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首页> 外文期刊>Cerebral cortex >Distributed auditory cortical representations are modified when non-musicians are trained at pitch discrimination with 40 Hz amplitude modulated tones.
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Distributed auditory cortical representations are modified when non-musicians are trained at pitch discrimination with 40 Hz amplitude modulated tones.

机译:当使用40 Hz调幅音调对非音乐家进行音高辨别训练时,会修改分布式听觉皮层表示。

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摘要

Several functional brain attributes reflecting neocortical activity have been found to be enhanced in musicians compared to non-musicians. Included are the N1m evoked magnetic field, P2 and right-hemispheric N1c auditory evoked potentials, and the source waveform of the magnetically recorded 40 Hz auditory steady state response (SSR). We investigated whether these functional brain attributes measured by EEG are sensitive to neuroplastic remodeling in non-musician subjects. Adult non-musicians were trained for 15 sessions to discriminate small changes in the carrier frequency of 40 Hz amplitude modulated pure tones. P2 and N1c auditory evoked potentials were separated from the SSR by signal processing and found to localize to spatially differentiable sources in the secondary auditory cortex (A2). Training enhanced the P2 bilaterally and the N1c in the right hemisphere where auditory neurons may be specialized for processing of spectral information. The SSR localized to sources in the region of Heschl's gyrus in primary auditory cortex (A1). The amplitude of the SSR (assessed by bivariate T2 in 100 ms moving windows) was not augmented by training although the phase of the response was modified for the trained stimuli. The P2 and N1c enhancements observed here and reported previously in musicians may reflect new tunings on A2 neurons whose establishment and expression are gated by input converging from other regions of the brain. The SSR localizing to A1 was more resistant to remodeling, suggesting that its amplitude enhancement in musicians may be an intrinsic marker for musical skill or an early experience effect.
机译:与非音乐家相比,已发现音乐家中反映新皮质活动的几种功能性大脑属性得到了增强。其中包括N1m诱发磁场,P2和右半球N1c听觉诱发电位,以及磁记录的40 Hz听觉稳态响应(SSR)的源波形。我们调查了通过脑电图测量的这些功能性大脑属性是否对非音乐家受试者的神经塑型重构敏感。对成年非音乐家进行了15次训练,以区分40 Hz调幅纯音载波频率中的微小变化。通过信号处理将P2和N1c听觉诱发电位与SSR分离,并发现其位于次级听觉皮层(A2)中的空间可区分来源。训练可增强双侧P2以及右半球的N1c,其中听神经元可能专门用于处理光谱信息。 SSR定位于初级听觉皮层(A1)中赫氏回旋区的来源。尽管响应的相位已针对训练后的刺激进行了修改,但训练并未提高SSR的幅度(由100毫秒移动窗口中的双变量T2评估)。此处观察到的P2和N1c增强以及以前在音乐家中报告的增强可能反映了对A2神经元的新调节,这些A2神经元的建立和表达受到来自大脑其他区域的汇聚输入的控制。定位于A1的SSR对重塑更具抵抗力,这表明音乐家中SSR的振幅增强可能是音乐技能或早期体验效果的固有标志。

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