阿尔茨海默病中异常的跨组织功能连接:静态、动态和定向特性。

Xingxing Zhang, Qing Guan, Yingjia Li, Jianfeng Zhang, Wanlin Zhu, Yuejia Luo, Haobo Zhang
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引用次数: 1

摘要

背景:脑灰质(GM)和脑白质(WM)中的bold信号是紧密耦合的。然而,我们对阿尔茨海默病(AD)跨组织功能网络的了解有限。目的研究AD损伤易感GM区域跨组织功能连通性(FC)指标的变化。方法对默认模式(DMN)和边缘网络中的每个GM区域,基于其与多个GM区域的FC模式相似性,获得其与任意WM区域的低阶静态FC,以及任意两个WM区域之间的高阶静态FC。然后获得了跨组织FC的动态和定向特性,特别是对于低阶或高阶静态FC在AD和正常对照(NC)之间表现出显著差异的区域对。此外,这些跨组织FC指标与所有参与者的基于体素的GM体积和MMSE相关。结果与NC相比,AD患者表现出半球内GM-WM对(右itg -右穹窿;左mtg -左后辐射冠),以及半球间GM-WM对(右mtg -左上/后辐射冠)之间的低阶静态、动态和定向fc增加。左扣带束-左绒毡层之间的高阶静态和定向fc在AD中增加,基于它们与DMN的gm之间的fc。AD患者跨组织FC指标的减少和增加与记忆相关的GM体积和MMSE呈相反的相关性(减少为正,增加为负)。结论跨组织FC指标在AD中显示相反的变化,可能是反映神经退行性和代偿机制的有用神经影像学生物标志物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aberrant Cross-Tissue Functional Connectivity in Alzheimer's Disease: Static, Dynamic, and Directional Properties.
BACKGROUND BOLD signals in the gray matter (GM) and white matter (WM) are tightly coupled. However, our understanding of the cross-tissue functional network in Alzheimer's disease (AD) is limited. OBJECTIVE We investigated the changes of cross-tissue functional connectivity (FC) metrics for the GM regions susceptible to AD damage. METHODS For each GM region in the default mode (DMN) and limbic networks, we obtained its low-order static FC with any WM region, and the high-order static FC between any two WM regions based on their FC pattern similarity with multiple GM regions. The dynamic and directional properties of cross-tissue FC were then acquired, specifically for the regional pairs whose low- or high-order static FCs showed significant differences between AD and normal control (NC). Moreover, these cross-tissue FC metrics were correlated with voxel-based GM volumes and MMSE in all participants. RESULTS Compared to NC, AD patients showed decreased low-order static FCs between the intra-hemispheric GM-WM pairs (right ITG-right fornix; left MoFG-left posterior corona radiata), and increased low-order static, dynamic, and directional FCs between the inter-hemispheric GM-WM pairs (right MTG-left superior/posterior corona radiata). The high-order static and directional FCs between the left cingulate bundle-left tapetum were increased in AD, based on their FCs with the GMs of DMN. Those decreased and increased cross-tissue FC metrics in AD had opposite correlations with memory-related GM volumes and MMSE (positive for the decreased and negative for the increased). CONCLUSION Cross-tissue FC metrics showed opposite changes in AD, possibly as useful neuroimaging biomarkers to reflect neurodegenerative and compensatory mechanisms.
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