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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Diffusion tensor tractography reveals abnormal topological organization in structural cortical networks in Alzheimer's disease.
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Diffusion tensor tractography reveals abnormal topological organization in structural cortical networks in Alzheimer's disease.

机译:扩散张量牵引术揭示了阿尔茨海默病的结构皮层网络中的异常拓扑组织。

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Recent research on Alzheimer's disease (AD) has shown that the decline of cognitive and memory functions is accompanied by a disrupted neuronal connectivity characterized by white matter (WM) degeneration. However, changes in the topological organization of WM structural network in AD remain largely unknown. Here, we used diffusion tensor image tractography to construct the human brain WM networks of 25 AD patients and 30 age- and sex-matched healthy controls, followed by a graph theoretical analysis. We found that both AD patients and controls had a small-world topology in WM network, suggesting an optimal balance between structurally segregated and integrative organization. More important, the AD patients exhibited increased shortest path length and decreased global efficiency in WM network compared with controls, implying abnormal topological organization. Furthermore, we showed that the WM network contained highly connected hub regions that were predominately located in the precuneus, cingulate cortex, and dorsolateral prefrontal cortex, which was consistent with the previous diffusion-MRI studies. Specifically, AD patients were found to have reduced nodal efficiency predominantly located in the frontal regions. Finally, we showed that the alterations of various network properties were significantly correlated with the behavior performances. Together, the present study demonstrated for the first time that the Alzheimer's brain was associated with disrupted topological organization in the large-scale WM structural networks, thus providing the structural evidence for abnormalities of systematic integrity in this disease. This work could also have implications for understanding how the abnormalities of structural connectivity in AD underlie behavioral deficits in the patients.
机译:最近对阿尔茨海默病(AD)的研究表明认知和记忆功能的下降伴随着白体物质(WM)变性的破坏神经元连接。然而,广告中WM结构网络的拓扑组织的变化仍然很大程度上是未知数。在这里,我们使用扩散张量图像牵引构建25名AD患者的人脑WM网络和30次和性别匹配的健康对照,其次是图形理论分析。我们发现,AD患者和控制患者在WM网络中具有小世界拓扑,这表明在结构上隔离和综合组织之间的最佳平衡。更重要的是,与对照组相比,广告患者表现出最短的路径长度和WM网络的全球效率降低,暗示异常的拓扑组织。此外,我们认为WM网络包含高度连接的枢纽区域,这些中心区域主要位于预防,Cingulate Cortex和背面层前序皮层中,这与先前的扩散-MRI研究一致。具体而言,发现AD患者在正面区域中主要位于正面区域的节点效率降低。最后,我们表明,各种网络性质的改变与行为性能显着相关。目前的一项研究首次展示了阿尔茨海默的大脑与大规模的WM结构网络中断的拓扑组织有关,从而提供了这种疾病系统完整性异常的结构证据。这项工作也可能对了解如何在患者的广告底层行为赤字中的结构连接异常。

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