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极早产儿静息态神经磁连接和频谱功率的非典型特征。

Atypical resting state neuromagnetic connectivity and spectral power in very preterm children.

机构信息

Biomedical Physiology and Kinesiology, Simon Fraser University, Burnaby, BC, Canada.

Behavioral & Cognitive Neuroscience Institute, Simon Fraser University, Burnaby, BC, Canada.

出版信息

J Child Psychol Psychiatry. 2019 Sep;60(9):975-987. doi: 10.1111/jcpp.13026. Epub 2019 Feb 25.

Abstract

BACKGROUND

Children born very preterm often display selective cognitive difficulties at school age even in the absence of major brain injury. Alterations in neurophysiological activity underpinning such difficulties, as well as their relation to specific aspects of adverse neonatal experience, remain poorly understood. In the present study, we examined interregional connectivity and spectral power in very preterm children at school age, and their relationship with clinical neonatal variables and long-term outcomes (IQ, executive functions, externalizing/internalizing behavior, visual-motor integration).

METHODS

We collected resting state magnetoencephalographic (MEG) and psychometric data from a cohort at the age of 8 years followed prospectively since birth, which included three groups: Extremely Low Gestational Age (ELGA, 24-28 weeks GA n = 24, age 7.7 ± 0.38, 10 girls), Very Low Gestational Age (VLGA, 29-32 weeks GA n = 37, age 7.7 ± 0.39, 24 girls), and full-term children (38-41 weeks GA n = 39, age 7.9 ± 1.02, 24 girls). Interregional phase synchrony and spectral power were tested for group differences, and associations with neonatal and outcome variables were examined using mean-centered and behavioral Partial Least Squares (PLS) analyses, respectively.

RESULTS

We found greater connectivity in the theta band in the ELGA group compared to VLGA and full-term groups, primarily involving frontal connections. Spectral power analysis demonstrated overall lower power in the ELGA and VLGA compared to full-term group. PLS indicated strong associations between neurophysiological connectivity at school age, adverse neonatal experience and cognitive performance, and behavior. Resting spectral power was associated only with behavioral scores.

CONCLUSIONS

Our findings indicate significant atypicalities of neuromagnetic brain activity and connectivity in very preterm children at school age, with alterations in connectivity mainly observed only in the ELGA group. We demonstrate a significant relationship between connectivity, adverse neonatal experience, and long-term outcome, indicating that the disruption of developing neurophysiological networks may mediate relationships between neonatal events and cognitive and behavioral difficulties at school age.

摘要

背景

即使没有重大脑损伤,早产儿在学龄期也常常表现出选择性认知困难。支撑这些困难的神经生理活动的改变,以及它们与新生儿不良经历的具体方面的关系,仍然知之甚少。在本研究中,我们在学龄期检查了非常早产儿的脑区间连接和频谱功率,并研究了它们与临床新生儿变量和长期结果(智商、执行功能、外化/内化行为、视觉运动整合)的关系。

方法

我们从一个自出生以来就一直进行前瞻性随访的队列中收集了静息状态脑磁图(MEG)和心理测量数据,该队列包括三组:极早产儿(ELGA,24-28 周 GA,n=24,年龄 7.7±0.38,10 名女孩)、非常早产儿(VLGA,29-32 周 GA,n=37,年龄 7.7±0.39,24 名女孩)和足月产儿(38-41 周 GA,n=39,年龄 7.9±1.02,24 名女孩)。我们测试了组间的区域间相位同步和频谱功率差异,并使用均值中心化和行为部分最小二乘法(PLS)分析分别研究了与新生儿和结果变量的相关性。

结果

我们发现,与 VLGA 和足月产儿组相比,ELGA 组的 theta 频段连接更强,主要涉及额叶连接。频谱功率分析表明,ELGA 和 VLGA 组的总体功率均低于足月产儿组。PLS 分析表明,学龄期神经生理连接、不良新生儿经历与认知表现和行为之间存在强烈关联。静息频谱功率仅与行为评分相关。

结论

我们的研究结果表明,非常早产儿在学龄期的脑磁活动和连接存在显著的异常,仅在 ELGA 组中观察到连接的改变。我们还证明了连接、不良新生儿经历和长期结果之间存在显著关系,这表明发育中的神经生理网络的破坏可能介导了新生儿事件与学龄期认知和行为困难之间的关系。

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