Comparison and Clinical Application of Frequency Domain Methods in Analysis of Neonatal Heart Rate Time Series

被引:0
|
作者
Kevin L. Chang
Kenneth J. Monahan
M. Pamela Griffin
Douglas Lake
J. Randall Moorman
机构
[1] University of Virginia Health Sciences Center,Department of Internal Medicine (Cardiovascular Division)
[2] University of Virginia,Department of Mathematics
[3] University of Virginia Health Sciences Center,Department of Biomedical Engineering
[4] University of Virginia,Department of Pediatrics (Neonatology Division)
[5] University of Virginia Health Sciences Center,Cardiovascular Research Center
[6] University of Virginia,undefined
[7] University of Virginia Health Sciences Center,undefined
[8] University of Virginia,undefined
[9] University of Virginia Health Sciences Center,undefined
[10] University of Virginia,undefined
来源
Annals of Biomedical Engineering | 2001年 / 29卷
关键词
Lomb periodogram; Spectrum of intervals; Spectrum of heart rate samples; Low-pass filter; Stochastic resonance; Neonatal sepsis;
D O I
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中图分类号
学科分类号
摘要
The frequency content of the heart rate (HR) series contains information regarding the state of the autonomic nervous system. Of particular importance is respiratory sinus arrhythmia (RSA), the high-frequency fluctuation in HR attributable to respiration. The unevenly sampled nature of heart rate data, however, presents a problem for the discrete Fourier transform. Interpolation of the HR series allows even sampling, but filters high-frequency content. The Lomb periodogram (LP) is a regression-based method that addresses these issues. To evaluate the efficacy of the LP and Fourier techniques in detecting RSA, we compared the spectrum of intervals, the spectrum of HR samples, and the LP of simulated and clinical neonatal time series. We found the LP was superior to the spectrum of intervals and the spectrum of HR samples in analysis near the critical frequency of one half the average sampling rate. Applying the LP to clinical data, we found (1) evidence of stochastic resonance, an enhancement of periodicity with the addition of small amounts of noise, and (2) reduced power at all frequencies prior to clinical diagnosis of neonatal sepsis. © 2001 Biomedical Engineering Society.
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页码:764 / 774
页数:10
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