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Quantification of emotion by nonlinear analysis of the chaotic dynamics of electroencephalograms during perception of 1/f music

机译:通过对1 / f音乐感知期间脑电图的混沌动力学进行非线性分析来量化情感

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The goal of this study is to quantify and determine the way in which the emotional response to music is reflected in the electrical activities of the brain. When the power spectrum of sequences of musical notes is inversely proportional to the frequency on a log-log plot, we call it 1/f music. According to previous research, most listeners agree that 1/f music is much more pleasing than white (1/f(0)) or brown (1/f(2)) music. Based on these studies, we used nonlinear methods to investigate the chaotic dynamics of electroencephalograms (EEGs) elicited by computer-generated 1/f music, white music, and brown music. In this analysis, we used the correlation dimension and the largest Lyapunov exponent as measures of complexity and chaos. We developed a new method that is strikingly faster and more accurate than other algorithms for calculating the nonlinear invariant measures from limited noisy data. At the right temporal lobe, 1/f music elicited lower values of both the correlation dimension and the largest Lyapunov exponent than white or brown music. We observed that brains which feel more pleased show decreased chaotic electrophysiological behavior. By observing that the nonlinear invariant measures for the 1/f distribution of the rhythm with the melody kept constant are lower than those for the 1/f distribution of melody with the rhythm kept constant, we could conclude that the rhythm variations contribute much more to a pleasing response to music than the melody variations do. These results support the assumption that chaos plays an important role in brain function, especially emotion. [References: 29]
机译:这项研究的目的是量化和确定对音乐的情感反应在大脑的电活动中的反映方式。当音符序列的功率谱与对数对数图上的频率成反比时,我们将其称为1 / f音乐。根据以前的研究,大多数听众都认为1 / f音乐比白色(1 / f(0))或棕色(1 / f(2))音乐令人愉悦。基于这些研究,我们使用非线性方法来研究计算机生成的1 / f音乐,白色音乐和棕色音乐引起的脑电图(EEG)的混沌动力学。在此分析中,我们使用相关维和最大Lyapunov指数作为复杂性和混沌的度量。我们开发了一种新的方法,该方法比其他算法显着更快,更准确,可以根据有限的噪声数据计算非线性不变测度。在右侧颞叶,1 / f音乐比白色或棕色音乐引起的相关维数和最大Lyapunov指数值都低。我们观察到,感到更满意的大脑显示出混沌的电生理行为。通过观察在旋律保持恒定的情况下节奏1 / f分布的非线性不变性度量低于在旋律保持恒定的情况下节奏1 / f分布的非线性不变度量,我们可以得出结论,节奏变化对对音乐的反应比旋律变奏更令人愉悦。这些结果支持这样的假设:混沌在脑功能(尤其是情绪)中起着重要作用。 [参考:29]

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