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Functional models of neural circuits for pathophysiology of major depressive disorder

机译:重症抑郁症病理生理的神经回路功能模型

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Human brain is a complex system with dynamic responses. Intercommunication of brain regions to perform a real world task results into unique functional models based on activation of brain regions and strength of their interconnectivity. The functional models may be studied under the categories of anatomical, effective and functional connectivity. Variability of these models under same conditions signifies pathophysiology of a psychotic disease. Functional model of an abnormal brain has a different physiological connectivity pattern as compared to a normal one. Identification of these abnormalities may have useful implications for clinical diagnosis and prognosis. It may also be helpful in prediction of treatment response of an antidepressant. This paper provides description of functional models for pathophysiology of major depressive disorder (MDD) using functional magnetic resonance imaging (fMRI).
机译:人脑是一个具有动态响应的复杂系统。大脑区域的相互通信以执行现实世界的任务,基于大脑区域的激活及其相互连接的强度,形成了独特的功能模型。可以在解剖,有效和功能连接的类别下研究功能模型。这些模型在相同条件下的可变性表示精神病的病理生理学。与正常大脑相比,异常大脑的功能模型具有不同的生理连通性模式。这些异常的鉴定可能对临床诊断和预后具有有益的意义。它也可能有助于预测抗抑郁药的治疗反应。本文提供了使用功能磁共振成像(fMRI)的重度抑郁症(MDD)病理生理功能模型的描述。

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