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通过胎儿心率变异性的时频分析评估胎儿自主神经状态。

An estimate of fetal autonomic state by time-frequency analysis of fetal heart rate variability.

作者信息

David Maya, Hirsch Michael, Karin Jacob, Toledo Eran, Akselrod Solange

机构信息

Tel-Aviv University, The Abramson Center for Medical Physics, School of Physics and Astronomy, Tel Aviv 69978, Israel.

出版信息

J Appl Physiol (1985). 2007 Mar;102(3):1057-64. doi: 10.1152/japplphysiol.00114.2006. Epub 2006 Nov 9.

Abstract

In this study we present a noninvasive method that enables the investigation of the fetal heart rate (FHR) fluctuations. The objective was to design a quantitative measurement to assess the fetal autonomic nervous system and to investigate its development as a function of the gestational age. Our Medical Physics group has developed a complex algorithm for online beat-to-beat detection of the fetal ECG (FECG), extracted from the maternal abdominal ECG signal. We used our previously acquired FECG data, which includes noninvasive recordings of 200 maternal abdominal ECG signals. From these, we chose 35 cases of healthy pregnancies that we divided into three groups according to gestational age: Group 1, 23 +/- 2 wk; Group 2, 32 +/- 1 wk; and Group 3, 39 +/- 1 wk. The FHR variability was analyzed by a time-frequency decomposition based on a continuous wavelet transform. We showed that, independent of the gestational age, most of the FHR power is concentrated in the very-low-frequency range (0.02-0.08 Hz) and in the low-frequency range (0.08-0.2 Hz). In addition, there is power in the high-frequency range that correlates with the frequency range of fetal respiratory motion (0.4-1.7 Hz). In the intermediate-frequency range (0.2-0.4 Hz), the power is significantly smaller. The changes in the average power spectrum in relation to gestation time were carefully and quantitatively examined. The results imply that there is a neural organization during the last trimester of the pregnancy, and the sympathovagal balance is reduced with the gestational age.

摘要

在本研究中,我们提出了一种非侵入性方法,可用于研究胎儿心率(FHR)波动。目的是设计一种定量测量方法,以评估胎儿自主神经系统,并研究其作为胎龄函数的发育情况。我们的医学物理团队开发了一种复杂算法,用于从母体腹部心电图信号中在线逐搏检测胎儿心电图(FECG)。我们使用了之前获取的FECG数据,其中包括200个母体腹部心电图信号的非侵入性记录。从中,我们选择了35例健康妊娠病例,并根据胎龄将其分为三组:第1组,23±2周;第2组,32±1周;第3组,39±1周。通过基于连续小波变换的时频分解来分析FHR变异性。我们发现,与胎龄无关,大多数FHR功率集中在极低频范围(0.02 - 0.08Hz)和低频范围(0.08 - 0.2Hz)。此外,在高频范围存在与胎儿呼吸运动频率范围(0.4 - 1.7Hz)相关的功率。在中频范围(0.2 - 0.4Hz),功率明显较小。仔细且定量地检查了平均功率谱相对于妊娠时间的变化。结果表明,在妊娠晚期存在神经组织,并且交感迷走平衡随着胎龄的增加而降低。

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