Center for MR-Research, University Children's Hospital Zurich, Steinwiesstrasse 75, CH-8032, Zurich, Switzerland.
Brain Topogr. 2013 Jul;26(3):442-57. doi: 10.1007/s10548-012-0265-7. Epub 2012 Nov 18.
While several studies have investigated interactions between the electroencephalography (EEG) and functional magnetic resonance imaging BOLD signal fluctuations, less is known about the associations between EEG oscillations and baseline brain haemodynamics, and few studies have examined the link between EEG power outside the alpha band and baseline perfusion. Here we compare whole-brain arterial spin labelling perfusion MRI and EEG in a group of healthy adults (n = 16, ten females, median age: 27 years, range 21-48) during an eyes closed rest condition. Correlations emerged between perfusion and global average EEG power in low (delta: 2-4 Hz and theta: 4-7 Hz), middle (alpha: 8-13 Hz), and high (beta: 13-30 Hz and gamma: 30-45 Hz) frequency bands in both cortical and sub-cortical regions. The correlations were predominately positive in middle and high-frequency bands, and negative in delta. In addition, central alpha frequency positively correlated with perfusion in a network of brain regions associated with the modulation of attention and preparedness for external input, and central theta frequency correlated negatively with a widespread network of cortical regions. These results indicate that the coupling between average EEG power/frequency and local cerebral blood flow varies in a frequency specific manner. Our results are consistent with longstanding concepts that decreasing EEG frequencies which in general map onto decreasing levels of activation.
虽然已有几项研究调查了脑电图(EEG)和功能磁共振成像 BOLD 信号波动之间的相互作用,但对于 EEG 振荡与基线大脑血液动力学之间的关联知之甚少,并且很少有研究检查了 alpha 带外的 EEG 功率与基线灌注之间的联系。在这里,我们在一组健康成年人(n=16,女性 10 名,中位数年龄:27 岁,范围 21-48 岁)闭眼休息状态下比较了全脑动脉自旋标记灌注 MRI 和 EEG。在皮质和皮质下区域的低频(delta:2-4 Hz 和 theta:4-7 Hz)、中频(alpha:8-13 Hz)和高频(beta:13-30 Hz 和 gamma:30-45 Hz)频段中,灌注与全局平均 EEG 功率之间均出现相关性。在中频和高频频段中,相关性主要为正,而在 delta 频段中为负。此外,中央 alpha 频率与与注意力调节和对外界输入准备相关的脑区网络中的灌注呈正相关,中央 theta 频率与广泛的皮质区域网络呈负相关。这些结果表明,平均 EEG 功率/频率与局部脑血流之间的耦合以特定频率的方式变化。我们的结果与长期以来的概念一致,即 EEG 频率的降低通常与激活水平的降低相对应。