Leistedt Samuël J J, Coumans Nathalie, Dumont Martine, Lanquart Jean-Pol, Stam Cornelis J, Linkowski Paul
Sleep Unit and Laboratory of Psychiatric Research, Department of Psychiatry, Erasme Academic Hospital, Université Libre de Bruxelles, Brussels, Belgium.
Hum Brain Mapp. 2009 Jul;30(7):2207-19. doi: 10.1002/hbm.20662.
Recent evidence suggests that problems in information processing within neural networks may underlie depressive disease. In this study, we investigated whether sleep functional brain networks are abnormally organized during a major depressive episode (MDE). We characterized spatial patterns of functional connectivity by computing the "synchronization likelihood" (SL) of 19 sleep EEG channels in 11 acutely depressed patients [42 (20-51) years] and 14 healthy controls [32.9 (27-42) years]. To test whether disrupting an optimal pattern ["small-world network" (SWN)] of functional brain connectivity underlies MDE, graph theoretical measures were then applied to the resulting synchronization matrices, and a clustering coefficient (C, measure of local connectedness) and a shortest path length (L, measure of overall network integration) were determined. In the depressed group, the mean SL was lower in the delta, theta and sigma frequency bands. Acutely depressed patients showed a significantly lower path length in the theta and delta frequency bands, whereas the cluster coefficient showed no significant changes. The present study provides further support that sleep functional brain networks exhibit "small-world" properties. Sleep neuronal functional networks in depressed patients are characterized by a functional reorganization with a lower mean level of global synchronization and loss of SWN characteristics. These results argue for considering an MDE as a problem of neuronal network organization and a problem of information processing.
最近的证据表明,神经网络内信息处理方面的问题可能是抑郁症的潜在原因。在本研究中,我们调查了在重度抑郁发作(MDE)期间睡眠功能性脑网络是否组织异常。我们通过计算11名急性抑郁症患者[42(20 - 51)岁]和14名健康对照者[32.9(27 - 42)岁]的19个睡眠脑电图通道的“同步似然性”(SL)来表征功能连接的空间模式。为了测试破坏功能性脑连接的最佳模式[“小世界网络”(SWN)]是否是MDE的潜在原因,然后将图论测量应用于所得的同步矩阵,并确定聚类系数(C,局部连通性的度量)和最短路径长度(L,整体网络整合的度量)。在抑郁症组中,δ、θ和σ频段的平均SL较低。急性抑郁症患者在θ和δ频段的路径长度明显较低,而聚类系数没有显著变化。本研究进一步支持睡眠功能性脑网络具有“小世界”特性。抑郁症患者的睡眠神经元功能网络的特征是功能重组,整体同步的平均水平较低且丧失了SWN特征。这些结果表明应将MDE视为神经元网络组织问题和信息处理问题。