Zhao Qinglin, Jiang Hua, Hu Bin, Li Yonghui, Zhong Ning, Li Mi, Lin Wenhua, Liu Quanying
IEEE Trans Nanobioscience. 2017 Jul;16(5):349-355. doi: 10.1109/TNB.2017.2705689.
It has been reported that chronic heroin intake induces both structural and functional changes in human brain; however, few studies have investigated the carry-over adverse effects on brain after heroin withdrawal. In this paper, we examined the neurophysiological differences between the abstinent heroin addicts (AHAs) and healthy controls (HCs) using nonlinear dynamic analysis and source localization analysis in resting-state electroencephalogram (EEG) data; 5 min resting EEG data from 20 AHAs and twenty age-, education-, and gender-matched HCs were recorded using 64 electrodes. The results of nonlinear characteristics (e.g., the correlation dimension, Kolmogorov entropy, and Lempel-Ziv complexity) showed that the EEG signals in alpha band from AHAs were significantly more irregular. Moreover, the source localization results confirmed the neuronal activities in alpha band in AHAs were significantly weaker in parietal lobe (BA3 and BA7), frontal lobe (BA4 and BA6), and limbic lobe (BA24). Together, our analysis at both the sensor level and source level suggested the functional abnormalities in the brain during heroin abstinence, in particular for the neuronal oscillations in alpha band.
据报道,长期吸食海洛因会导致人脑发生结构和功能变化;然而,很少有研究调查过海洛因戒断后对大脑的残留不良影响。在本文中,我们使用非线性动力学分析和静息态脑电图(EEG)数据的源定位分析,研究了戒断海洛因成瘾者(AHA)与健康对照者(HC)之间的神经生理学差异;使用64个电极记录了20名AHA和20名年龄、教育程度及性别匹配的HC的5分钟静息EEG数据。非线性特征(如关联维数、柯尔莫哥洛夫熵和莱姆尔-齐夫复杂度)的结果表明,AHA的α波段EEG信号明显更不规则。此外,源定位结果证实,AHA的α波段在顶叶(BA3和BA7)、额叶(BA4和BA6)和边缘叶(BA24)的神经元活动明显较弱。总之,我们在传感器水平和源水平的分析表明,海洛因戒断期间大脑存在功能异常,尤其是α波段的神经元振荡。