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首页> 外文期刊>Archives of general psychiatry. >Altered cortical network dynamics: a potential intermediate phenotype for schizophrenia and association with ZNF804A.
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Altered cortical network dynamics: a potential intermediate phenotype for schizophrenia and association with ZNF804A.

机译:改变大脑皮层网络动力学:一个潜在的精神分裂症和中间表型与ZNF804A协会。

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CONTEXT: Studies have shown patterns of abnormal dorsolateral prefrontal cortex (DLPFC) functional connectivity with other brain areas in schizophrenia and association of these patterns with a putative susceptibility gene (ZNF804A). However, whether these patterns are trait phenomena linked to genetic risk for illness is unclear. OBJECTIVE: To test the hypotheses that altered DLPFC connectivity is (1) a familial, likely heritable feature of genetic risk for schizophrenia, (2) a novel intermediate phenotype independent of altered DLPFC engagement, and (3) selectively modulated by a polymorphism in ZNF804A. DESIGN: Cross-sectional case-control study using blood oxygen level-dependent functional magnetic resonance imaging during a working memory task and genotyping of rs1344706 in ZNF804A. SETTING: Research center. PARTICIPANTS: A total of 402 subjects (153 cognitively normal controls, 171 healthy siblings of patients with schizophrenia, and 78 patients). MAIN OUTCOME MEASURES: Task-independent and task-dependent physiologic coupling between the DLPFC and other brain "target" regions investigated with (1) seeded connectivity and (2) psychophysiological interaction analysis. RESULTS: Siblings and patients showed greater DLPFC inefficiency hippocampus and, to a lesser degree, the rest of the prefrontal cortex, was observed in patients and siblings when compared with controls using both connectivity analyses. Prefrontal activation and connectivity measures within siblings did not correlate, implying that they were independent phenomena. The ZNF804A genotype significantly modulated DLPFC coupling with the hippocampus and prefrontal cortex but not DLPFC activity in the control group. Similarly, ZNF804A genotype modulated right DLPFC-hippocampal formation coupling in siblings and patients. CONCLUSIONS: Coupling between the DLPFC and hippocampus is compromised in siblings of patients with schizophrenia and is independent of DLPFC engagement. The selective association with a single-nucleotide polymorphism in ZNF804A suggests that this intermediate phenotype proxies a distinct neural system mechanism related to genetic risk for schizophrenia and the biology of this gene.
机译:背景:研究显示的异常模式背外侧前额叶皮层(DLPFC)功能连接与其他大脑区域精神分裂症和协会的这些模式假定的易感性基因(ZNF804A)。然而,这些模式是否特质现象与遗传疾病的风险不清楚。改变DLPFC连接(1)是一个家族,可能遗传风险的遗传特性精神分裂症,(2)小说中间表型独立于改变DLPFC订婚,(3)有选择地调制的多态性ZNF804A。研究使用血氧等级相关功能性磁共振成像中工作记忆任务和rs1344706基因分型在ZNF804A。参与者:共402例(153认知正常的控制,171名健康的兄弟姐妹精神分裂症患者和78名患者)。主要结果测量:Task-independent和task-dependent生理之间的耦合DLPFC和其他大脑“目标”的地区调查(1)的连接和(2)心理生理相互作用分析。结果:显示更大的兄弟姐妹和病人海马DLPFC效率低下,在较小学位,其余的前额叶皮层观察到病人和兄弟姐妹相比使用两个连通性分析与控制。前额叶激活和连接措施在兄弟姐妹没有关联,这意味着他们是独立的现象。基因型明显调制DLPFC耦合海马和前额叶皮层对照组不DLPFC活动。同样,ZNF804A基因型调制在兄弟姐妹DLPFC-hippocampal形成耦合和病人。DLPFC和海马体受损在兄弟姐妹精神分裂症患者和独立DLPFC订婚。单核苷酸多态性在ZNF804A表明这中间表型代理一个明显的神经系统机制有关精神分裂症遗传风险的和生物学的这个基因。

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