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EFFICACY STUDY OF EMBEDDED BINAURAL BEATS IN GAMMA BRAINWAVE SYNCHRONIZATION

机译:嵌入双耳节拍在伽玛脑波同步中的疗效研究

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Electrical impulses and chemical activities in human brain generate brain waves at frequency domains ranging between 0.5 Hz and 100 Hz that characterize different mental states. The states of attention and focus can be traced to areas within the prefrontal cortex (PFC) of the brain at gamma brainwave frequencies of about 40 Hz and above. The cerebral brain cells can be synchronized to a desired frequency by externally stimulating the cells using acoustical means such as binaural beats (BB). Exposure to pure beats can be annoying and stressful to the listener. BB signals embedded in a background audio could provide better listening comfort to the subject. This paper presents a study on the efficacy of embedded BB in gamma-domain brainwave synchronization. Electroencephalograph signals indicative of the auditory evoked potential (AEP) on test subjects due to resonance of the PFC with the induced aural stimuli are measured. It is observed that the BB signals masked in an audio background give AEP values that are on average 92% similar to that generated by pure BB. The results indicate that the embedded BB has an effect comparable to pure BB on the AEP measured at selected PFC locations at the 40 Hz gamma frequency.
机译:人脑中的电脉冲和化学活性在频率域之间产生脑波,其介于0.5Hz和100Hz,其表征不同的精神状态。关注和关注的状态可以追溯到大脑前甲状腺皮质(PFC)内的区域,γ脑波频率约为40 Hz及以上。通过使用诸如双耳节拍(BB)的声学装置,通过外部刺激细胞,可以将脑脑细胞与所需频率同步。暴露于纯节拍可能对听众感到烦恼。 BB信号嵌入在后台音频可以为主题提供更好的聆听舒适性。本文介绍了嵌入式BB在伽马结构域脑波同步中的疗效研究。测量指示由于PFC的共振与诱导的耳刺激引起的检测受试者的听觉诱发电位(AEP)的脑电图信号。观察到在音频背景中掩蔽的BB信号为AEP值提供平均92%的值与纯BB产生的相似。结果表明,嵌入式BB的效果与在40Hz伽马频率的选定的PFC位置处测量的AEP上的纯BB相当。

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