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阿尔茨海默病患者的白质功能通路改变。

Altered white matter functional pathways in Alzheimer's disease.

机构信息

The Clinical Hospital of Chengdu Brain Science Institute, MOE Key Laboratory for Neuroinformation, Center for Information in Medicine, School of Life Science and Technology, University of Electronic Science and Technology of China, NO. 2006, Xiyuan Ave, West Hi-Tech Zone, 611731, Chengdu, China.

Department of Biomedical Engineering, New Jersey Institute of Technology, 154 Summit Street, Newark 07102, NJ, United States.

出版信息

Cereb Cortex. 2024 Mar 1;34(3). doi: 10.1093/cercor/bhad505.

Abstract

Alzheimer's disease (AD) is associated with functional disruption in gray matter (GM) and structural damage to white matter (WM), but the relationship to functional signal in WM is unknown. We performed the functional connectivity (FC) and graph theory analysis to investigate abnormalities of WM and GM functional networks and corpus callosum among different stages of AD from a publicly available dataset. Compared to the controls, AD group showed significantly decreased FC between the deep WM functional network (WM-FN) and the splenium of corpus callosum, between the sensorimotor/occipital WM-FN and GM visual network, but increased FC between the deep WM-FN and the GM sensorimotor network. In the clinical groups, the global assortativity, modular interaction between occipital WM-FN and visual network, nodal betweenness centrality, degree centrality, and nodal clustering coefficient in WM- and GM-FNs were reduced. However, modular interaction between deep WM-FN and sensorimotor network, and participation coefficients of deep WM-FN and splenium of corpus callosum were increased. These findings revealed the abnormal integration of functional networks in different stages of AD from a novel WM-FNs perspective. The abnormalities of WM functional pathways connect downward to the corpus callosum and upward to the GM are correlated with AD.

摘要

阿尔茨海默病(AD)与灰质(GM)的功能障碍和白质(WM)的结构损伤有关,但与 WM 中的功能信号的关系尚不清楚。我们从一个公开的数据集进行功能连接(FC)和图论分析,以研究 AD 不同阶段 WM 和 GM 功能网络以及胼胝体的异常。与对照组相比,AD 组在深部 WM 功能网络(WM-FN)与胼胝体压部之间、感觉运动/枕叶 WM-FN 与 GM 视觉网络之间的 FC 显著降低,但在深部 WM-FN 与 GM 感觉运动网络之间的 FC 增加。在临床组中,WM 和 GM-FNs 的全局聚集系数、枕叶 WM-FN 与视觉网络之间的模块交互、节点介数中心度、度中心度和节点聚类系数降低。然而,深部 WM-FN 与感觉运动网络之间的模块交互以及深部 WM-FN 和胼胝体压部的参与系数增加。这些发现从一个新的 WM-FNs 角度揭示了 AD 不同阶段功能网络的异常整合。WM 功能通路的异常向下连接到胼胝体,向上连接到 GM,与 AD 相关。

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