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Distinguishing Violinists and Pianists Based on Their Brain Signals

机译:根据他们的脑信号区分小提琴家和钢琴家

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Many studies in neuropsychology have highlighted that expert musicians, who started learning music in childhood, present structural differences in their brains with respect to non-musicians. This indicates that early music learning affects the development of the brain. Also, musicians' neuronal activity is different depending on the played instrument and on the expertise. This difference can be analysed by processing electroencephalographic (EEG) signals through Artificial Intelligence models. This paper explores the feasibility to build an automatic model that distinguishes violinists from pianists based only on their brain signals. To this aim, EEG signals of violinists and pianists are recorded while they play classical music pieces and an Artificial Neural Network is trained through a cloud computing platform to build a binary classifier of segments of these signals. Our model has the best classification performance on 20 seconds EEG segments, but this performance depends on the involved musicians' expertise. Also, the brain signals of a cellist are demonstrated to be more similar to violinists' signals than to pianists' signals. In summary, this paper demonstrates that distinctive information is present in the two types of musicians' brain signals, and that this information can be detected even by an automatic model working with a basic EEG equipment.
机译:神经心理学上的许多研究都强调,从小开始学习音乐的专业音乐家就非音乐家而言,大脑的结构存在差异。这表明早期的音乐学习会影响大脑的发育。而且,音乐家的神经活动取决于所演奏的乐器和专业知识而不同。可以通过人工智能模型处理脑电图(EEG)信号来分析这种差异。本文探讨了建立仅基于他们的脑信号将小提琴家与钢琴家区分开的自动模型的可行性。为此,当小提琴家和钢琴家演奏古典音乐时,会记录他们的EEG信号,并通过云计算平台训练人工神经网络来构建这些信号片段的二进制分类器。我们的模型在20秒的脑电图片段上具有最佳的分类表现,但是这种表现取决于相关音乐家的专业知识。同样,大提琴手的脑信号被证明比小提琴手的信号更像钢琴演奏者的信号。总而言之,本文证明了两种类型的音乐家的大脑信号中都存在独特的信息,并且即使使用基本的EEG设备运行自动模型,也可以检测到该信息。

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