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Neural substrates of cognitive reserve in Alzheimer's disease spectrum and normal aging

机译:阿尔茨海默病谱和正常老化认知储备神经底物

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摘要

The concept of cognitive reserve (CR) originated from discrepancies between the degree of brain pathology and the severity of clinical manifestations. CR has been characterized through CR proxies, such as education and occupation complexity; however, such approaches have inherent limitations. Although several methods have been developed to overcome these limitations, they fail to reflect the entire Alzheimer's disease (AD) pathology. Meanwhile, graph theory analysis, one of most powerful and flexible approaches, have established remarkable network properties of the brain. The functional and structural brain networks are damaged in neurodegenerative diseases. Therefore, network analysis has been applied to clarify the characteristics of the disease or give insight. Here, using multimodal neuroimaging, we propose an intuitive model to estimate CR based on its original definition, and explore the neural substrates of CR from the perspective of networks and functional connectivity. A total of 87 subjects (21 AD, 32 mild cognitive impairment, and 34 normal aging) underwent tau and amyloid PET, 3D T1-weighted MR, and resting-state fMRI. We hypothesized CR as a residual of actual cognitive performance and expected performance to be related to quantitative factors, such as AD pathology, demographics, and a genetic factor. Then, we correlated this marker using education and occupation complexity as conventional CR proxies. We validated this marker by testing whether it would modulate the effect of brain pathology on memory function. To examine the neural substrates associated with CR, we performed graph analysis to investigate the association between the CR marker and network measures at different granularities in total subjects, AD spectrum and normal aging, respectively. The CR marker from our model was well associated with education and occupation complexity. More directly, the CR marker was revealed to modify the relationship between brain pathology and memory function among AD spectrum. The CR marker was correlated with the global efficiency of the entire network, nodal clustering coefficient, and local efficiency of the right middle-temporal pole. In connectivity analysis, one cluster of edges centered on right middle-temporal pole was significantly correlated with the CR marker. In subgroup analysis, the network measures of right middle-temporal pole still correlated with the CR marker among AD spectrum. However, right precentral gyrus was revealed to be associated with the CR marker in normal aging. This study demonstrates that our intuitive model using multimodal neuroimaging and network perspective adequately and comprehensively captures CR. From a network perspective, CR is associated with the capacity to process information efficiently in the brain. The right middle-temporal pole was revealed to be a pivotal neural substrate of CR in AD spectrum. These findings foster understanding of AD and will be useful to help identify individuals with vulnerability or resistance to AD pathology, and characterize patients for intervention or drug trials.
机译:认知储备(Cr)的概念起源于脑病理程度与临床表现的严重程度之间的差异。 CR的特点是通过CR代理,例如教育和职业复杂性;然而,这种方法具有固有的局限性。虽然已经开发了几种方法来克服这些限制,但它们未能反映整个阿尔茨海默病(AD)病理学。同时,图论理论分析,一种最强大和灵活的方法之一,已经建立了大脑的非凡网络属性。功能性和结构脑网络在神经变性疾病中受损。因此,已施加网络分析以阐明疾病的特征或提供洞察力。这里,使用多模式神经影像体,我们提出了一种基于其原始定义来估计CR的直观模型,并从网络和功能连通性的角度探索CR的神经基板。共有87名受试者(21个AD,32例轻度认知障碍和34正常老化)接受了Tau和淀粉样肽,3D T1加权MR,以及休息状态FMRI。我们假设CR作为实际认知性能的残余和与定量因素相关的预期绩效,例如广告病理学,人口统计学和遗传因素。然后,我们使用教育和职业复杂性与传统的CR代理相关联。我们通过测试它是否会调制大脑病理学对记忆功能的效果来验证此标记。为了检查与CR相关的神经底物,我们执行了曲线图分析,以研究Cr标记和网络测量之间的相关粒度分别在总受试者,广告谱和正常老化的不同粒度之间的关联。我们模型的CR标记与教育和职业复杂性有关。更直接地,揭示了Cr标记以改变广告谱之间脑病理学和记忆功能之间的关系。 CR标记与整个网络的全球效率相关,节点聚类系数和右中颞杆的局部效率。在连接性分析中,以右中间杆为中心的一组边缘与Cr标记显着相关。在亚组分析中,右中间杆的网络测量仍然与广告谱之间的Cr标记相关。然而,右前术过谱被揭示与正常老化中的Cr标记相关。本研究表明,我们的直观模型采用多模式神经影像学和网络透视,可充分地捕获CR。从网络角度来看,CR与在大脑中有效地处理信息的能力相关联。右中颞杆被揭示为AD光谱中CR的枢转神经基质。这些调查结果促进了对广告的理解,并有助于帮助识别具有脆弱性或抵抗的个体对AD病理学,并表征患者进行干预或毒品试验。

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