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Causal connectivity alterations of cortical-subcortical circuit anchored on reduced hemodynamic response brain regions in first-episode drug-naïve major depressive disorder

机译:首次药物性初次重度抑郁症患者的血流动力学响应大脑区域锚定的皮下皮质回路的因果关系改变

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摘要

Some efforts were done to investigate the disruption of brain causal connectivity networks involved in major depressive disorder (MDD) using Granger causality (GC) analysis. However, the homogenous hemodynamic response function (HRF) assumption over the brain may disturb the inference of temporal precedence. Here we applied a blind deconvolution approach to examine the altered HRF shape in first-episode, drug-naïve MDD patients. The regions with abnormal HRF shape in patients were chosen as seeds to detect the GC alterations in MDD. The results demonstrated significantly decreased magnitude of spontaneous hemodynamic response of the orbital frontal cortex (OFC) and the caudate nucleus (CAU) in MDD comparing to healthy controls, suggesting MDD patients likely had alterations in neurovascular coupling and cerebrovascular physiology in these two regions. GC mapping showed increased/decreased GC in OFC-/CAU centered networks in MDD. The outgoing GC values from OFC to anterior cingulate cortex and occipital regions were positively correlated with Hamilton Depression Scale (HAMD) scores, while the incoming GC from insula, middle and superior temporal gyrus to CAU were negatively correlated with HAMD scores of MDD. The abnormalities of directional connections in the cortico-subcortico-cerebellar network may lead to unbalanced integrating the emotional-related information for MDD, and further exacerbating depressive symptoms.
机译:使用格兰杰因果关系(GC)分析,进行了一些努力来调查涉及重大抑郁症(MDD)的脑因果连接网络的破坏。但是,大脑的同质血液动力学响应函数(HRF)假设可能会干扰时间优先顺序的推论。在这里,我们应用了盲反卷积方法来检查初次发作,未使用过药物的MDD患者的HRF形状改变。选择患者中HRF形状异常的区域作为种子,以检测MDD中的GC改变。结果表明,与健康对照组相比,MDD中眶额皮质(OFC)和尾状核(CAU)的自发血液动力学响应的幅度明显降低,这表明MDD患者在这两个区域的神经血管耦合和脑血管生理状况可能发生了变化。 GC映射显示MDD中以OFC- / CAU为中心的网络中GC的增加/减少。从OFC到前扣带回皮层和枕叶区域的GC值与汉密尔顿抑郁量表(HAMD)得分呈正相关,而从岛上,颞上回和颞上回到CAU的GC值与MDD的HAMD得分呈负相关。皮质-皮质下-小脑网络中的方向性连接异常可能导致MDD的情绪相关信息整合不平衡,从而进一步加剧抑郁症状。

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