Solcà Marco, Mottaz Anaïs, Guggisberg Adrian G
Division of Neurorehabilitation, Department of Clinical Neurosciences, University Hospital and University of Geneva, CH-1211 Geneva 14, Switzerland.
Division of Neurorehabilitation, Department of Clinical Neurosciences, University Hospital and University of Geneva, CH-1211 Geneva 14, Switzerland.
Hear Res. 2016 Feb;332:233-237. doi: 10.1016/j.heares.2015.09.011. Epub 2015 Nov 2.
Binaural beats (BBs) are an auditory illusion occurring when two tones of slightly different frequency are presented separately to each ear. BBs have been suggested to alter physiological and cognitive processes through synchronization of the brain hemispheres. To test this, we recorded electroencephalograms (EEG) at rest and while participants listened to BBs or a monaural control condition during which both tones were presented to both ears. We calculated for each condition the interhemispheric coherence, which expressed the synchrony between neural oscillations of both hemispheres. Compared to monaural beats and resting state, BBs enhanced interhemispheric coherence between the auditory cortices. Beat frequencies in the alpha (10 Hz) and theta (4 Hz) frequency range both increased interhemispheric coherence selectively at alpha frequencies. In a second experiment, we evaluated whether this coherence increase has a behavioral aftereffect on binaural listening. No effects were observed in a dichotic digit task performed immediately after BBs presentation. Our results suggest that BBs enhance alpha-band oscillation synchrony between the auditory cortices during auditory stimulation. This effect seems to reflect binaural integration rather than entrainment.
双耳节拍(BBs)是一种听觉错觉,当两个频率略有不同的音调分别呈现给每只耳朵时就会出现。有人提出双耳节拍通过大脑半球的同步来改变生理和认知过程。为了对此进行测试,我们在参与者休息时以及在他们听双耳节拍或单耳对照条件(即两个音调都呈现给两只耳朵)时记录脑电图(EEG)。我们针对每种条件计算了半球间相干性,它表示两个半球神经振荡之间的同步性。与单耳节拍和静息状态相比,双耳节拍增强了听觉皮层之间的半球间相干性。阿尔法(10赫兹)和西塔(4赫兹)频率范围内的节拍频率都在阿尔法频率上选择性地增加了半球间相干性。在第二个实验中,我们评估了这种相干性增加是否对双耳聆听有行为后效应。在双耳节拍呈现后立即进行的双耳数字任务中未观察到任何效应。我们的结果表明,双耳节拍在听觉刺激期间增强了听觉皮层之间的阿尔法波段振荡同步性。这种效应似乎反映了双耳整合而非夹带作用。