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出生时晚期早产儿、早期足月儿和足月儿的多参数心肺分析。

Multi-parametric cardiorespiratory analysis in late-preterm, early-term, and full-term infants at birth.

机构信息

Department of Psychiatry, Columbia University College of Physicians and Surgeons, New York, NY, USA.

Dipartimento di Elettronica, Informazione e Bioingegneria, Politecnico di Milano, Milano, Italy.

出版信息

Med Biol Eng Comput. 2019 Jan;57(1):99-106. doi: 10.1007/s11517-018-1866-4. Epub 2018 Jul 10.

Abstract

Infants born at 35-37 weeks' gestational age (GA) are at higher risk for a range of pathological conditions and poorer neurodevelopmental outcomes. However, mechanisms responsible are not fully understood. The purpose of this paper is to use traditional and novel techniques to assess newborn autonomic development as a function of GA at birth, focusing on cardiorespiratory regulation. ECG and respiration were acquired during sleep on 329 healthy newborns. Infants were divided into GA groups: 35-36 weeks (late preterm (LPT)), 37-38 weeks (early term (ET)), and 39-40 weeks (full term (FT)). Time domain, frequency domain, and non-linear measures were calculated. Increased heart rate short-term variability and complexity as a function of GA were observed in time domain and non-linear measures. Decreasing inter-breath interval variability was found as a function of GA, with increasing linear cardiorespiratory coupling. A complexity parameter (quadratic sample entropy) was less affected by arrhythmias and artifacts when compared to traditional measures. Results suggest lower maturation in LPT, with less developed cardiorespiratory regulation. This may confer risk for altered outcome, convergent with epidemiological findings. Reported examples show that a combination of methodological approaches can be beneficial to characterize autonomic maturation. Graphical abstract ᅟ.

摘要

35-37 孕周出生的婴儿存在一系列病理状况和神经发育不良结局的风险较高。然而,其相关机制尚未完全明确。本文旨在使用传统和新方法评估新生儿自主神经发育,重点是心肺调节。在 329 名健康新生儿的睡眠期间采集心电图和呼吸。将婴儿分为 GA 组:35-36 周(晚期早产(LPT))、37-38 周(早期足月(ET))和 39-40 周(足月(FT))。计算时域、频域和非线性指标。在时域和非线性指标中观察到心率短期变异性和复杂度随 GA 增加而增加。随着线性心肺耦合的增加,发现呼吸间隔变异性随 GA 而降低。与传统测量方法相比,复杂度参数(二次样本熵)受心律失常和伪影的影响较小。结果表明 LPT 成熟度较低,心肺调节发育较差。这可能会增加结果改变的风险,与流行病学发现一致。报告的示例表明,结合多种方法可以有助于描述自主神经成熟。

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