Abnormal multi-layered dynamic cortico-subcortical functional connectivity in major depressive disorder and generalized anxiety disorder

广泛性焦虑症 重性抑郁障碍 神经科学 心理学 神经影像学 静息状态功能磁共振成像 动态功能连接 眶额皮质 焦虑 额中回 精神科 扁桃形结构 功能磁共振成像 认知 前额叶皮质
作者
Qi Liu,Bo Zhou,Xiaodong Zhang,Peng Qing,Xinqi Zhou,Feng Zhou,Xiaolei Xu,Siyu Zhu,Jing Dai,Yulan Huang,Jinyu Wang,Zhili Zou,Keith M. Kendrick,Benjamin Becker,Weihua Zhao
出处
期刊:Journal of Psychiatric Research [Elsevier BV]
卷期号:167: 23-31 被引量:4
标识
DOI:10.1016/j.jpsychires.2023.10.004
摘要

Comorbidity has been frequently observed between generalized anxiety disorder (GAD) and major depressive disorder (MDD), however, common and distinguishable alterations in the topological organization of functional brain networks remain poorly understood. We sought to determine a robust and sensitive functional connectivity marker for diagnostic classification and symptom severity prediction. Multi-layered dynamic functional connectivity including whole brain, network-node and node-node layers via graph theory and gradient analyses were applied to functional MRI resting-state data obtained from 31 unmedicated GAD and 34 unmedicated MDD patients as well as 33 age and education matched healthy controls (HC). GAD and MDD symptoms were assessed using Penn State Worry Questionnaire and Beck Depression Inventory II, respectively. Three network measures including global properties (i.e., global efficiency, characteristic path length), regional nodal property (i.e., degree) and connectivity gradients were computed. Results showed that both patient groups exhibited abnormal dynamic cortico-subcortical topological organization compared to healthy controls, with MDD > GAD > HC in degree of randomization. Furthermore, our multi-layered dynamic functional connectivity network model reached 77% diagnostic accuracy between GAD and MDD and was highly predictive of symptom severity, respectively. Gradients of functional connectivity for superior frontal cortex-subcortical regions, middle temporal gyrus-subcortical regions and amygdala-cortical regions contributed more in this model compared to other gradients. We found shared and distinct cortico-subcortical connectivity features in dynamic functional brain networks between GAD and MDD, which together can promote the understanding of common and disorder-specific topological organization dysregulations and facilitate early neuroimaging-based diagnosis.
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