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The relationship between the amplitude and phase of alpha waves and the task existence in a single stimulus paradigm

机译:α波的幅度与阶段与单个刺激范式中的任务存在之间的关系

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Summary In this paper, we studied the relationship between the amplitude and phase of an alpha wave and task existence as a first step to investigating changes in the background wave after sensory stimulus. We examined the effect of a single sensory stimulus, visual or auditory, on the amplitude and the phase of alpha waves using a complex demodulation method. This experiment was performed with four conditions, which were combinations of two kinds of tasks, task and no task, and two kinds of sensory stimulus, visual and auditory. A flash pulse was used as the visual stimulus and a. tone burst sound as an auditory stimulus in the eyes-closed condition. As a result, the amplitude in the task condition was larger than in the no task condition. Alpha blocking and rebound after the stimulus appears, regardless of the kind of sensory stimulus, whether a visual or an auditory stimulus. However, that on the task condition in the visual stimulus is not so prominent. We saw two peaks in the rebound section. One appears just after the alpha blocking and the other appears at around 2000 ms. The degree of alpha blocking on the task is larger than that on no task. However, the degree of rebound on the task is nearly the same as with that of no task. As for the phase change, it varied in the section from after the stimulus onset to 2500 ms after the stimulus. This phenomenon is more prominent in the visual stimulus compared with the auditory stimulus. The phase change returned to the level it was at before the stimulus, at around 3000ms.
机译:发明内容本文研究了α波浪的幅度和相位与任务存在之间的关系作为调查感官刺激后背景波的变化的第一步。我们使用复杂的解调方法检查了单个感官刺激,视觉或听觉的振幅和α波的振幅和相位的效果。该实验进行了四种条件,这是两种任务,任务和无任务的组合,以及两种感官刺激,视觉和听觉。闪光脉冲用作视觉刺激和a。色调在眼睛闭合状态下作为听觉刺激。结果,任务条件中的幅度大于无任务条件中的幅度。无论感觉刺激的种类如何,无论是视觉还是听觉刺激,alpha阻止和反弹。但是,在视觉刺激中的任务条件下不太突出。我们在回弹部分看到了两个峰。一个出现在alpha阻塞之后,另一个在2000毫秒左右出现。任务上的alpha阻止程度大于无任务的程度。但是,任务上的反弹程度与无任务的反弹程度几乎相同。至于相变,在刺激后刺激后的刺激发生至2500毫秒的部分中变化。与听觉刺激相比,这种现象在视觉刺激方面更为突出。相变返回到刺激前的水平,约为3000ms。

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