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首页> 外文期刊>Clinical neurophysiology >Enhanced anterior-temporal processing for complex tones in musicians.
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Enhanced anterior-temporal processing for complex tones in musicians.

机译:增强了音乐家对复杂音色的前颞音处理。

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OBJECTIVE: To examine how auditory brain responses change with increased spectral complexity of sounds in musicians and non-musicians. METHODS: Event-related potentials (ERPs) and fields (ERFs) to binaural piano tones were measured in musicians and non-musicians. The stimuli were C4 piano tones and a pure sine tone of the C4 fundamental frequency (f0). The first piano tone contained f0 and the first eight harmonics, the second piano tone consisted of f0 and the first two harmonics and the third piano tone consisted of f0. RESULTS: Subtraction of ERPs of the piano tone with only the fundamental from ERPs of the harmonically rich piano tones yielded positive difference waves peaking at 130 ms (DP130) and 300 ms (DP300). The DP130 was larger in musicians than non-musicians and both waves were maximally recorded over the right anterior scalp. ERP source analysis indicated anterior temporal sources with greater strength in the right hemisphere for both waves. Arbitrarily using these anterior sources to analyze the MEG signals showed a DP130m in musicians but not in non-musicians. CONCLUSIONS: Auditory responses in the anterior temporal cortex to complex musical tones are larger in musicians than non-musicians. SIGNIFICANCE: Neural networks in the anterior temporal cortex are activated during the processing of complex sounds. Their greater activation in musicians may index either underlying cortical differences related to musical aptitude or cortical modification by acoustical training.
机译:目的:研究在音乐家和非音乐家中,听觉大脑反应如何随着声音频谱复杂性的增加而变化。方法:在音乐家和非音乐家中,测量与事件有关的电位(ERP)和双耳钢琴音调的场(ERF)。刺激是C4钢琴音调和C4基本频率(f0)的纯正弦音调。第一个钢琴音调包含f0和前八个谐波,第二个钢琴音调包含f0和前两个谐波,而第三个钢琴音调包含f0。结果:仅从谐波丰富的钢琴音调的ERPs中减去基调的ERPs产生的正差波在130 ms(DP130)和300 ms(DP300)处达到峰值。音乐家中的DP130比非音乐家大,并且两个波都记录在右前头皮上。 ERP来源分析表明,对于两个波,右半球的前颞颞源均具有更大的强度。任意使用这些先前来源来分析MEG信号,在音乐家中显示出DP130m,而在非音乐家中则没有。结论:音乐家中前颞叶皮层对复杂音乐音调的听觉响应要比非音乐家大。重要性:在处理复杂声音时,前颞叶皮质的神经网络被激活。他们在音乐家中的更大的活跃度可以索引与音乐能力相关的潜在皮层差异或通过声学训练对皮层进行修饰。

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