首页> 美国卫生研究院文献>Frontiers in Aging Neuroscience >Functional disorganization of small-world brain networks in mild Alzheimers Disease and amnestic Mild Cognitive Impairment: an EEG study using Relative Wavelet Entropy (RWE)
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Functional disorganization of small-world brain networks in mild Alzheimers Disease and amnestic Mild Cognitive Impairment: an EEG study using Relative Wavelet Entropy (RWE)

机译:小世界脑网络在轻度阿尔茨海默氏病和轻度轻度认知障碍中的功能紊乱:使用相对小波熵(RWE)的脑电图研究

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摘要

Previous neuroscientific findings have linked Alzheimer's Disease (AD) with less efficient information processing and brain network disorganization. However, pathological alterations of the brain networks during the preclinical phase of amnestic Mild Cognitive Impairment (aMCI) remain largely unknown. The present study aimed at comparing patterns of the detection of functional disorganization in MCI relative to Mild Dementia (MD). Participants consisted of 23 cognitively healthy adults, 17 aMCI and 24 mild AD patients who underwent electroencephalographic (EEG) data acquisition during a resting-state condition. Synchronization analysis through the Orthogonal Discrete Wavelet Transform (ODWT), and directional brain network analysis were applied on the EEG data. This computational model was performed for networks that have the same number of edges (N = 500, 600, 700, 800 edges) across all participants and groups (fixed density values). All groups exhibited a small-world (SW) brain architecture. However, we found a significant reduction in the SW brain architecture in both aMCI and MD patients relative to the group of Healthy controls. This functional disorganization was also correlated with the participant's generic cognitive status. The deterioration of the network's organization was caused mainly by deficient local information processing as quantified by the mean cluster coefficient value. Functional hubs were identified through the normalized betweenness centrality metric. Analysis of the local characteristics showed relative hub preservation even with statistically significant reduced strength. Compensatory phenomena were also evident through the formation of additional hubs on left frontal and parietal regions. Our results indicate a declined functional network organization even during the prodromal phase. Degeneration is evident even in the preclinical phase and coexists with transient network reorganization due to compensation.
机译:以前的神经科学发现将阿尔茨海默氏病(AD)与信息处理效率低下和大脑网络混乱联系在一起。但是,在遗忘性轻度认知障碍(aMCI)的临床前阶段中,大脑网络的病理改变仍然未知。本研究旨在比较相对于轻度痴呆(MD)的MCI中功能紊乱的检测模式。参与者包括23名认知健康的成年人,17名aMCI和24名轻度AD患者,他们在休息状态下接受了脑电图(EEG)数据采集。通过正交离散小波变换(ODWT)进行的同步分析和定向脑网络分析被应用于EEG数据。此计算模型是针对在所有参与者和组(固定密度值)上具有相同数量的边(N = 500、600、700、800个边)的网络执行的。所有小组都展示了小世界(SW)的大脑结构。但是,我们发现与健康对照组相比,aMCI和MD患者的SW脑结构均明显减少。这种功能紊乱也与参与者的一般认知状态有关。网络组织的恶化主要是由于用均值聚类系数值量化的本地信息处理不足而引起的。功能中心是通过标准化的中间性中心度指标来确定的。对局部特征的分析显示,即使在强度上具有统计上的显着降低,仍保留了相对的毂。通过在左额叶和顶叶区域形成额外的轮毂,补偿现象也很明显。我们的结果表明,即使在前驱阶段,功能网络的组织也下降了。即使在临床前阶段,变性也很明显,并且由于补偿而与瞬时网络重组并存。

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