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Module differences of glucose metabolic brain network among Alzheimer's disease, Parkinson's disease dementia, Lewy body dementia and health control

机译:葡萄糖代谢脑网络中的模块差异,帕金森病痴呆,石油体痴呆症和健康控制

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Dementia has become a serious disease in elderly population. Graph theory based brain network analysis method is considered as a popular and universal technique in the field of the neurosciences. It can help neuroscientists to investigate the neuropathology of dementia, especially to understand dementia subtypes. However, brain network analysis for various dementia subtypes at the same time is still limited. The aim at this study is to investigate the similarities and differences in brain network modular parameters of three dementia subtypes: Alzheimer's disease (AD), Parkinson's disease dementia (PDD), Lewy body dementia (DLB). Health control has also been compared. All subjects of health control(HC), AD, PDD and DLB groups were from Huashan Hospital. Using topological analysis algorithms, we found that HC brain was divided into 4 modules; AD brain was divided into 4 modules; PDD brain was divided into 6 modules; and DLB brain was divided into 10 modules, which demonstrated differences in these dementia subtypes. We also found that right thalamus area was scattered in all dementia subtypes. After using the seed point correlation analysis, it can be seen that the connections between right thalamus and subcortical, frontal gyrus were enhanced and the connections with the occipital gyrus was attenuated in dementia subtypes. As a result, findings in this paper are expected to be useful for neuroscientists to further understand the pathology of AD, PDD and DLB.
机译:老年痴呆症已成为老年人口的严重疾病。图论基于脑网络分析方法被认为是神经科学领域的流行和普及的技术。它可以帮助神经科学家研究老年痴呆症的神经病理学,尤其是为了理解痴呆亚型。然而,在同一时间不同亚型痴呆脑网络的分析仍然是有限的。在该研究的目的是研究在三个痴呆亚型脑网络模块化参数的异同:阿尔茨海默氏病(AD),帕金森病痴呆(PDD),路易体痴呆(DLB)。健康管理也进行了比较。健康控制(HC),AD的所有受试者,PDD和DLB组来自华山医院。使用拓扑分析算法,我们发现,HC大脑分为4个模块; AD脑分为4个模块; PDD脑分成6个模块;和DLB脑分为10个模块,这表明在这些痴呆亚型的差异。我们还发现,右侧丘脑区域是分散在所有痴呆亚型。使用种子点相关分析后,我们可以看到,右丘脑和皮层下之间的连接,额中回得到了加强,并与枕骨回连接在痴呆亚型减弱。其结果是,在本文中的研究结果预计为神经科学家进一步了解AD,PDD和DLB的病理学是有用的。

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