Tong S, Bezerianos A, Paul J, Zhu Y, Thakor N
Department of Biomedical Engineering, School of Medicine, Johns Hopkins University, Traylor 701, 720 Rutland Avenue, Baltimore, MD 21205, USA.
J Neurosci Methods. 2001 Jul 15;108(1):11-7. doi: 10.1016/s0165-0270(01)00366-1.
In experiments involving small animals, the electroencephalogram (EEG) recorded during severe injury and accompanying resuscitation exhibit the strong presence of electrocardiogram (ECG). For improved quantitative EEG (qEEG) analysis, it is therefore imperative to remove ECG interference from EEG. In this paper, we validate the use of independent component analysis (ICA) to effectively suppress the interference of ECG from EEG recordings during normal activity, asphyxia and recovery following asphyxia. Two channels of EEG from five rats were recorded continuously for 2 h. Simultaneous recording of one channel ECG was also made. Epochs of 4 s and 1 min were selected from baseline, asphyxia and recovery (every 10 min) and their independent components and power spectra were calculated. The improvement in normalized power spectrum of EEG obtained for all animals was 7.71+/-3.63 db at the 3rd minute of recovery and dropped to 1.15+/-0.60 db at 63rd minute. The application of ICA has been particularly useful when the power of EEG is low, such as that observed during early brain hypoxic-asphyxic injury. The method is also useful in situations where accurate indications of EEG signal power and frequency content are needed.
在涉及小动物的实验中,在严重损伤及伴随的复苏过程中记录的脑电图(EEG)显示出强烈的心电图(ECG)信号。因此,为了改进定量脑电图(qEEG)分析,必须从脑电图中去除心电图干扰。在本文中,我们验证了使用独立成分分析(ICA)来有效抑制正常活动、窒息以及窒息复苏过程中脑电图记录中的心电图干扰。连续记录了5只大鼠的两个脑电图通道,时长为2小时。同时还记录了一个心电图通道。从基线、窒息和复苏阶段(每10分钟)选取4秒和1分钟的时间段,并计算其独立成分和功率谱。所有动物在复苏第3分钟时脑电图归一化功率谱的改善为7.71±3.63分贝,在第63分钟时降至1.15±0.60分贝。当脑电图功率较低时,如在早期脑缺氧-窒息损伤期间观察到的情况,ICA的应用特别有用。该方法在需要准确指示脑电图信号功率和频率成分的情况下也很有用。