Key result
Nasal CPAP increases HRV and end-expiratory lung volume in men with HF.
Why the study?
Nasal continuous positive airway pressure improves ventricular function in selected patients with heart failure, but whether it augments their low heart rate variability was unknown.
Does continuous positive airway pressure improve heart rate variability in men with congestive heart failure?
Does continuous positive airway pressure improve heart rate variability in men with congestive heart failure?
p-value: p=<0.01
Short-term application of nasal CPAP increases heart rate variability and parasympathetic activity in patients with heart failure.
OBJECTIVES: Our objective was to determine whether continuous positive airway pressure augments the low heart rate variability of congestive heart failure, a marker of poor prognosis. BACKGROUND: Nasal continuous positive airway pressure improves ventricular function in selected patients with heart failure. METHODS: In 21 sessions in 16 men (mean [+/- SE] age 56 +/- 2 years) with New York Heart Association functional class II to IV heart failure, we assessed the effects of 45 min with (n = 14) and without (as a time control, n = 7) nasal continuous positive airway pressure (10 cm of water) on heart rate variability and end-expiratory lung volume. Coarse-graining spectral analysis was used to derive total spectral power (PT), its nonharmonic component (fractal power [PF]) and the low (0.0 to 0.15 Hz [PL]) and high (0.15 to 0.50 Hz [PH]) frequency components of harmonic power. Standard deviation of the RR interval, high frequency power and the PH/PT ratio were used to estimate parasympathetic activity in the time and frequency domains, and the PL/PH ratio was used to estimate cardiac sympathetic activity in the frequency domain. RESULTS: Use of continuous positive airway pressure increased end-expiratory lung volume by 445 +/- 82 ml (p < 0.01) and both time (p < 0.006) and frequency domain indexes of heart rate variability: Total spectral power (p < 0.01), nonharmonic power (p < 0.023) and low (p < 0.04) and high (p < 0.05) frequency components of harmonic power all increased. Time alone had no effect on these variables. By comparison, the PH/PT ratio increased during nasal continuous positive airway pressure (p < 0.004), whereas the PL/PH ratio was unchanged. Breathing rate remained constant in both groups. CONCLUSIONS: Short-term application of nasal continuous positive airway pressure increases heart rate variability and time and frequency domain indexes of parasympathetic activity without influencing cardiac sympathetic activity. This increase may occur reflexively, through stimulation of pulmonary mechanoreceptor afferents.
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Butler et al. (1995) studied Congestive heart failure (n=16). Nasal continuous positive airway pressure vs. Time control (without continuous positive airway pressure) was evaluated on Heart rate variability (total spectral power) (p=<0.01). Nasal continuous positive airway pressure for 45 minutes increased total spectral power of heart rate variability (p<0.01) and end-expiratory lung volume (p<0.01) in men with heart failure.
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