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伴有持续性幻听的精神分裂症患者的个体内结构协方差网络。

Intra-individual structural covariance network in schizophrenia patients with persistent auditory hallucinations.

作者信息

Shao Xu, Ren Honghong, Li Jinguang, He Jingqi, Dai Lulin, Dong Min, Wang Jun, Kong Xiangzhen, Chen Xiaogang, Tang Jinsong

机构信息

Department of Psychiatry, Zhejiang University School of Medicine Sir Run Run Shaw Hospital, Hangzhou, Zhejiang, China.

Hunan Provincial Brain Hospital (The second people's Hospital of Hunan Province), Changsha, Hunan, China.

出版信息

Schizophrenia (Heidelb). 2024 Oct 14;10(1):92. doi: 10.1038/s41537-024-00508-7.

Abstract

Neuroimaging studies have revealed that the mechanisms of auditory hallucinations are related to morphological changes in multiple cortical regions, but studies on brain network properties are lacking. This study aims to construct intra-individual structural covariance networks and reveal network changes related to auditory hallucinations. T1-weighted MRI images were acquired from 90 schizophrenia patients with persistent auditory hallucinations (pAH group), 55 schizophrenia patients without auditory hallucinations (non-pAH group), and 83 healthy controls (HC group). Networks were constructed using the voxel-based gray matter volume and the intra-individual structural covariance was based on the similarity between the morphological variations of any two regions. One-way ANCOVA was employed to compare global and local network metrics among the three groups, and edge analysis was conducted via network-based statistics. In the pAH group, Pearson correlation analysis between network metrics and clinical symptoms was conducted. Compared with the HC group, both the pAH group (p = 0.01) and the non-pAH group (p = 3.56 × 10) had lower nodal efficiency of the left medial superior frontal gyrus. Compared to the non-pAH group and HC group, the pAH group presented lower nodal efficiency of the temporal pole of the left superior temporal gyrus (p = 1.09 × 10; p = 7.67 × 10) and right insula (p = 0.02; p = 8.99 × 10), and lower degree centrality of the right insula (p = 0.04; p = 1.65 × 10). The pAH group had a subnetwork with reduced structural covariance centered by the left temporal pole of the superior temporal gyrus. In the pAH group, the normalized clustering coefficient (r = -0.36, p = 8.45 × 10) and small-worldness (r = -0.35, p = 9.89 × 10) were negatively correlated with the PANSS positive scale score. This study revealed network changes in schizophrenia patients with persistent auditory hallucinations, and provided new insights into the structural architecture related to auditory hallucinations at the network level.

摘要

神经影像学研究表明,幻听的机制与多个皮质区域的形态变化有关,但缺乏关于脑网络特性的研究。本研究旨在构建个体内部结构协方差网络,并揭示与幻听相关的网络变化。从90名患有持续性幻听的精神分裂症患者(pAH组)、55名无幻听的精神分裂症患者(非pAH组)和83名健康对照者(HC组)获取了T1加权MRI图像。使用基于体素的灰质体积构建网络,个体内部结构协方差基于任意两个区域形态变化之间的相似性。采用单因素协方差分析比较三组之间的全局和局部网络指标,并通过基于网络的统计进行边分析。在pAH组中,进行了网络指标与临床症状之间的Pearson相关分析。与HC组相比,pAH组(p = 0.01)和非pAH组(p = 3.56×10)左侧额上回内侧的节点效率均较低。与非pAH组和HC组相比,pAH组左侧颞上回颞极(p = 1.09×10;p = 7.67×10)和右侧岛叶的节点效率较低(p = 0.02;p = 8.99×10),右侧岛叶的度中心性较低(p = 0.04;p = 1.65×10)。pAH组有一个以上侧颞回左颞极为中心的结构协方差降低的子网。在pAH组中,标准化聚类系数(r = -0.36,p = 8.45×10)和小世界特性(r = -0.35,p = 9.89×10)与PANSS阳性量表评分呈负相关。本研究揭示了患有持续性幻听的精神分裂症患者的网络变化,并在网络层面为与幻听相关的结构架构提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9a3/11473721/f4251800f40f/41537_2024_508_Fig1_HTML.jpg

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