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Relationships between behavior, brainstem and cortical encoding of seen and heard speech in musicians and non-musicians.

机译:音乐家和非音乐家的行为,脑干和视听语音的皮质编码之间的关系。

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摘要

Musicians have a variety of perceptual and cortical specializations compared to non-musicians. Recent studies have shown that potentials evoked from primarily brainstem structures are enhanced in musicians, compared to non-musicians. Specifically, musicians have more robust representations of pitch periodicity and faster neural timing to sound onset when listening to sounds or both listening to and viewing a speaker. However, it is not known whether musician-related enhancements at the subcortical level are correlated with specializations in the cortex. Does musical training shape the auditory system in a coordinated manner or in disparate ways at cortical and subcortical levels? To answer this question, we recorded simultaneous brainstem and cortical evoked responses in musician and non-musician subjects. Brainstem response periodicity was related to early cortical response timing across all subjects, and this relationship was stronger in musicians. Peaks of the brainstem response evoked by sound onset and timbre cues were also related to cortical timing. Neurophysiological measures at both levels correlated with musical skill scores across all subjects. In addition, brainstem and cortical measures correlated with the age musicians began their training and the years of musical practice. Taken together, these data imply that neural representations of pitch, timing and timbre cues and cortical response timing are shaped in a coordinated manner, and indicate corticofugal modulation of subcortical afferent circuitry.
机译:与非音乐家相比,音乐家具有多种感知和皮质专长。最近的研究表明,与非音乐家相比,音乐家主要由脑干结构引起的潜能得到增强。具体地说,音乐家在听声音或同时听和看扬声器时,具有更强健的音高周期表示和更快的神经定时以使声音发声。但是,尚不清楚皮层下水平上与音乐家相关的增强是否与皮质中的专业化相关。音乐训练会在皮层和皮层下层以协调的方式还是以不同的方式塑造听觉系统?为了回答这个问题,我们记录了音乐家和非音乐家受试者同时发生的脑干和皮层诱发反应。脑干反应的周期性与所有受试者的早期皮质反应时间有关,这种关系在音乐家中更强。声音发作和音色提示引起的脑干反应高峰也与皮质时机有关。这两个级别的神经生理学指标均与所有受试者的音乐技能得分相关。此外,脑干和皮质测量与音乐家开始训练的年龄和音乐实践的年龄有关。综上所述,这些数据暗示音调,时序和音色提示以及皮质响应时序的神经表示以协调的方式成形,并指示皮质下传入回路的皮质功能调制。

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