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分子脑成像与精神分裂症的神经生物学和遗传学

Molecular brain imaging and the neurobiology and genetics of schizophrenia.

作者信息

Heinz A, Romero B, Gallinat J, Juckel G, Weinberger D R

机构信息

Department of Psychiatry and Psychotherapy, Charité - University Medicine Berlin, Campus Charité-Mitte (CCM), Berlin, Germany.

出版信息

Pharmacopsychiatry. 2003 Nov;36 Suppl 3:S152-7. doi: 10.1055/s-2003-45123.

Abstract

It has been hypothesized that schizophrenia is related to dysfunction in temporolimbic-prefrontal neuronal networks, which is acquired early in an individual's development. After puberty, relatively reduced prefrontal control of striatal dopaminergic neurotransmission may lead to unmodulated striatal dopamine (DA) activity, and the positive symptoms of acute psychosis. Brain imaging studies support the notion of prefrontal dysfunction in schizophrenia and correlated upregulation of presynaptic striatal DA activity. Recent molecular brain imaging studies have combined genetic assessments with a multimodal neuroimaging approach to further refine our understanding of the pathophysiologic architecture of the disorder. We review the literature on functional brain imaging in schizophrenia and discuss genotype effects on core psychotic symptoms. A promising research strategy is the identification of genetic and environmental factors that contribute to intermediate phenotypes such as working memory deficits in schizophrenia. Molecular brain imaging can help to unravel the complex interactions between genes and environment and its association with neuronal network dysfunction in schizophrenia.

摘要

有假说认为,精神分裂症与颞叶边缘 - 前额叶神经元网络功能障碍有关,这种功能障碍在个体发育早期就已出现。青春期后,前额叶对纹状体多巴胺能神经传递的控制相对减弱,可能导致纹状体多巴胺(DA)活性失控,进而引发急性精神病的阳性症状。脑成像研究支持精神分裂症存在前额叶功能障碍以及突触前纹状体DA活性相关上调的观点。最近的分子脑成像研究将基因评估与多模态神经成像方法相结合,以进一步完善我们对该疾病病理生理结构的理解。我们回顾了关于精神分裂症功能性脑成像的文献,并讨论了基因型对核心精神病症状的影响。一种有前景的研究策略是识别导致诸如精神分裂症工作记忆缺陷等中间表型的遗传和环境因素。分子脑成像有助于揭示基因与环境之间的复杂相互作用及其与精神分裂症神经元网络功能障碍的关联。

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