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Inherent auditory skills rather than formal music training shape the neural encoding of speech

机译:内在的听觉技巧而非正式的音乐训练塑造了语音的神经编码

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摘要

Musical training is associated with a myriad of neuroplastic changes in the brain, including more robust and efficient neural processing of clean and degraded speech signals at brainstem and cortical levels. These assumptions stem largely from cross-sectional studies between musicians and nonmusicians which cannot address whether training itself is sufficient to induce physiological changes or whether preexisting superiority in auditory function before training predisposes individuals to pursue musical interests and appear to have similar neuroplastic benefits as musicians. Here, we recorded neuroelectric brain activity to clear and noise-degraded speech sounds in individuals without formal music training but who differed in their receptive musical perceptual abilities as assessed objectively via the Profile of Music Perception Skills. We found that listeners with naturally more adept listening skills (“musical sleepers”) had enhanced frequency-following responses to speech that were also more resilient to the detrimental effects of noise, consistent with the increased fidelity of speech encoding and speech-in-noise benefits observed previously in highly trained musicians. Further comparisons between these musical sleepers and actual trained musicians suggested that experience provides an additional boost to the neural encoding and perception of speech. Collectively, our findings suggest that the auditory neuroplasticity of music engagement likely involves a layering of both preexisting (nature) and experience-driven (nurture) factors in complex sound processing. In the absence of formal training, individuals with intrinsically proficient auditory systems can exhibit musician-like auditory function that can be further shaped in an experience-dependent manner.
机译:音乐训练与大脑中无数的神经质变化有关,包括在脑干和皮层水平上更健壮和有效的神经处理干净和退化的语音信号。这些假设主要源于音乐家与非音乐家之间的横断面研究,这些研究无法解决训练本身是否足以诱发生理变化或在训练之前先存在的听觉功能优势是否会使个人追求音乐兴趣并似乎具有与音乐家相似的神经塑性益处。在这里,我们记录了神经电脑活动,以清除未经正规音乐训练但接受音乐知觉能力不同的个人(通过音乐知觉技能简介进行客观评估),以清除声音并降低噪音。我们发现,具有自然娴熟的聆听能力的听众(“音乐睡眠者”)对语音的频率跟随响应得到增强,并且对噪声的有害影响也更加灵活,这与语音编码和含噪语音的保真度提高是一致的以前在训练有素的音乐家中观察到的好处。这些音乐睡眠者和实际训练有素的音乐家之间的进一步比较表明,经验为神经编码和语音感知提供了额外的推动力。总体而言,我们的发现表明,音乐参与的听觉神经可塑性可能涉及复杂声音处理中既有的(自然)因素和经验驱动的(营养因素)因素。在没有经过正式培训的情况下,具有内在精通的听觉系统的人可能会表现出类似音乐家的听觉功能,并且这种听觉功能可以通过依赖于经验的方式来进一步塑造。

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