DocumentCode
783672
Title
Comparison of detrended fluctuation analysis and spectral analysis for heart rate variability in sleep and sleep apnea
Author
Penzel, Thomas ; Kantelhardt, Jan W. ; Grote, Ludger ; Peter, Jörg-Hermann ; Bunde, Armin
Author_Institution
Dept. of Internal Medicine, Philipps-Univ., Marburg, Germany
Volume
50
Issue
10
fYear
2003
Firstpage
1143
Lastpage
1151
Abstract
Sleep has been regarded as a testing situation for the autonomic nervous system, because its activity is modulated by sleep stages. Sleep-related breathing disorders also influence the autonomic nervous system and can cause heart rate changes known as cyclical variation. We investigated the effect of sleep stages and sleep apnea on autonomic activity by analyzing heart rate variability (HRV). Since spectral analysis is suited for the identification of cyclical variations and detrended fluctuation analysis can analyze the scaling behavior and detect long-range correlations, we compared the results of both complementary techniques in 14 healthy subjects, 33 patients with moderate, and 31 patients with severe sleep apnea. The spectral parameters VLF, LF, HF, and LF/HF confirmed increasing parasympathetic activity from wakefulness and REM over light sleep to deep sleep, which is reduced in patients with sleep apnea. Discriminance analysis was used on a person and sleep stage basis to determine the best method for the separation of sleep stages and sleep apnea severity. Using spectral parameters 69.7% of the apnea severity assignments and 54.6% of the sleep stage assignments were correct, while using scaling analysis these numbers increased to 74.4% and 85.0%, respectively. We conclude that changes in HRV are better quantified by scaling analysis than by spectral analysis.
Keywords
electrocardiography; medical signal processing; neurophysiology; pneumodynamics; sleep; spectral analysis; autonomic nervous system; cyclical variation; deep sleep; detrended fluctuation analysis; light sleep; long-range correlations detection; polysomnography; scaling analysis; scaling behavior; sleep apnea; sleep-related breathing disorders; Autonomic nervous system; Diseases; Fluctuations; Hafnium; Heart rate; Heart rate variability; Hospitals; Sleep apnea; Spectral analysis; System testing; Adult; Algorithms; Electrocardiography; Heart Rate; Humans; Hypertension; Polysomnography; Reference Values; Reproducibility of Results; Sensitivity and Specificity; Signal Processing, Computer-Assisted; Sleep; Sleep Apnea Syndromes; Sleep Stages; Statistics as Topic;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/TBME.2003.817636
Filename
1232484
Link To Document