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Anatomical correlates of learning novel speech sounds.

机译:学习新颖语音的解剖相关。

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We examined the relationship between brain anatomy and the ability to learn nonnative speech sounds, as well as rapidly changing and steady-state nonlinguistic sounds, using voxel-based morphometry in 59 healthy adults. Faster phonetic learners appeared to have more white matter in parietal regions, especially in the left hemisphere. The pattern of results was similar for the rapidly changing but not for the steady-state nonlinguistic stimuli, suggesting that morphological correlates of phonetic learning are related to the ability to process rapid temporal variation. Greater asymmetry in the amount of white matter in faster learners may be related to greater myelination allowing more efficient neural processing, which is critical for the ability to process certain speech sounds.
机译:我们使用基于体素的形态计量学在59位健康成年人中研究了大脑解剖结构与学习非母语语音以及快速变化的稳态非语言语音之间的关系。较快的语音学习者似乎在顶区,尤其是在左半球,具有更多的白质。对于快速变化的结果模式是相似的,但对于稳态非语言刺激却不是,这表明语音学习的形态学相关性与处理快速时间变化的能力有关。快速学习者中白质数量的更大不对称性可能与更大的髓鞘形成有关,可以使神经处理更加有效,这对处理某些语音的能力至关重要。

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