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Brain wave synchronization and entrainment to periodic acoustic stimuli.

机译:脑电波同步和周期性听觉刺激的夹带。

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摘要

As known, different brainwave frequencies show synchronies related to different perceptual, motor or cognitive states. Brainwaves have also been shown to synchronize with external stimuli with repetition rates of ca. 10-40 Hz. However, not much is known about responses to periodic auditory stimuli with periodicities found in human rhythmic behavior (i.e. 0.5-5 Hz). In an EEG study we compared responses to periodic stimulations (drum sounds and clicks with repetition rates of 1-8 Hz), silence, and random noise. Here we report inter-trial coherence measures taken at the Cz-electrode that show a significant increase in brainwave synchronization following periodic stimulation. Specifically, we found (1) a tonic synchronization response in the delta range with a maximum response at 2 Hz, (2) a phasic response covering the theta range, and (3) an augmented phase synchronization throughout the beta/gamma range (13-44 Hz) produced through increased activity in the lower gamma range and modulated by the stimulus periodicity. Periodic auditory stimulation produces a mixture of evoked and induced, rate-specific and rate-independent increases in stimulus related brainwave synchronization that are likely to affect various cognitive functions. The synchronization responses in the delta range may form part of the neurophysiological processes underlying time coupling between rhythmic sensory input and motor output; the tonic 2 Hz maximum corresponds to the optimal tempo identified in listening, tapping synchronization, and event-interval discrimination experiments. In addition, synchronization effects in the beta and gamma range may contribute to the reported influences of rhythmic entrainment on cognitive functions involved in learning and memory tasks.
机译:众所周知,不同的脑电波频率显示出与不同的知觉,运动或认知状态相关的同步性。脑电波也已显示与外部刺激同步,重复频率约为。 10-40赫兹。然而,关于以人类有节奏的行为(即0.5-5Hz)中发现的周期性对周期性听觉刺激的响应知之甚少。在一项脑电图研究中,我们比较了对周期性刺激(鼓声和咔嗒声的重复频率为1-8 Hz),静音和随机噪声的响应。在这里,我们报告在Cz电极上进行的试验间相关性测量,这些测量表明周期性刺激后脑电波同步性显着增加。具体来说,我们发现(1)增量范围内的音调同步响应,最大响应为2 Hz,(2)覆盖theta范围的相位响应,以及(3)在整个beta /γ范围内增强的相位同步(13 -44 Hz)是通过在较低的伽玛范围内增加活动而产生的,并受到刺激周期性的调节。周期性的听觉刺激会在与刺激有关的脑电波同步中引起诱发性和诱发性,特定于速率和独立于速率的混合刺激,这可能会影响各种认知功能。增量范围内的同步响应可能会形成有节奏的感觉输入和运动输出之间时间耦合的神经生理过程的一部分。最大的2 Hz音调对应于在收听,敲击同步和事件间隔识别实验中确定的最佳速度。此外,β和γ范围内的同步效应可能会导致节律性夹带对参与学习和记忆任务的认知功能产生影响。

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