首页> 美国卫生研究院文献>Neuropsychopharmacology >Multimodal Investigation of Network Level Effects Using Intrinsic Functional Connectivity Anatomical Covariance and Structure-to-Function Correlations in Unmedicated Major Depressive Disorder
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Multimodal Investigation of Network Level Effects Using Intrinsic Functional Connectivity Anatomical Covariance and Structure-to-Function Correlations in Unmedicated Major Depressive Disorder

机译:在非药物性重性抑郁症中使用内在功能连通性解剖协方差和结构与功能的相关性对网络水平效应的多模式研究

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摘要

Converging evidence suggests that major depressive disorder (MDD) affects multiple large-scale brain networks. Analyses of the correlation or covariance of regional brain structure and function applied to structural and functional MRI data may provide insights into systems-level organization and structure-to-function correlations in the brain in MDD. This study applied tensor-based morphometry and intrinsic connectivity distribution to identify regions of altered volume and intrinsic functional connectivity in data from unmedicated individuals with MDD (n=17) and healthy comparison participants (HC, n=20). These regions were then used as seeds for exploratory anatomical covariance and connectivity analyses. Reduction in volume in the anterior cingulate cortex (ACC) and lower structural covariance between the ACC and the cerebellum were observed in the MDD group. Additionally, individuals with MDD had significantly lower whole-brain intrinsic functional connectivity in the medial prefrontal cortex (mPFC). This mPFC region showed altered connectivity to the ventral lateral PFC (vlPFC) and local circuitry in MDD. Global connectivity in the ACC was negatively correlated with reported depressive symptomatology. The mPFC–vlPFC connectivity was positively correlated with depressive symptoms. Finally, we observed increased structure-to-function correlation in the PFC/ACC in the MDD group. Although across all analysis methods and modalities alterations in the PFC/ACC were a common finding, each modality and method detected alterations in subregions belonging to distinct large-scale brain networks. These exploratory results support the hypothesis that MDD is a systems level disorder affecting multiple brain networks located in the PFC and provide new insights into the pathophysiology of this disorder.
机译:越来越多的证据表明,重大抑郁症(MDD)影响多个大规模的大脑网络。对应用于结构和功能MRI数据的区域大脑结构和功能的相关性或协方差进行分析,可以为MDD大脑中系统级组织和结构与功能的相关性提供见解。这项研究应用了基于张量的形态学和内在连通性分布,以识别来自患有MDD(n = 17)的非医疗个体和健康比较参与者(HC,n = 20)的数据中体积改变和内在功能连通性的区域。然后将这些区域用作探索性解剖协方差和连通性分析的种子。在MDD组中,观察到前扣带回皮质(ACC)体积减小以及ACC和小脑之间较低的结构协方差。此外,患有MDD的个体在内侧前额叶皮层(mPFC)中具有较低的全脑固有功能连接性。此mPFC区域显示了与腹侧PFC(vlPFC)和MDD中局部电路的连接性改变。 ACC的全球连通性与报告的抑郁症状呈负相关。 mPFC-vlPFC的连通性与抑郁症状呈正相关。最后,我们观察到MDD组中PFC / ACC中结构与功能的相关性增加。尽管在所有分析方法和模式中,PFC / ACC的改变都是常见的发现,但是每种模式和方法都检测到属于不同大规模脑网络的子区域中的改变。这些探索性结果支持以下假设:MDD是影响位于PFC中的多个脑网络的系统级疾病,并提供了对该疾病的病理生理学的新见解。

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