Ferdek Magdalena A, van Rijn Clementina M, Wyczesany Miroslaw
Donders Institute for Brain, Cognition, and Behaviour, Radboud University Nijmegen, Nijmegen, The Netherlands.
Psychophysiology Laboratory, Institute of Psychology, Jagiellonian University, PL-30060, Ingardena 6, Krakow, Poland.
Cogn Affect Behav Neurosci. 2016 Dec;16(6):1099-1113. doi: 10.3758/s13415-016-0456-x.
Ruminations are repetitive thoughts associated with symptoms, causes, and consequences of one's negative feelings. The objective of this study was to explore the neuronal basis of depressive rumination in a non-clinical population within the context of emotional control. Participants scoring high or low on the tendency to ruminate scale took part in the EEG experiment. Their EEG data were collected during a state of induced depressive ruminations and compared with positive and neutral conditions. We hypothesized that both groups would differ according to the level of activation and effective connectivity among the structures involved in the emotional control circuit. Clustering of independent components, together with effective connectivity (Directed Transfer Function), was performed using the EEG signal. The main findings involved decreased activation of the left dorsolateral prefrontal cortex (DLPFC) and increased activation of the left temporal lobe structures in the highly ruminating group. The latter result was most pronounced during the ruminative condition. Decreased information from the left DLPFC to the left temporal lobe structures was also found, leading to the conclusion that hypoactivation of the left DLPFC and its inability to modulate the activation of the left temporal lobe structures is crucial for the ruminative tendencies.
沉思是与一个人的负面情绪的症状、原因和后果相关的重复性思维。本研究的目的是在情绪控制的背景下,探索非临床人群中抑郁性沉思的神经基础。在沉思倾向量表上得分高或低的参与者参加了脑电图实验。在诱发抑郁性沉思的状态下收集他们的脑电图数据,并与积极和中性状态进行比较。我们假设两组在情绪控制回路中涉及的结构之间的激活水平和有效连接性方面会有所不同。使用脑电图信号进行独立成分聚类以及有效连接性(定向传递函数)分析。主要发现包括,在高沉思组中,左侧背外侧前额叶皮层(DLPFC)的激活减少,左侧颞叶结构的激活增加。后一个结果在沉思状态下最为明显。还发现从左侧DLPFC到左侧颞叶结构的信息减少,从而得出结论,左侧DLPFC的低激活及其无法调节左侧颞叶结构的激活对于沉思倾向至关重要。