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Human auditory steady state responses to binaural and monaural beats.

机译:人类听觉稳态对双耳和单耳搏动的反应。

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OBJECTIVE: Binaural beat sensations depend upon a central combination of two different temporally encoded tones, separately presented to the two ears. We tested the feasibility to record an auditory steady state evoked response (ASSR) at the binaural beat frequency in order to find a measure for temporal coding of sound in the human EEG. METHODS: We stimulated each ear with a distinct tone, both differing in frequency by 40Hz, to record a binaural beat ASSR. As control, we evoked a beat ASSR in response to both tones in the same ear. We band-pass filtered the EEG at 40Hz, averaged with respect to stimulus onset and compared ASSR amplitudes and phases, extracted from a sinusoidal non-linear regression fit to a 40Hz period average. RESULTS: A 40Hz binaural beat ASSR was evoked at a low mean stimulus frequency (400Hz) but became undetectable beyond 3kHz. Its amplitude was smaller than that of the acoustic beat ASSR, which was evoked at low and high frequencies. Both ASSR types had maxima at fronto-centralleads and displayed a fronto-occipital phase delay of several ms. CONCLUSIONS: The dependence of the 40Hz binaural beat ASSR on stimuli at low, temporally coded tone frequencies suggests that it may objectively assess temporal sound coding ability. The phase shift across the electrode array is evidence for more than one origin of the 40Hz oscillations. SIGNIFICANCE: The binaural beat ASSR is an evoked response, with novel diagnostic potential, to a signal that is not present in the stimulus, but generated within the brain.
机译:目的:双耳节拍感觉取决于分别呈现给两只耳朵的两种不同的时间编码音调的中央组合。我们测试了在双耳节拍频率下记录听觉稳态诱发反应(ASSR)的可行性,以便找到一种测量人类EEG中声音的时间编码的方法。方法:我们用不同的音调刺激每只耳朵,两者的频率相差40Hz,以记录双耳节拍ASSR。作为对照,我们针对同一只耳朵的两种音调唤起了节拍ASSR。我们对40Hz的脑电进行带通滤波,对刺激发作进行平均,并比较从40Hz周期平均值的正弦非线性回归拟合中提取的ASSR振幅和相位。结果:在低平均刺激频率(400Hz)下诱发了40Hz双耳搏动ASSR,但在3kHz以上无法检测到。它的幅度小于低频和高频诱发的声拍ASSR。两种类型的ASSR的额中-前导线都有最大值,并且额枕相位延迟为数ms。结论:40Hz双耳节拍ASSR在低的,时间编码的音调频率下对刺激的依赖性表明,它可以客观地评估时间声音的编码能力。电极阵列上的相移是40Hz振荡不止一个起源的证据。重要性:双耳搏动ASSR是对刺激中不存在,但在大脑中产生的信号的诱发反应,具有新颖的诊断潜力。

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