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Shared Neural Mechanisms for the Prediction of Own and Partner Musical Sequences after Short-term Piano Duet Training

机译:短期钢琴二重奏训练后预测自己和伴侣音乐序列的共享神经机制

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摘要

Predictive mechanisms in the human brain can be investigated using markers for prediction violations like the mismatch negativity (MMN). Short-term piano training increases the MMN for melodic and rhythmic deviations in the training material. This increase occurs only when the material is actually played, not when it is only perceived through listening, suggesting that learning predictions about upcoming musical events are derived from motor involvement. However, music is often performed in concert with others. In this case, predictions about upcoming actions from a partner are a crucial part of the performance. In the present experiment, we use magnetoencephalography (MEG) to measure MMNs to deviations in one's own and a partner's musical material after both engaged in musical duet training. Event-related field (ERF) results revealed that the MMN increased significantly for own and partner material suggesting a neural representation of the partner's part in a duet situation. Source analysis using beamforming revealed common activations in auditory, inferior frontal, and parietal areas, similar to previous results for single players, but also a pronounced contribution from the cerebellum. In addition, activation of the precuneus and the medial frontal cortex was observed, presumably related to the need to distinguish between own and partner material.
机译:可以使用标记来研究人脑中的预测机制,例如失配负性(MMN)。短期钢琴训练会增加MMN的训练材料中旋律和节奏上的偏差。这种增加仅在实际播放素材时才会发生,而不是仅通过聆听才能感觉到,这表明对即将发生的音乐事件的学习预测来自运动的参与。但是,音乐经常与他人一起演奏。在这种情况下,对合作伙伴即将采取的行动的预测是绩效的关键部分。在本实验中,我们使用磁脑电图(MEG)来测量MMN在双方进行音乐二重奏训练后对自己和伴侣音乐材料的偏差。事件相关字段(ERF)结果表明,自有和伙伴材料的MMN显着增加,表明在二重奏情况下伙伴部分的神经表示。使用波束赋形进行的源分析表明,在听觉,额叶下部和顶叶区域常见激活,这与以前单个运动员的结果相似,但小脑也有明显贡献。此外,观察到前突神经和额叶内侧皮层的激活,可能与区分自身材料和伴侣材料有关。

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