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Effects of musical training on the early auditory cortical representation of pitch transitions as indexed by change-N1

机译:音乐训练对音高变化的早期听觉皮层表示的影响(由change-N1索引)

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The effects of musical training on the early auditory cortical response to pitch transitions in music were investigated by use of the change-N1 component of auditory event-related potentials. Musicians and non-musicians were presented with music stimuli comprising a melody and a harmony under various listening conditions. First, when the subjects played a video game and were instructed to ignore the auditory stimuli, the onset of stimuli elicited a typical, fronto-central onset-N1, whereas melodic and harmonic pitch transitions within the stimuli elicited so-called change-N1s that were more posterior in scalp distribution. The pitch transition change-N1s, but not onset-N1, were enhanced in musicians. Second, when the listeners attended to the same stimuli as above to detect infrequently occurring target stimuli, the change-N1 elicited by pitch changes (in non-target stimuli) was augmented, in non-musicians only when the target was easily detectable, and in both musicians and non-musicians when it was difficult to detect. Thus, the early, obligatory cortical response to pitch transitions during passive listening was chronically enhanced by training in musicians, and, reflecting this training-induced enhancement, the task-related modulation of this response was also different between musicians and non-musicians. These results are the first to demonstrate the long-term effects of training, short-term effects of task and the effects of their interaction on the early (~100-ms) cortical processing of pitch transitions in music. The scalp distributions of these enhancement effects were generally right dominant at temporal electrode sites, suggesting contributions from the radially oriented subcomponent of change-N1, namely, the Tb (N1c) wave of the T-complex. A sudden transition in the pitch of an otherwise continuous sound elicits an ERP component called change-N1. Effects of musical training on the change-N1 to melodic and harmonic pitch changes were studied. The change-N1 was chronically enhanced in musicians over right hemisphere, and task modulated its amplitude differently between musicians and non-musicians. The results demonstrate the long-term effects of training, short-term effects of task, and their interaction on the early cortical processing of pitch transitions.
机译:通过使用听觉事件相关电位的change-N1成分,研究了音乐训练对早期听觉皮质对音高过渡的反应的影响。向音乐家和非音乐家展示了在各种聆听条件下的音乐旋律和和声刺激。首先,当受试者玩电子游戏并被要求忽略听觉刺激时,刺激的发作会引起典型的额中中心发作N1,而刺激中的旋律和谐音音调过渡会引起所谓的Change-N1头皮分布更靠后。乐手的音高过渡变化N1而不是开始N1有所增强。其次,当听众使用与上述相同的刺激以检测不经常出现的目标刺激时,只有在易于检测到目标的情况下,非音乐人中音高变化所引起的变化N1才会增加(在非目标刺激中)。在音乐家和非音乐家中都很难发现。因此,在音乐家的培训中,被动聆听期间对音调过渡的早期,强制性皮层反应通过在音乐家中的训练而得到了长期增强,并且反映出这种训练诱导的增强,在音乐家和非音乐家之间,这种与任务相关的调节也有所不同。这些结果是第一个证明训练的长期效果,任务的短期效果以及它们的交互作用对音乐音高过渡的早期(〜100-ms)皮质处理的影响。这些增强作用的头皮分布通常在颞电极部位占主导地位,表明来自变化N1的径向子分量的贡献,即T复合体的Tb(N1c)波。如果原本是连续的声音的音调突然转变,则会产生一个称为change-N1的ERP组件。研究了音乐训练对N1到旋律和和声音高变化的影响。 N1在右半球的音乐家中长期增强-N1,并且任务对音乐家和非音乐家之间的幅度调制有所不同。结果证明了训练的长期效果,任务的短期效果及其在音高过渡的早期皮质处理中的相互作用。

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