王贞, 许平健. 多结构和弦诱发的失匹配负波研究[J]. 南昌航空大学学报(自然科学版), 2024, 38(4): 40-48, 66. DOI: 10.3969/j.issn.2096-8566.2024.04.005
引用本文: 王贞, 许平健. 多结构和弦诱发的失匹配负波研究[J]. 南昌航空大学学报(自然科学版), 2024, 38(4): 40-48, 66. DOI: 10.3969/j.issn.2096-8566.2024.04.005
Zhen WANG, Pingjian XU. Study on Mismatched Negative Waves Induced by Multi-structure Chords[J]. Journal of nanchang hangkong university(Natural science edition), 2024, 38(4): 40-48, 66. DOI: 10.3969/j.issn.2096-8566.2024.04.005
Citation: Zhen WANG, Pingjian XU. Study on Mismatched Negative Waves Induced by Multi-structure Chords[J]. Journal of nanchang hangkong university(Natural science edition), 2024, 38(4): 40-48, 66. DOI: 10.3969/j.issn.2096-8566.2024.04.005

多结构和弦诱发的失匹配负波研究

Study on Mismatched Negative Waves Induced by Multi-structure Chords

  • 摘要: 失匹配负波(Mismatch Negative, MMN)是大脑受到外界刺激产生的特殊脑电现象,MMN能够较为客观地反映大脑对听觉信息的自动加工过程。探索多结构和弦刺激下大脑MMN系列变化,有助于建立脑电信号与音乐的映射关系,使利用脑电信号生成和弦音乐成为可能。本文采用Oddball范式,通过1组标准刺激、3组偏差刺激获取MMN。标准刺激是由小字一组里的音符作为根音构成的大三和弦,占刺激序列的70%。偏差刺激由小三和弦、增三和弦和比标准刺激高一个八度的大三和弦构成,占30%。通过分析标准刺激到偏差刺激中多结构和弦的变化,探究MMN的诱发因素;通过分析不同的偏差刺激,探究刺激属性对MMN水平的影响。结果表明,和弦刺激下MMN信号主要在大脑的颌区及中央区产生,其中和弦调性、协和性的改变会产生MMN信号。相较于和弦属性,声学属性中音高对MMN水平具有更显著的影响;男性和女性产生的MMN信号具有显著差异,女性对和弦刺激更为敏感。研究结果可为进一步探究大脑对音乐刺激的响应机理提供依据。

     

    Abstract: Mismatch Negative (MMN) is a special electroencephalography (EEG) phenomenon that occurs when the brain is stimulated by external factors. MMN can objectively reflect the automatic processing of auditory information in the brain. Exploring the changes of MMN series in brain under multi-structure chords stimulation can help establish the mapping relationship between EEG signals and music, making it possible to generate chord music by using EEG signals. The Oddball paradigm was adopted in this paper, while MMN was obtained through one standard stimulus and three deviant stimuli. The major triad pattern consisting of a root with the notes in the group of small characters was regared as the standard stimulus, accounting for 70% of the stimulus sequence. Deviant stimuli were composed of minor triad, augment triad and major triad with an octave above the standard stimulus, accounting for 30%. The triggering factors of MMN was explored by examining the changes in multi-structure chords from standard stimulation to deviant stimulation. The impact of various stimulus attributes on MMN levels was studied through analysizing different deviant stimuli. The results indicate that MMN signals are generated in the jaw and central regions of the brain under chord stimulation. The changes in tonality and harmony of the strings could trigger the generation of MMN signals. Compared to chord attributes, pitch belonging to acoustic attributes has a higher impact on MMN levels. The MMN signals produced by men and women have significant differences, and women are more sensitive to chord stimuli. The results provide a basis for further exploring the response mechanism of the brain to music stimuli.

     

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