Department of Basic Neurosciences, University of Geneva, Campus Biotech, Geneva, Switzerland.
Department of Psychiatry, Faculty of Medicine, Masaryk University, Brno, Czech Republic.
Sci Rep. 2020 Mar 10;10(1):4398. doi: 10.1038/s41598-020-61264-z.
The cortico-striatal-pallidal-thalamic and limbic circuits are suggested to play a crucial role in the pathophysiology of depression. Stimulation of deep brain targets might improve symptoms in treatment-resistant depression. However, a better understanding of connectivity properties of deep brain structures potentially implicated in deep brain stimulation (DBS) treatment is needed. Using high-density EEG, we explored the directed functional connectivity at rest in 25 healthy subjects and 26 patients with moderate to severe depression within the bipolar affective disorder, depressive episode, and recurrent depressive disorder. We computed the Partial Directed Coherence on the source EEG signals focusing on the amygdala, anterior cingulate, putamen, pallidum, caudate, and thalamus. The global efficiency for the whole brain and the local efficiency, clustering coefficient, outflow, and strength for the selected structures were calculated. In the right amygdala, all the network metrics were significantly higher (p < 0.001) in patients than in controls. The global efficiency was significantly higher (p < 0.05) in patients than in controls, showed no correlation with status of depression, but decreased with increasing medication intake ([Formula: see text]). The amygdala seems to play an important role in neurobiology of depression. Practical treatment studies would be necessary to assess the amygdala as a potential future DBS target for treating depression.
皮质纹状体苍白球丘脑和边缘回路被认为在抑郁症的病理生理学中起着关键作用。刺激深部脑目标可能会改善治疗抵抗性抑郁症的症状。然而,需要更好地了解深部脑刺激(DBS)治疗中潜在涉及的深部脑结构的连接特性。使用高密度 EEG,我们在 25 名健康受试者和 26 名患有中度至重度抑郁症的患者中,在双相情感障碍、抑郁发作和复发性抑郁障碍内,在休息时探索了深部脑结构的有向功能连接。我们在源 EEG 信号上计算了部分定向相干性,重点关注杏仁核、前扣带回、壳核、苍白球、尾状核和丘脑。计算了整个大脑的全局效率以及所选结构的局部效率、聚类系数、流出量和强度。在右侧杏仁核中,所有网络指标在患者中均明显高于对照组(p<0.001)。患者的全局效率明显高于对照组(p<0.05),与抑郁状态无关,但随着药物摄入的增加而降低([公式:见文本])。杏仁核似乎在抑郁症的神经生物学中起着重要作用。需要进行实际的治疗研究,以评估杏仁核作为治疗抑郁症的潜在未来 DBS 靶标。