Department of Biophysics, School of Medicine, Koc University, Istanbul, Turkey.
Department of Biophysics, Faculty of Medicine, Hacettepe University, Ankara, Turkey.
Exp Brain Res. 2019 Nov;237(11):2811-2828. doi: 10.1007/s00221-019-05638-4. Epub 2019 Aug 26.
There are only few electrophysiological studies on a phenomenon called "binaural beats" (BBs), which is experienced when two tones with frequencies close to each other are dichotically presented to the ears. And, there is no study in which the electrical responses of the brain to BBs of complex sounds are recorded and analyzed. Owing to a recent method based on single-cycle BB stimulation with sub-threshold temporary monaural frequency shifts, we could record the event-related potentials (ERPs) to BBs of a 250-Hz tone as well as those to the BBs of a 250/s click train and to the BBs of a recurrent 4-ms Gaussian noise. Although fundamental components of the click train and noise stimuli were lower in intensity than the tonal stimuli in our experiments, the N1 responses to the BBs of the former two wide-spectrum sounds were recorded with significantly larger amplitudes and shorter latencies than those to the BBs of a tone, suggesting an across-frequency integration of directional information. During a BB cycle of a complex sound, the interaural time differences (ITDs) of the spectral components are all equal to each other at any time; whereas their interaural phase differences (IPDs) are all different. The ITD rather than the IPD should, therefore, be the cue that is relied upon by the binaural mechanism coding the perceived lateral shifts of the sound caused by BBs. This is in line with across-frequency models of human auditory lateralization based on a common ITD, fulfilling a straightness criterion.
仅有少数几项关于双耳节拍(binaural beats,BBs)现象的电生理学研究,该现象在以接近的频率向双耳呈现两个音时会出现。而且,还没有研究记录和分析大脑对复杂声音的 BBs 的电反应。由于最近基于单周期 BB 刺激和亚阈值临时单耳频率偏移的方法,我们可以记录到 250-Hz 音调的 BBs 的事件相关电位(ERPs),以及对 250/s 点击音列的 BBs 和周期性 4-ms 高斯噪声的 BBs 的 ERPs。尽管在我们的实验中,点击音列和噪声刺激的基本成分的强度低于音调刺激,但对前两种宽频声音的 BBs 的 N1 反应的振幅和潜伏期都明显大于对音调的 BBs 的 N1 反应,这表明了跨频率的方向信息整合。在复杂声音的 BB 周期中,在任何时间,谱分量的耳间时间差(ITD)彼此相等;而它们的耳间相位差(IPD)则各不相同。因此,应该是 ITD 而不是 IPD 作为双耳机制编码由 BB 引起的声音感知侧移的线索。这与基于共同 ITD 的人类听觉侧化的跨频率模型一致,符合直线准则。