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Audio-visuomotor processing in the Musician's brain: an ERP study on professional violinists and clarinetists

机译:音乐家的大脑中的音频游戏处理:职业小提琴手和单簧管家的ERP研究

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The temporal dynamics of brain activation during visual and auditory perception of congruent vs. incongruent musical video clips was investigated in 12 musicians from the Milan Conservatory of music and 12 controls. 368 videos of a clarinetist and a violinist playing the same score with their instruments were presented. The sounds were similar in pitch, intensity, rhythm and duration. To produce an audiovisual discrepancy, in half of the trials, the visual information was incongruent with the soundtrack in pitch. ERPs were recorded from 128 sites. Only in musicians for their own instruments was a N400-like negative deflection elicited due to the incongruent audiovisual information. SwLORETA applied to the N400 response identified the areas mediating multimodal motor processing: the prefrontal cortex, the right superior and middle temporal gyrus, the premotor cortex, the inferior frontal and inferior parietal areas, the EBA, somatosensory cortex, cerebellum and SMA. The data indicate the existence of audiomotor mirror neurons responding to incongruent visual and auditory information, thus suggesting that they may encode multimodal representations of musical gestures and sounds. These systems may underlie the ability to learn how to play a musical instrument.
机译:在米兰音乐学院和12个控制中,在12名音乐学家中调查了脑激活期间脑激活的脑激活的时间动态。提供了368个单簧管家的视频和与他们的乐器相同的小提琴手。声音在间距,强度,节奏和持续时间内相似。为了产生视听差异,在一半的试验中,视觉信息与音高的原声带不一致。 erps从128个网站记录。只有在他们自己的乐器中的音乐家才是由于视听信息不一致而引起的N400类似的偏转。 Swloreta应用于N400响应鉴定了介导多式联运电机处理的区域:前额叶皮质,右高级和中间时颞克鲁鲁斯,前运动皮层,劣质额外俯卧区,EBA,躯体感染术皮层,小脑和SMA。这些数据表明,有吸引力镜神经元的存在响应不一致的视觉和听觉信息,从而表明他们可以编码音乐手势和声音的多模式表示。这些系统可能使得学习如何发挥乐器的能力。

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