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通过 ENIGMA 联盟,对 2833 名精神分裂症患者和 3929 名健康志愿者的大脑深部结构形状和不对称性异常进行了荟萃分析。

A meta-analysis of deep brain structural shape and asymmetry abnormalities in 2,833 individuals with schizophrenia compared with 3,929 healthy volunteers via the ENIGMA Consortium.

机构信息

Department of Biomedical Engineering, Illinois Institute of Technology, Chicago, Illinois, USA.

Institute for Information Transmission Problems (Kharkevich Institute), Moscow, Russia.

出版信息

Hum Brain Mapp. 2022 Jan;43(1):352-372. doi: 10.1002/hbm.25625. Epub 2021 Sep 8.

Abstract

Schizophrenia is associated with widespread alterations in subcortical brain structure. While analytic methods have enabled more detailed morphometric characterization, findings are often equivocal. In this meta-analysis, we employed the harmonized ENIGMA shape analysis protocols to collaboratively investigate subcortical brain structure shape differences between individuals with schizophrenia and healthy control participants. The study analyzed data from 2,833 individuals with schizophrenia and 3,929 healthy control participants contributed by 21 worldwide research groups participating in the ENIGMA Schizophrenia Working Group. Harmonized shape analysis protocols were applied to each site's data independently for bilateral hippocampus, amygdala, caudate, accumbens, putamen, pallidum, and thalamus obtained from T1-weighted structural MRI scans. Mass univariate meta-analyses revealed more-concave-than-convex shape differences in the hippocampus, amygdala, accumbens, and thalamus in individuals with schizophrenia compared with control participants, more-convex-than-concave shape differences in the putamen and pallidum, and both concave and convex shape differences in the caudate. Patterns of exaggerated asymmetry were observed across the hippocampus, amygdala, and thalamus in individuals with schizophrenia compared to control participants, while diminished asymmetry encompassed ventral striatum and ventral and dorsal thalamus. Our analyses also revealed that higher chlorpromazine dose equivalents and increased positive symptom levels were associated with patterns of contiguous convex shape differences across multiple subcortical structures. Findings from our shape meta-analysis suggest that common neurobiological mechanisms may contribute to gray matter reduction across multiple subcortical regions, thus enhancing our understanding of the nature of network disorganization in schizophrenia.

摘要

精神分裂症与皮质下脑结构的广泛改变有关。虽然分析方法能够更详细地描述形态特征,但研究结果往往存在争议。在这项荟萃分析中,我们采用了经过协调的 ENIGMA 形态分析方案,共同研究了精神分裂症患者和健康对照参与者之间皮质下脑结构形状的差异。该研究分析了来自 21 个全球研究小组的 2833 名精神分裂症患者和 3929 名健康对照参与者的数据,这些参与者参加了 ENIGMA 精神分裂症工作组。协调的形态分析方案独立应用于每个站点的数据,用于从 T1 加权结构 MRI 扫描中获得双侧海马体、杏仁核、尾状核、伏隔核、壳核、苍白球和丘脑。大规模单变量荟萃分析显示,与健康对照组相比,精神分裂症患者的海马体、杏仁核、伏隔核和丘脑的形状差异更为凹陷而非凸起,壳核和苍白球的形状差异更为凸起而非凹陷,尾状核的形状差异既有凹陷也有凸起。与健康对照组相比,精神分裂症患者的海马体、杏仁核和丘脑表现出明显的过度不对称模式,而腹侧纹状体和腹侧和背侧丘脑则表现出对称性降低。我们的分析还表明,较高的氯丙嗪剂量当量和阳性症状水平的增加与多个皮质下结构的连续凸形差异模式有关。我们的形态荟萃分析结果表明,共同的神经生物学机制可能导致多个皮质下区域的灰质减少,从而增强了我们对精神分裂症网络紊乱性质的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8709/8675416/1a2341e59e06/HBM-43-352-g005.jpg

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