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Disrupted Modular Architecture of Cerebellum in Schizophrenia: A Graph Theoretic Analysis

机译:精神分裂症小脑的模块化模块化体系结构:图论分析

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摘要

Recent studies of schizophrenia have revealed cognitive and memory deficits that are accompanied by disruptions of neuronal connectivity in cortical and subcortical brain regions. More recently, alterations of topological organization of structural networks in schizophrenia are also being identified using graph theoretical analysis. However, the role of the cerebellum in this network structure remains largely unknown. In this study, global network measures obtained from diffusion tensor imaging were computed in the cerebella of 25 patients with schizophrenia and 36 healthy volunteers. While cerebellar global network characteristics were slightly altered in schizophrenia patients compared with healthy controls, the patients showed a retained small-world network organization. The modular architecture, however, was changed mainly in crus II. Furthermore, schizophrenia patients had reduced correlations between modularity and microstructural integrity, as measured by fractional anisotropy (FA) in lobules I–IV and X. Finally, FA alterations were significantly correlated with the Positive and Negative Syndrome Scale symptom scores in schizophrenia patients. Taken together, our data suggest that schizophrenia patients have altered network architecture in the cerebellum with reduced local microstructural connectivity and that cerebellar structural abnormalities are associated symptoms of the disorder.
机译:精神分裂症的最新研究表明,认知和记忆缺陷伴随着皮质和皮质下大脑区域神经元连通性的破坏。最近,精神分裂症中结构网络的拓扑组织的变化也正在使用图论分析进行识别。然而,小脑在这种网络结构中的作用仍然未知。在这项研究中,从扩散张量成像获得的全球网络测量值在25名精神分裂症患者和36名健康志愿者的小脑中进行了计算。与健康对照组相比,精神分裂症患者的小脑全局网络特征略有改变,但患者表现出保留的小世界网络组织。但是,模块化体系结构主要在Crus II中进行了更改。此外,通过小叶I–IV和X的分数各向异性(FA)测量,精神分裂症患者的模块性与微结构完整性之间的相关性降低。最后,FA改变与精神分裂症患者的阳性和阴性综合征量表症状评分显着相关。两者合计,我们的数据表明,精神分裂症患者已经改变了小脑的网络结构,局部微结构的连通性降低,并且小脑结构异常是该疾病的相关症状。

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