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早产儿自主神经系统的成熟:基于心率变异性分析评估发育情况

Maturation of the Autonomic Nervous System in Premature Infants: Estimating Development Based on Heart-Rate Variability Analysis.

作者信息

Lavanga Mario, Heremans Elisabeth, Moeyersons Jonathan, Bollen Bieke, Jansen Katrien, Ortibus Els, Naulaers Gunnar, Van Huffel Sabine, Caicedo Alexander

机构信息

Division STADIUS, Department of Electrical Engineering (ESAT), Katholieke Universiteit Leuven, Leuven, Belgium.

Department of Development and Regeneration, Faculty of Medicine, Katholieke Universiteit Leuven, Leuven, Belgium.

出版信息

Front Physiol. 2021 Jan 12;11:581250. doi: 10.3389/fphys.2020.581250. eCollection 2020.

Abstract

This study aims at investigating the development of premature infants' autonomic nervous system (ANS) based on a quantitative analysis of the heart-rate variability (HRV) with a variety of novel features. Additionally, the role of heart-rate drops, known as bradycardias, has been studied in relation to both clinical and novel sympathovagal indices. ECG data were measured for at least 3 h in 25 preterm infants (gestational age ≤32 weeks) for a total number of 74 recordings. The post-menstrual age (PMA) of each patient was estimated from the RR interval time-series by means of multivariate linear-mixed effects regression. The tachograms were segmented based on bradycardias in periods after, between and during bradycardias. For each of those epochs, a set of temporal, spectral and fractal indices were included in the regression model. The best performing model has = 0.75 and mean absolute error = 1.56 weeks. Three main novelties can be reported. First, the obtained maturation models based on HRV have comparable performance to other development models. Second, the selected features for age estimation show a predominance of power and fractal features in the very-low- and low-frequency bands in explaining the infants' sympathovagal development from 27 PMA weeks until 40 PMA weeks. Third, bradycardias might disrupt the relationship between common temporal indices of the tachogram and the age of the infant and the interpretation of sympathovagal indices. This approach might provide a novel overview of post-natal autonomic maturation and an alternative development index to other electrophysiological data analysis.

摘要

本研究旨在基于对具有多种新特征的心率变异性(HRV)进行定量分析,来探究早产儿自主神经系统(ANS)的发育情况。此外,还研究了被称为心动过缓的心率下降在临床和新的交感迷走神经指标方面的作用。对25名早产儿(胎龄≤32周)的心电图数据进行了至少3小时的测量,共获得74次记录。通过多元线性混合效应回归,从RR间期时间序列估计每位患者的月经后年龄(PMA)。根据心动过缓后、心动过缓之间以及心动过缓期间的时间段,对心动过速图进行分段。对于每个时间段,一组时间、频谱和分形指标被纳入回归模型。表现最佳的模型的决定系数为0.75,平均绝对误差为1.56周。可以报告三个主要的新发现。第一,基于HRV获得的成熟模型与其他发育模型具有相当的性能。第二,在从27周PMA到40周PMA解释婴儿交感迷走神经发育方面,所选的用于年龄估计的特征在极低频和低频带中显示出功率和分形特征占主导地位。第三,心动过缓可能会破坏心动过速图的常见时间指标与婴儿年龄之间的关系以及交感迷走神经指标的解释。这种方法可能会提供产后自主神经成熟的新概述,并为其他电生理数据分析提供替代的发育指标。

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