Auditory evoked magnetic fields to speech stimuli in newborns--effect of sleep stages.

E Pihko, A Sambeth, P H T Leppänen, Y Okada, L Lauronen
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Abstract

The aim of the study was to examine whether a newborn can detect changes in a speech stimulus consisting of a fricative followed by a vowel /su/. In addition, we studied possible effect of the two sleep stages (active and quiet sleep) on the evoked magnetic responses. In young children (6 years), the same stimulus evokes a prominent deflection, consisting of two peaks. The first one (P1m) is evoked by the beginning of the fricative consonant and has a latency of about 145 ms. The second peak (P2m) with a latency of 340 ms, is evoked by the switch to the vowel. In newborns (n = 10), the waveform resembled that of the older children but latencies of the corresponding peaks were longer, 190 and 435 ms, correspondingly. The results suggest that already the newborn brain detects the change inside the auditory speech stimulus, namely the fricative sound changing into a vowel. However, the immaturity of the brain is reflected in the prolonged latencies. In addition, the responses were higher in amplitude in quiet sleep than in active sleep (F (1.9) = 36.5; p < 0.0002). This is in line with the enhanced somatosensory magnetic fields to tactile stimulation in quiet compared to active sleep in newborns.

新生儿语音刺激的听觉诱发磁场——睡眠阶段的影响。
这项研究的目的是测试新生儿是否能察觉到由摩擦音和元音/su/组成的言语刺激的变化。此外,我们还研究了两个睡眠阶段(活跃睡眠和安静睡眠)对诱发磁反应的可能影响。在幼儿(6岁)中,同样的刺激引起明显的偏转,由两个峰值组成。第一个(P1m)是由摩擦辅音的开头引起的,潜伏期约为145毫秒。第二个峰值(P2m)的延迟为340毫秒,由切换到元音引起。在新生儿(n = 10)中,波形与年龄较大的儿童相似,但相应峰的潜伏期更长,分别为190和435 ms。结果表明,新生儿的大脑已经检测到听觉语言刺激内部的变化,即摩擦音变为元音。然而,大脑的不成熟反映在延长的潜伏期上。此外,安静睡眠时的反应幅度比活跃睡眠时高(F (1.9) = 36.5;P < 0.0002)。这与新生儿在安静睡眠中与活跃睡眠相比,对触觉刺激的体感磁场增强是一致的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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