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An ensemble with the chinese pentatonic scale using electroencephalogram from both hemispheres

机译:使用来自两个半球的脑电图与中国五音阶的合奏

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摘要

To listen to brain activity as a piece of music, we previously proposed scale-free brainwave music (SFBM) technology, which translated the scalp electroencephalogram (EEG) into musical notes according to the power law of both the EEG and music. In this study, the methodology was further extended to ensemble music on two channels from the two hemispheres. EEG data from two channels symmetrically located on the left and right hemispheres were translated into MIDI sequences by SFBM, and the EEG parameters modulated the pitch, duration and volume of each note. Then, the two sequences were filtered into an ensemble with two voices: the pentatonic scale (traditional Chinese music) or the heptatonic scale (standard Western music). We demonstrated differences in harmony between the two scales generated at different sleep stages, with the pentatonic scale being more harmonious. The harmony intervals of this brain ensemble at various sleep stages followed the power law. Compared with the heptatonic scale, it was easier to distinguish the different stages using the pentatonic scale. These results suggested that the hemispheric ensemble can represent brain activity by variations in pitch, tempo and harmony. The ensemble with the pentatonic scale sounds more consonant, and partially reflects the relations of the two hemispheres. This can be used to distinguish the different states of brain activity and provide a new perspective on EEG analysis.
机译:为了将大脑活动作为一首音乐听,我们先前提出了无标度的脑电波音乐(SFBM)技术,该技术根据脑电图和音乐的幂律将头皮脑电图(EEG)转换为音符。在这项研究中,该方法被进一步扩展到来自两个半球的两个通道上的合奏音乐。 SFBM将来自左右对称分布在左右半球的两个通道的EEG数据转换为MIDI序列,并且EEG参数调节每个音符的音高,持续时间和音量。然后,将这两个序列过滤成具有两种声音的合奏:五音阶(传统中国音乐)或七音阶(标准西方音乐)。我们证明了在不同的睡眠阶段产生的两个音阶之间的和谐差异,五音阶音阶更加和谐。在不同的睡眠阶段,该大脑集合的和谐间隔遵循幂律。与七音阶相比,使用五音阶更容易区分不同阶段。这些结果表明,半球合奏可以通过音调,速度和和谐度的变化来表示大脑活动。五音阶的合奏听起来更谐和,并且部分反映了两个半球的关系。这可以用来区分大脑活动的不同状态,并为脑电图分析提供新的视角。

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