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Disorganized cortical thickness covariance network in major depressive disorder implicated by aberrant hubs in large-scale networks

机译:大型网络中异常枢纽牵连的主要抑郁症的皮质厚度协方差网络杂乱无章

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摘要

Major depressive disorder is associated with abnormal anatomical and functional connectivity, yet alterations in whole cortical thickness topology remain unknown. Here, we examined cortical thickness in medication-free adult depression patients (n = 76) and matched healthy controls (n = 116). Inter-regional correlation was performed to construct brain networks. By applying graph theory analysis, global (i.e., small-worldness) and regional (centrality) topology was compared between major depressive disorder patients and healthy controls. We found that in depression patients, topological organization of the cortical thickness network shifted towards randomness, and lower small-worldness was driven by a decreased clustering coefficient. Consistently, altered nodal centrality was identified in the isthmus of the cingulate cortex, insula, supra-marginal gyrus, middle temporal gyrus and inferior parietal gyrus, all of which are components within the default mode, salience and central executive networks. Disrupted nodes anchored in the default mode and executive networks were associated with depression severity. The brain systems involved sustain core symptoms in depression and implicate a structural basis for depression. Our results highlight the possibility that developmental and genetic factors are crucial to understand the neuropathology of depression.
机译:严重的抑郁症与异常的解剖学和功能连通性有关,但整个皮质厚度拓扑的改变仍然未知。在这里,我们检查了无药物治疗的成年抑郁症患者(n = 76)和健康对照者(n = 116)的皮质厚度。进行区域间关联以构建大脑网络。通过应用图论分析,在主要抑郁症患者和健康对照者之间比较了全局(即小世界)和区域(中心)拓扑。我们发现在抑郁症患者中,皮层厚度网络的拓扑结构向随机性转移,而较低的小世界性是由降低的聚类系数驱动的。一致地,在扣带回皮层,岛状,上缘回,中颞回和顶顶下回的峡部中发现了节点中心性的改变,所有这些都是默认模式,显着性和中央执行网络的组成部分。在默认模式下锚定的中断节点和执行网络与抑郁症严重程度相关。涉及的脑系统在抑郁症中维持核心症状,并暗示了抑郁症的结构基础。我们的结果突显了发育和遗传因素对理解抑郁症的神经病理学至关重要的可能性。

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