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Cortical Plasticity Induced by Short-Term Unimodal and Multimodal Musical Training

机译:短期单峰和多峰音乐训练诱发的皮质可塑性

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摘要

Learning to play a musical instrument requires complex multimodal skills involving simultaneous perception of several sensory modalities: auditory, visual, somatosensory, as well as the motor system. Therefore, musical training provides a good and adequate neuroscientific model to study multimodal brain plasticity effects in humans. Here, we investigated the impact of short-term unimodal and multimodal musical training on brain plasticity. Two groups of nonmusicians were musically trained over the course of 2 weeks. One group [sensorimotor-auditory (SA)] learned to play a musical sequence on the piano, whereas the other group [auditory (A)] listened to and made judgments about the music that had been played by participants of the sensorimotor-auditory group. Training-induced cortical plasticity was assessed by recording the musically elicited mismatch negativity (MMNm) from magnetoencephalographic measurements before and after training. SA and A groups showed significantly different cortical responses after training. Specifically, the SA group showed significant enlargement of MMNm after training compared with the A group, reflecting greater enhancement of musical representations in auditory cortex after sensorimotor-auditory training compared with after mere auditory training. Thus, we have experimentally demonstrated that not only are sensorimotor and auditory systems connected, but also that sensorimotor-auditory training causes plastic reorganizational changes in the auditory cortex over and above changes introduced by auditory training alone.
机译:学习演奏乐器需要复杂的多模式技能,包括同时感知几种感觉模式:听觉,视觉,躯体感觉以及运动系统。因此,音乐训练提供了一个良好而充分的神经科学模型来研究人类多模式大脑可塑性的影响。在这里,我们调查了短期单峰和多峰音乐训练对大脑可塑性的影响。两组非音乐家在2周的时间内接受了音乐训练。一组[感觉运动听觉(SA)]学习弹奏钢琴上的音乐序列,而另一组[听觉(A)]聆听并判断感觉运动听觉小组参与者演奏的音乐。 。训练诱发的皮质可塑性通过在训练前后通过脑磁图测量记录音乐诱发的失配负性(MMNm)进行评估。 SA和A组在训练后显示出明显不同的皮质反应。具体而言,SA组与A组相比,训练后MMNm显着增大,反映了感觉运动听觉训练后听觉皮层的音乐表现比单纯听觉训练更大。因此,我们已经通过实验证明,不仅感觉运动和听觉系统相连,而且感觉运动-听觉训练还导致听觉皮层的塑性重组变化超过仅由听觉训练引起的变化。

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