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Evidence for cerebello-thalamo-cortical hyperconnectivity as a heritable trait for schizophrenia

机译:小脑-丘脑-皮质超连通性作为精神分裂症的遗传性状的证据

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摘要

Our recent study has demonstrated that increased connectivity in the cerebello-thalamo-cortical (CTC) circuitry is a state-independent neural trait that can potentially predict the onset of psychosis. One possible cause of such “trait” abnormality would be genetic predisposition. Here, we tested this hypothesis using multi-paradigm functional magnetic resonance imaging (fMRI) data from two independent twin cohorts. In a sample of 85 monozygotic (MZ) and 52 dizygotic (DZ) healthy twin pairs acquired from the Human Connectome Project, we showed that the connectivity pattern of the identified CTC circuitry was more similar in the MZ twins (r = 0.54) compared with that in the DZ twins (r = 0.22). The structural equation modeling analysis revealed a heritability estimate of 0.52 for the CTC connectivity, suggesting a moderately strong genetic effect. Moreover, using an independent schizophrenia cotwin sample (10 discordant MZ cotwins, 30 discordant DZ cotwins, and 32 control cotwins), we observed a significant linear relationship between genetic distance to schizophrenia and the connectivity strength in the CTC circuitry (i.e., schizophrenia MZ cotwins > schizophrenia DZ cotwins > control twins, P = 0.045). The present data provide converging evidence that increased connectivity in the CTC circuitry is likely to be a heritable trait that is associated with the genetic risk of schizophrenia.
机译:我们最近的研究表明,小脑-丘脑-皮质(CTC)电路中的连通性增加是一种与状态无关的神经质,可以潜在地预测精神病的发作。这种“特征”异常的可能原因之一是遗传易感性。在这里,我们使用来自两个独立的双生子队列的多范例功能磁共振成像(fMRI)数据测试了这一假设。在从人类连接基因组计划中获得的85对单卵(MZ)和52对双卵(DZ)的健康双胞胎中,我们发现与MZ双胞胎相比,已确定的CTC电路的连通性模式与MZ双胞胎更为相似(r = 0.54)。在DZ双胞胎中(r = 0.22)。结构方程模型分析显示,CTC连通性的遗传度估计为0.52,表明遗传效应中等。此外,使用独立的精神分裂症苏格兰人样本(10个不一致的MZ苏格兰人,30个不一致的DZ苏格兰人和32个对照苏格兰人),我们观察到了精神分裂症的遗传距离与CTC回路中连接强度(即,精神分裂症MZ苏格兰人)之间存在显着的线性关系。 >精神分裂症DZ cotwins>对照双胞胎,P = 0.045)。目前的数据提供了越来越多的证据,表明CTC电路中增加的连通性可能是与精神分裂症的遗传风险相关的遗传特性。

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