Makeig S, Inlow M
Cognitive Performance and Psychophysiology Department, Naval Health Research Center, San Diego 92186-5122.
Electroencephalogr Clin Neurophysiol. 1993 Jan;86(1):23-35. doi: 10.1016/0013-4694(93)90064-3.
Thirteen subjects detected noise burst targets presented in a white noise background at a mean rate of 10/min. Within each session, local error rate, defined as the fraction of targets detected in a 33 sec moving window, fluctuated widely. Mean coherence between slow mean variations in EEG power and in local error rate was computed for each EEG frequency and performance cycle length, and was shown by a Monte Carlo procedure to be significant for many EEG frequencies and performance cycle lengths, particularly in 4 well-defined EEG frequency bands, near 3, 10, 13, and 19 Hz, and at higher frequencies in two cycle length ranges, one longer than 4 min and the other near 90 sec/cycle. The coherence phase plane contained a prominent phase reversal near 6 Hz. Sorting individual spectra by local error rate confirmed the close relation between performance and EEG power and its relative within-subject stability. These results show that attempts to maintain alertness in an auditory detection task result in concurrent minute and multi-minute scale fluctuations in performance and the EEG power spectrum.
13名受试者检测出在白噪声背景中以平均每分钟10次的速率呈现的噪声突发目标。在每个实验环节中,局部错误率(定义为在33秒移动窗口内检测到的目标比例)波动很大。针对每个脑电频率和表现周期长度,计算了脑电功率的缓慢平均变化与局部错误率之间的平均相干性,并通过蒙特卡洛程序表明,对于许多脑电频率和表现周期长度而言,这种相干性是显著的,特别是在4个明确的脑电频段,接近3Hz、10Hz、13Hz和19Hz,以及在两个周期长度范围内的较高频率处,一个周期长度大于4分钟,另一个接近90秒/周期。相干相平面在6Hz附近包含一个明显的相位反转。按局部错误率对个体频谱进行排序,证实了表现与脑电功率之间的密切关系及其在受试者内部的相对稳定性。这些结果表明,在听觉检测任务中试图保持警觉会导致表现和脑电功率谱同时出现分钟级和多分钟级的波动。