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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Hemispheric asymmetry in auditory processing of speech envelope modulations in prereading children
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Hemispheric asymmetry in auditory processing of speech envelope modulations in prereading children

机译:预读儿童语音包络调制的听觉处理中的半球不对称

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The temporal envelope of speech is an important cue contributing to speech intelligibility. Theories about the neural foundations of speech perception postulate that the left and right auditory cortices are functionally specialized in analyzing speech envelope information at different time scales: the right hemisphere is thought to be specialized in processing syllable rate modulations, whereas a bilateral or left hemispheric specialization is assumed for phoneme rate modulations. Recently, it has been found that this functional hemispheric asymmetry is different in individuals with language-related disorders such as dyslexia. Most studies were, however, performed in adults and school-aged children, and only a little is known about how neural auditory processing at these specific rates manifests and develops in very young children before reading acquisition. Yet, studying hemispheric specialization for processing syllable and phoneme rate modulations in preliterate children may reveal early neural markers for dyslexia. In the present study, human cortical evoked potentials to syllable and phoneme rate modulations were measured in 5-year-old children at high and low hereditary risk for dyslexia. The results demonstrate a right hemispheric preference for processing syllable rate modulations and a symmetric pattern for phoneme rate modulations, regardless of hereditary risk for dyslexia. These results suggest that, while hemispheric specialization for processing syllable rate modulations seems to be mature in prereading children, hemispheric specialization for phoneme rate modulation processing may still be developing. These findings could have important implications for the development of phonological and reading skills.
机译:语音的时间包络是有助于提高语音清晰度的重要提示。关于语音感知的神经基础的理论假定,左右听觉皮层在功能上专门分析不同时间尺度上的语音包络信息:右半球被认为专门处理音节速率调制,而双侧或左半球专门化假定用于音素速率调制。最近,已经发现在患有语言相关障碍例如阅读障碍的个体中,这种功能性半球不对称性是不同的。但是,大多数研究都是在成人和学龄儿童中进行的,而在阅读习得之前,对于以这些特定速率进行的神经听觉处理如何在非常幼小的儿童中表现和发展的知之甚少。然而,研究半球专业化以处理文盲儿童的音节和音素速率调节可能会揭示诵读困难的早期神经标志。在本研究中,在具有遗传性读写障碍危险的高低风险的5岁儿童中,测量了人类皮层诱发音节和音素速率调节的潜力。结果表明,无论有遗传性阅读障碍风险,半球偏爱处理音节速率调制,对称模式用于音素速率调制。这些结果表明,尽管在预读儿童中用于处理音节速率调制的半球专业化似乎已经成熟,但是用于音素速率调制处理的半球专业化可能仍在发展。这些发现可能对语音和阅读技能的发展具有重要意义。

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