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Fetal autonomic brain age scores segmented heart rate variability analysis and traditional short term variability

机译:胎儿自主神经年龄评分分段心率变异性分析和传统的短期变异性

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摘要

Disturbances of fetal autonomic brain development can be evaluated from fetal heart rate patterns (HRP) reflecting the activity of the autonomic nervous system. Although HRP analysis from cardiotocographic (CTG) recordings is established for fetal surveillance, temporal resolution is low. Fetal magnetocardiography (MCG), however, provides stable continuous recordings at a higher temporal resolution combined with a more precise heart rate variability (HRV) analysis. A direct comparison of CTG and MCG based HRV analysis is pending. The aims of the present study are: (i) to compare the fetal maturation age predicting value of the MCG based fetal Autonomic Brain Age Score (fABAS) approach with that of CTG based Dawes-Redman methodology; and (ii) to elaborate fABAS methodology by segmentation according to fetal behavioral states and HRP. We investigated MCG recordings from 418 normal fetuses, aged between 21 and 40 weeks of gestation. In linear regression models we obtained an age predicting value of CTG compatible short term variability (STV) of R2 = 0.200 (coefficient of determination) in contrast to MCG/fABAS related multivariate models with R2 = 0.648 in 30 min recordings, R2 = 0.610 in active sleep segments of 10 min, and R2 = 0.626 in quiet sleep segments of 10 min. Additionally segmented analysis under particular exclusion of accelerations (AC) and decelerations (DC) in quiet sleep resulted in a novel multivariate model with R2 = 0.706. According to our results, fMCG based fABAS may provide a promising tool for the estimation of fetal autonomic brain age. Beside other traditional and novel HRV indices as possible indicators of developmental disturbances, the establishment of a fABAS score normogram may represent a specific reference. The present results are intended to contribute to further exploration and validation using independent data sets and multicenter research structures.
机译:可以从反映自主神经系统活动的胎儿心率模式(HRP)评估胎儿自主神经发育的障碍。尽管已建立了从心动图(CTG)记录进行的HRP分析以进行胎儿监护,但时间分辨力很低。但是,胎儿心动图(MCG)可在更高的时间分辨率下结合更精确的心率变异性(HRV)分析提供稳定的连续记录。基于CTG和MCG的HRV分析的直接比较正在等待中。本研究的目的是:(i)比较基于MCG的胎儿自主脑年龄评分(fABAS)方法与基于CTG的Dawes-Redman方法的胎儿成熟年龄预测值; (ii)通过根据胎儿行为状态和HRP进行细分,详细阐述fABAS方法。我们调查了418名正常胎儿的MCG记录,这些胎儿的年龄在21至40周之间。在线性回归模型中,与MCG / fABAS相关的具有多元变量R 的多元模型相比,我们获得了与CTG相容的短期变量(STV)的R 2 = 0.200(测定系数)的年龄预测值。在30分钟的记录中2 = 0.648,在10分钟的活动睡眠时间段中R 2 = 0.610,在10分钟的安静睡眠时间段中R 2 = 0.626 。此外,在安静睡眠中特别排除加速度(AC)和减速度(DC)的情况下进行了分段分析,得出了一个新的多元模型,R 2 = 0.706。根据我们的结果,基于fMCG的fABAS可能为估算胎儿自主神经年龄提供有前途的工具。除了其他传统的和新颖的HRV指数作为可能的发育障碍指标外,建立fABAS评分标准图可能代表了特定的参考。本研究结果旨在利用独立的数据集和多中心研究结构为进一步的探索和验证做出贡献。

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