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首页> 外文期刊>The European Journal of Neuroscience >Intracranial electroencephalography power and phase synchronization changes during monaural and binaural beat stimulation
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Intracranial electroencephalography power and phase synchronization changes during monaural and binaural beat stimulation

机译:单耳和双耳搏动刺激期间颅内脑电图功率和相位同步变化

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Auditory stimulation with monaural or binaural auditory beats (i.e. sine waves with nearby frequencies presented either to both ears or to each ear separately) represents a non-invasive approach to influence electrical brain activity. It is still unclear exactly which brain sites are affected by beat stimulation. In particular, an impact of beat stimulation on mediotemporal brain areas could possibly provide new options for memory enhancement or seizure control. Therefore, we examined how electroencephalography (EEG) power and phase synchronization are modulated by auditory stimulation with beat frequencies corresponding to dominant EEG rhythms based on intracranial recordings in presurgical epilepsy patients. Monaural and binaural beat stimuli with beat frequencies of 5, 10, 40 and 80Hz and non-superposed control signals were administered with low amplitudes (60dBSPL) and for short durations (5s). EEG power was intracranially recorded from mediotemporal, temporo-basal and temporo-lateral and surface sites. Evoked and total EEG power and phase synchronization during beat vs. control stimulation were compared by the use of Bonferroni-corrected non-parametric label-permutation tests. We found that power and phase synchronization were significantly modulated by beat stimulation not only at temporo-basal, temporo-lateral and surface sites, but also at mediotemporal sites. Generally, more significant decreases than increases were observed. The most prominent power increases were seen after stimulation with monaural 40-Hz beats. The most pronounced power and synchronization decreases resulted from stimulation with monaural 5-Hz and binaural 80-Hz beats. Our results suggest that beat stimulation offers a non-invasive approach for the modulation of intracranial EEG characteristics.
机译:单耳或双耳听觉节律的听觉刺激(即以双耳或双耳分别出现在附近频率的正弦波)代表一种影响脑电活动的非侵入性方法。尚不清楚究竟哪个大脑部位受到搏动刺激的影响。特别是,节拍刺激对颞下脑区的影响可能为记忆增强或癫痫发作控制提供新的选择。因此,我们根据术前癫痫患者的颅内记录,研究了听觉刺激如何通过听觉刺激来调节脑电图(EEG)功率和相位同步,其搏动频率与占主导地位的EEG节律相对应。拍频为5、10、40和80Hz的单耳和双耳搏动刺激和非叠加的控制信号以低振幅(60dBSPL)并持续很短的时间(5s)给予。从中颞,颞基底,颞外侧和表面部位颅内记录脑电图。通过使用Bonferroni校正的非参数标签置换测试,比较了搏动与对照刺激之间的诱发和总EEG功率及相位同步。我们发现功率和相位同步不仅在颞基底,颞外侧和表面部位而且在中颞部位受搏动刺激显着调节。通常,观察到下降比上升更显着。单声道40 Hz拍刺激后,功率增加最为明显。最明显的功率和同步性降低是由单声道5 Hz和双耳80 Hz拍频刺激引起的。我们的结果表明,搏动刺激为颅内脑电图特征的调制提供了一种非侵入性方法。

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