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Musicians have fine-tuned neural distinction of speech syllables

机译:音乐家有微调神经区的语音音节

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摘要

One of the benefits musicians derive from their training is an increased ability to detect small differences between sounds. Here, we asked whether musicians’ experience discriminating sounds on the basis of small acoustic differences confers advantages in the subcortical differentiation of closely-related speech sounds (e.g., /ba/ and /ga/), distinguishable only by their harmonic spectra (i.e., their second formant trajectories). Although the second formant is particularly important for distinguishing stop consonants, auditory brainstem neurons do not phase-lock to its frequency range (above 1000 Hz). Instead, brainstem nuclei convert this high-frequency content into neural response timing differences. As such, speech tokens with higher formant frequencies elicit earlier brainstem responses than those with lower formant frequencies. By measuring the degree to which subcortical response timing differs to the speech syllables /ba/, /da/, and /ga/ in adult musicians and nonmusicians, we reveal that musicians demonstrate enhanced subcortical discrimination of closely related speech sounds. Furthermore, the extent of subcortical consonant discrimination correlates with speech-in-noise perception. Taken together, these findings show a musician enhancement for the neural processing of speech and reveal a biological mechanism contributing to musicians’ enhanced speech perception.
机译:其中一个好处音乐家从他们的训练中获得的培训是一种越来越多的能力,可以检测到声音之间的小差异。在这里,我们询问音乐家在小声学差异的基础上判断声音的经验赋予了密切相关的语音声音(例如,/ ba /和/ ga /)的大量分化中的优势,仅通过谐波谱来区分(即,他们的第二珠宝轨迹)。尽管第二种植物对区分阻止辅音尤为重要,但听觉脑干神经元不会将锁定锁定到其频率范围(1000Hz以上)。相反,脑干核将这种高频内容转换为神经响应时序差异。因此,具有较高的中文体频率的语音令牌,比具有较低的中锋频率的脑干响应。通过测量与语音音节/ ba /,/ da /,和/ ga /在成人音乐家和非空中家的语音音节的程度,我们揭示了音乐家展示了强烈相关的语音声音的增强的面制性辨别。此外,子质子辅音鉴别的程度与语音感知相关。这些调查结果集中在一起,展示了言论神经处理的音乐家,并揭示了对音乐家增强的语音感知有贡献的生物学机制。

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