首页> 外文期刊>Journal of Perinatal Medicine >Chaotic indices and canonical ensemble of heart rate patterns in small-for-gestational age fetuses.
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Chaotic indices and canonical ensemble of heart rate patterns in small-for-gestational age fetuses.

机译:小胎龄胎儿的混沌指数和心率模式的规范合奏。

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摘要

Aims: We studied how linear and nonlinear heart rate dynamics differ between normal fetuses (n=135) and uncomplicated small-for-gestational age (SGA) fetuses (n=65), aged 32-40 weeks' gestation. Methods: We analyzed each fetal heart rate time series for 20 min. We quantified the complexity (nonlinear dynamics) of each fetal heart rate (FHR) time series by approximate entropy (ApEn) and correlation dimension (CD). The linear dynamics were analyzed by canonical correlation analysis (CCA). Results: The ApEn and CD of the uncomplicated SGA fetuses were significantly lower than that of the normal fetuses in all three gestational periods (32-34, 35-37, 38-40 weeks). Canonical correlation ensemble in SGA fetuses is slightly higher than normal ones in all three gestational periods, especially at 35-37 weeks. Conclusions: Irregularity and complexity of the heart rate dynamics of SGA fetuses are lower than that of normal ones. Also, canonical ensemble in SGA fetuses is higher than in normal ones, suggesting thatthe FHR control system has multiple complex interactions. Along with the clear difference between the two groups' non-linear chaotic dynamics in FHR patterns, we clarified the hidden subtle differences in linearity (e.g., canonical ensemble). The decrease in non-linear dynamics may contribute to the increase in linear dynamics. The present statistical methodology can be readily and routinely utilized in obstetrics and gynecologic fields.
机译:目的:我们研究了正常胎儿(n = 135)与未复杂的小胎龄(SGA)胎儿(n = 65)之间的线性和非线性心率动态变化,这些胎儿的年龄为32-40周。方法:我们分析了每个胎儿心率时间序列20分钟。我们通过近似熵(ApEn)和相关维度(CD)量化了每个胎儿心率(FHR)时间序列的复杂性(非线性动力学)。通过典范相关分析(CCA)分析线性动力学。结果:在所有三个妊娠期(32-34、35-37、38-40周),未并发症的SGA胎儿的ApEn和CD均显着低于正常胎儿。在所有三个妊娠期中,特别是在35-37周时,SGA胎儿的典范相关性合奏都略高于正常。结论:SGA胎儿心律动态的不规则性和复杂性低于正常人。另外,SGA胎儿的典型合奏比正常胎儿高,这说明FHR控制系统具有多种复杂的相互作用。除了FHR模式中两组非线性混沌动力学之间的明显差异外,我们还阐明了线性方面隐藏的细微差异(例如规范合奏)。非线性动力学的减少可能有助于线性动力学的增加。本统计方法可以在妇产科领域中容易且常规地使用。

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