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EFFICACY STUDY OF EMBEDDED BINAURAL BEATS IN GAMMA BRAINWAVE SYNCHRONIZATION

机译:嵌入式双耳球在伽玛脑波同步中的功效研究

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摘要

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动会在频率范围从0.5 Hz到100 Hz的范围内产生脑波,这些波表征了不同的心理状态。注意力和注意力状态可以追溯到大脑的前额叶皮层(PFC)中约40 Hz或更高的伽马脑电波频率区域。通过使用诸如双耳节拍(BB)之类的声学方法从外部刺激脑细胞,可以将其同步至所需频率。暴露于纯节拍可能会使听者感到烦恼和压力大。嵌入背景音频中的BB信号可以为主体提供更好的聆听舒适度。本文介绍了嵌入式BB在γ域脑波同步中的功效研究。测量了脑电图信号,该信号指示了由于PFC与诱发的听觉刺激共振而导致测试对象的听觉诱发电位(AEP)。可以看到,在音频背景中掩盖的BB信号给出的AEP值平均比纯BB产生的AEP值高92%。结果表明,在40 Hz伽马频率下,在选定的PFC位置处测得的嵌入BB对AEP的影响可与纯BB媲美。

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