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Nonlinear dynamic analysis of resting EEG alpha activity for heroin addicts

机译:海洛因成瘾者休息EEGα活动的非线性动力学分析

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It has been reported that chronic heroin intake induces changes in central nervous system of human brain; however, few studies investigate the carry-over adverse effects on brain after heroin withdrawal. In this work we examined the alpha rhythms of resting-state Electroencephalogram (EEG) signals to measure the neuroelectrical differences between the heroin addicts after heroin withdrawal and normal control. Eyes-closed resting EEG signals from 20 heroin addicts with the abstinence length ranging from 4-16 months and 20 normal controls were recorded using 64 electrodes. Comparing the nonlinear characteristics of EEG signals, such as the correlation dimension, Kolmogorov entropy and Lempel-Ziv complexity, we found that the EEG signals from heroin addicts were significantly more irregular than those from normal controls. Furthermore, the topography of the each nonlinear feature was examined, and the abnormal changes were widely spread over the brain. These findings suggest that nonlinear methods may contribute to gain new insights into brain dysfunction in heroin addicts even after heroin abstinence.
机译:据报道,慢性海洛因摄入诱导人脑中枢神经系统的变化;然而,很少有研究调查海洛因戒断后对大脑的持续不良影响。在这项工作中,我们检查了休息状态脑电图(EEG)信号的alpha节律,以测量海洛因戒断和正常对照后海洛因成瘾者之间的神经电差异。使用64个电极记录来自4-16个月和20个正常对照的禁欲长度的20海洛因成瘾者的眼睛闭合的EEG信号。比较EEG信号的非线性特性,例如相关维,Kolmogorov熵和LEMPEL-ZIV复杂性,我们发现来自海洛因成瘾者的EEG信号比来自正常对照的人显着更不规则。此外,检查了每个非线性特征的地形,并且异常变化在大脑上广泛传播。这些研究结果表明,即使在海洛因禁欲之后,非线性方法也可能导致新的脑功能障碍进入海洛因成瘾者的脑功能障碍。

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