Department of Psychiatric Neurophysiology, University Hospital of Psychiatry, University of Bern, Bolligenstrasse 111, 3000 Bern 60, Switzerland.
Neuroimage. 2010 May 15;51(1):365-72. doi: 10.1016/j.neuroimage.2010.02.024. Epub 2010 Feb 13.
Cognitive task performance differs considerably between individuals. Besides cognitive capacities, attention might be a source of such differences. The individual's EEG alpha frequency (IAF) is a putative marker of the subject's state of arousal and attention, and was found to be associated with task performance and cognitive capacities. However, little is known about the metabolic substrate (i.e. the network) underlying IAF. Here we aimed to identify this network. Correlation of IAF with regional Cerebral Blood Flow (rCBF) in fifteen young healthy subjects revealed a network of brain areas that are associated with the modulation of attention and preparedness for external input, which are relevant for task execution. We hypothesize that subjects with higher IAF have pre-activated task-relevant networks and thus are both more efficient in the task-execution, and show a reduced fMRI-BOLD response to the stimulus, not because the absolute amount of activation is smaller, but because the additional activation by processing of external input is limited due to the higher baseline.
认知任务表现因人而异。除了认知能力外,注意力也可能是造成这种差异的原因之一。个体的脑电图阿尔法频率(IAF)是其觉醒和注意力状态的一个潜在标志物,并且与任务表现和认知能力相关。然而,IAF 的代谢基础(即网络)知之甚少。在这里,我们旨在确定这个网络。在 15 名年轻健康受试者中,IAF 与局部脑血流(rCBF)的相关性揭示了一个与注意力调节和对外界输入准备相关的脑区网络,这与任务执行相关。我们假设,IAF 较高的受试者具有预先激活的与任务相关的网络,因此在任务执行中效率更高,并且对刺激的 fMRI-BOLD 反应更小,这不是因为激活的绝对量较小,而是因为由于较高的基线,处理外部输入的额外激活受到限制。