Estimation of fast vagal response by time-dependent analysis of heart rate variability in normal subjects

In this study, the selective windowed discrete Fourier transform algorithm (SDA) for time-frequency analysis was applied on non-stationary heart rate signals, recorded during vagal perturbations. These perturbations were achieved in healthy subjects (aged 6-42 years) by inducing the oculocardiac ref...

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Published inClinical autonomic research Vol. 6; no. 6; p. 321
Main Authors Keselbrener, L, Baharav, A, Akselrod, S
Format Journal Article
LanguageEnglish
Published Germany 01.12.1996
Subjects
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ISSN0959-9851
DOI10.1007/BF02556302

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Abstract In this study, the selective windowed discrete Fourier transform algorithm (SDA) for time-frequency analysis was applied on non-stationary heart rate signals, recorded during vagal perturbations. These perturbations were achieved in healthy subjects (aged 6-42 years) by inducing the oculocardiac reflex and the diving response. The results showed that the SDA can detect and quantify the expected, although brief, increase in vagal tone, by displaying a marked transient increase in the respiratory peak of the time-dependent spectrum. It allowed us to demonstrate an age-dependent reduction of the vagal response, obtained from the respiratory peak of the heart rate time-dependent spectrum. The SDA approach is thus an adequate tool for the evaluation of an instantaneous change in vagal activity, as well as steady-state vagal activity, including the detection of a malfunction or an exaggerated response of the parasympathetic tone. Since changes in heart rate control are expressed by a transient response, they would not have been detected by a standard, steady-state spectral analysis of heart rate variability, which requires the consideration of long and steady trace lengths and would therefore cause smearing of such fast changes. Time-dependent, or transient changes in autonomic control can thus be detected and quantified by SDA time-frequency analysis.
AbstractList In this study, the selective windowed discrete Fourier transform algorithm (SDA) for time-frequency analysis was applied on non-stationary heart rate signals, recorded during vagal perturbations. These perturbations were achieved in healthy subjects (aged 6-42 years) by inducing the oculocardiac reflex and the diving response. The results showed that the SDA can detect and quantify the expected, although brief, increase in vagal tone, by displaying a marked transient increase in the respiratory peak of the time-dependent spectrum. It allowed us to demonstrate an age-dependent reduction of the vagal response, obtained from the respiratory peak of the heart rate time-dependent spectrum. The SDA approach is thus an adequate tool for the evaluation of an instantaneous change in vagal activity, as well as steady-state vagal activity, including the detection of a malfunction or an exaggerated response of the parasympathetic tone. Since changes in heart rate control are expressed by a transient response, they would not have been detected by a standard, steady-state spectral analysis of heart rate variability, which requires the consideration of long and steady trace lengths and would therefore cause smearing of such fast changes. Time-dependent, or transient changes in autonomic control can thus be detected and quantified by SDA time-frequency analysis.
Author Akselrod, S
Keselbrener, L
Baharav, A
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– reference: 2681319 - J Am Coll Cardiol. 1989 Nov 1;14(5):1139-48
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Snippet In this study, the selective windowed discrete Fourier transform algorithm (SDA) for time-frequency analysis was applied on non-stationary heart rate signals,...
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StartPage 321
SubjectTerms Adult
Algorithms
Child
Cold Temperature
Female
Fourier Analysis
Heart Rate - physiology
Humans
Reference Values
Reflex, Oculocardiac - physiology
Time Factors
Trigeminal Nerve - physiology
Vagus Nerve - physiology
Title Estimation of fast vagal response by time-dependent analysis of heart rate variability in normal subjects
URI https://www.ncbi.nlm.nih.gov/pubmed/8985620
Volume 6
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