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晚期早产儿的生理性脑发育不成熟。

Physiologic brain dysmaturity in late preterm infants.

机构信息

Department of Pediatric Neurology, Case Western Reserve University School of Medicine, Cleveland, Ohio 44106, USA.

出版信息

Pediatr Res. 2011 Nov;70(5):524-8. doi: 10.1203/PDR.0b013e31822f24af.

Abstract

Neonatal EEG sleep was used to determine whether differences are expressed between healthy late preterm and full-term (FT) groups. Twenty-seven 24-channel multihour studies were recorded at similar postmenstrual ages (PMA) and analyzed for eight asymptomatic late preterm infants (LPT) compared with 19 healthy FT infants as a preliminary analysis, followed by a comparison of a subset of eight FT infants, matched for gender, race, and PMA. Z scores were performed on data sets from each group pair comparing each of seven EEG/Sleep measures for entire recordings, active sleep (AS) and quiet sleep (QS) segments and artifact-free intervals. Six of seven measures showed differences between the eight LPT and eight matched FT cohort pair comparisons of >0.3; rapid eye movements, arousals during QS, spectral correlations between homologous centrotemporal regions during QS, spectral beta/alpha power ratios during AS and QS, a spectral measure of respiratory regularity during QS, and sleep cycle length. Quantitative neurophysiologic analyses define differences in brain maturation between LPT and FT infants at similar PMA. Altered EEG/Sleep behaviors in the LPT are biomarkers of developmental neuroplasticity involving interconnected neuronal networks adapting to conditions of prematurity for this largest segment of the preterm neonatal population.

摘要

使用新生儿脑电图睡眠来确定健康晚期早产儿和足月(FT)组之间是否存在差异。在相似的胎龄后(PMA)记录了 27 个 24 通道多小时研究,并对 8 名无症状晚期早产儿(LPT)和 19 名健康 FT 婴儿进行了初步分析,然后对 8 名 FT 婴儿的亚组进行了比较,这些婴儿在性别、种族和 PMA 方面相匹配。对每组配对的数据集进行 Z 分数比较,比较整个记录、活跃睡眠(AS)和安静睡眠(QS)段以及无伪影间隔的七个 EEG/Sleep 测量值中的每一个。六个测量值显示了 8 个 LPT 和 8 个匹配的 FT 队列配对之间的差异>0.3;眼球运动、QS 期间的觉醒、QS 期间同源中央颞区之间的频谱相关性、AS 和 QS 期间的频谱β/α功率比、QS 期间呼吸节律的频谱测量值以及睡眠周期长度。定量神经生理学分析定义了相似 PMA 下 LPT 和 FT 婴儿之间大脑成熟度的差异。LPT 中 EEG/Sleep 行为的改变是发育神经可塑性的生物标志物,涉及相互连接的神经元网络适应早产儿的条件,这是早产儿新生儿群体中最大的部分。

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