational efficiency, which helps to slow down the structural atrophy and finally recover its functional efficiency equilibrium. This empirical finding could be explained by our theoretical model, suggesting one universal resilience dynamical function. This resilience is achieved in the brain functional network with evolving percolation and rich-club features. Our findings can help to understand the brain aging process and design possible mitigation methods to adjust interaction between degeneration and adaptation from resilience viewpoint.