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首页> 外文期刊>Progress in Neuro-Psychopharmacology & Biological Psychiatry: An International Research, Review and News Journal >A supplementary functional connectivity microstate attached to the default mode network in depression revealed by resting-state magnetoencephalography
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A supplementary functional connectivity microstate attached to the default mode network in depression revealed by resting-state magnetoencephalography

机译:附加到休息状态磁性脑图的抑郁症中默认模式网络的补充功能连接微杆状

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摘要

Default mode network (DMN) has discernable involvement in the representation of negative, self-referential information in depression. Both increased and decreased resting-state functional connectivity between the anterior and posterior DMN have been observed in depression. These conflicting connectivity differences necessitated further exploration of the resting-state DMN dysfunction in depression. Hence, we investigated the time-varying dynamic interactions within the DMN via functional connectivity microstates in a sub-second level. 25 patients with depression and 25 matched healthy controls were enrolled in the MEG analysis. Spherical Kmeans algorithms embedded within an iterative optimization frame were applied to sliding windowed correlation matrices, resulting in sub-second alternations of two functional connectivity microstates for groups and highlighting the presence of functional variability. In the power dominant state, depressed patients showed a transient decreased pattern that reflected inter/intra-subnetwork deregulation. A supplementary negatively correlated state simultaneously presented with increased connectivity between the ventromedial prefrontal cortex (vmPFC) and the posterior cingulate cortex (PCC), two core nodes for the anterior and posterior DMN respectively. Additionally, depressed patients stayed longer in the supplementary microstate compared to healthy controls. During the time spent in the supplementary microstate, an attempt to compensate for the aberrant effect of vmPFC on PCC across DMN subnetworks was possibly made to balance the self-related processes disturbed by the dominant pattern. The functional compensation mechanism of the supplementary microstate attached to the dominant disrupted one provided a possible explanation to the existing inconsistent findings between the anterior and posterior DMN in depression.
机译:默认模式网络(DMN)可辨认参与抑郁症中的负数,自引导信息的否定信息。在抑郁症中观察到前后DMN之间的静息和静态功能性连接增加和减少。这些相互矛盾的连接差异需要进一步探讨抑郁症的静态DMN功能障碍。因此,我们调查了通过在子二级的功能连接微杆菌在DMN内的时变动态相互作用。 25例抑郁症和25例匹配的健康对照患者注册了MEG分析。嵌入在迭代优化帧内的球面jmeans算法被应用于滑动窗口的相关矩阵,导致两个功能连接微溶液的次级交替,并突出显示功能变异性的存在。在功率优势状态下,抑郁症患者显示出瞬态减少的模式,反映了间/内克内的放松统计。辅助负相关状态同时呈现腹侧前额定皮层(VMPFC)与后刺型皮质(PCC)之间的连接性增加,分别为前和后部DMN的两个核心节点。此外,与健康对照相比,抑郁症患者在补充微杆菌中保持较长。在补充微溶液中花费的时间内,可能会试图弥补VMPFC跨DMN子网的PCC的异常效应,以平衡由主导模式受到干扰的自相关过程。附着在主导地位的补充微杆状的功能补偿机制是对抑郁症中的前后DMN之间存在的现有不一致结果提供了可能的解释。

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