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October 1, 2004Medicine & Science in Sports & Exercise112 citations

Spectral Analysis of Heart Rate Variability during Exercise in Trained Subjects

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APAurélien PichonCBClaire de BisschopMRManuel Roulaud

Key Result

Strenuous exercise decreased absolute low- and high-frequency heart rate variability power at onset (P<0.05), while higher intensities increased normalized high-frequency power (P<0.05).

Study Design

Type

Observational (n=14)

Structured PICO

Does strenuous exercise alter heart rate variability indices in healthy trained subjects?

P
Population
14 healthy trained subjects evaluated for heart rate variability during strenuous exercise at varying intensities.
E
Exposure
Strenuous exercise at varying intensities (60%, 70%, and 80% of PVO2(max)) and durations (3, 6, and 9 min)
C
Comparator
Baseline or lower intensity exercise
O
Outcome
Heart rate variability (HRV) indices (low-frequency and high-frequency components)surrogate

HRV and usual indexes of sympathetic activity do not accurately reflect changes in autonomic modulation during exhaustive exercise, as nonautonomic mechanisms and respiratory control influence the HF-peak shift.

Main Result

p-value: p=<0.05

Abstract

PURPOSE: To investigate the effects of strenuous exercise on heart rate variability (HRV). METHODS: We evaluated the effects of exercise intensity and duration on HRV indices in 14 healthy trained subjects. Each subject exercised for 3, 6, and 9 min at 60 and 70% of the power achieved at maximal oxygen consumption (PVO2(max)) and for 3 and 6 min (or 3 min twice) at 80% of PVO2(max). The electrocardiogram RR intervals were recorded then processed by fast(FFT) and short-time (STFT) Fourier transform for determination of low-frequency (LF, 0.045-0.15 Hz) and high-frequency (HF, 0.15-1.0 Hz) components. RESULTS: The LF and HF components expressed as absolute power (ms2) decreased significantly at the onset of exercise (P < 0.05). However, with increasing exercise intensity, the HF component expressed as normalized units (n.u.) (reflecting parasympathetic modulation) increased significantly, whereas the LF component (n.u.) and LF/HF ratio (both reflecting sympathetic modulation) decreased significantly (P < 0.05). STFT showed that increasing exercise intensity was associated with a shift in HF peak frequency related to an increase in respiratory rate and a marked decrease in LF power (ms2). Moreover, HFn.u. rose (r = 0.918, P < 0.01) and LFms2 fell as minute ventilation increased (r = 0.906, P < 0.01). CONCLUSIONS: Parasympathetic respiratory control and nonautonomic mechanisms may influence the HF-peak shift during strenuous exercise. HRV and the usual indexes of sympathetic activity do not accurately reflect changes in autonomic modulation during exhaustive exercise.

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Cite This Study

Pichon et al. (2004) conducted an observational in Healthy (n=14). Strenuous exercise vs. Rest was evaluated on Heart rate variability indices (low-frequency and high-frequency components) (p=<0.05). Strenuous exercise decreased absolute low- and high-frequency heart rate variability power at onset (P<0.05), while higher intensities increased normalized high-frequency power (P<0.05).

synapsesocial.com/papers/6a297951eff1696fc49ff33chttps://doi.org/10.1249/01.mss.0000142403.93205.35
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Also Consider

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