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November 1, 1993Journal of Applied Physiology768 citationsOpen Access

Important influence of respiration on human R-R interval power spectra is largely ignored

TBTroy E. BrownLBLarry A. BeightolJKJung Hee Koh

Key Result

Controlled breathing frequency and tidal volume significantly influenced low-frequency and respiratory frequency R-R interval power spectra, a factor controlled by only 11% of published studies.

Structured PICO

Do breathing frequency and tidal volume influence R-R interval power spectra in healthy subjects?

P
Population
9 healthy subjects
I
Intervention
Breathing at controlled rates (6, 7.5, 10, 15, 17.1, 20, and 24 breaths/min) and nominal tidal volumes (1,000 and 1,500 ml) in the supine position
C
Comparator
Different breathing rates and tidal volumes compared against each other
O
Outcome
R-R interval power spectra at respiratory and low (0.06-0.14 Hz) frequenciessurrogate

Breathing parameters strongly influence low-frequency and respiratory frequency R-R interval power spectra, highlighting the critical need to control for respiration in heart rate variability studies.

Abstract

Frequency-domain analyses of R-R intervals are used widely to estimate levels of autonomic neural traffic to the human heart. Because respiration modulates autonomic activity, we determined for nine healthy subjects the influence of breathing frequency and tidal volume on R-R interval power spectra (fast-Fourier transform method). We also surveyed published literature to determine current practices in this burgeoning field of scientific inquiry. Supine subjects breathed at rates of 6, 7.5, 10, 15, 17.1, 20, and 24 breaths/min and with nominal tidal volumes of 1,000 and 1,500 ml. R-R interval power at respiratory and low (0.06-0.14 Hz) frequencies declined significantly as breathing frequency increased. R-R interval power at respiratory frequencies was significantly greater at a tidal volume of 1,500 than 1,000 ml. Neither breathing frequency nor tidal volume influenced average R-R intervals significantly. Our review of studies reporting human R-R interval power spectra showed that 51% of the studies controlled respiratory rate, 11% controlled tidal volume, and 11% controlled both respiratory rate and tidal volume. The major implications of our analyses are that breathing parameters strongly influence low-frequency as well as respiratory frequency R-R interval power spectra and that this influence is largely ignored in published research.

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Cite This Study

Brown et al. (1993) studied Healthy subjects (n=9). Controlled breathing frequency and tidal volume was evaluated on R-R interval power spectra at respiratory and low frequencies. Controlled breathing frequency and tidal volume significantly influenced low-frequency and respiratory frequency R-R interval power spectra, a factor controlled by only 11% of published studies.

synapsesocial.com/papers/6a0eeef3218372ada647d961https://doi.org/10.1152/jappl.1993.75.5.2310
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Transfer function analysis of autonomic regulation. II. Respiratory sinus arrhythmia1989 · 362 citations
  2. 2Aging of modulation of heart rate1987 · 209 citations
  3. 3Respiratory modulation of muscle sympathetic and vagal cardiac outflow in man.1985 · 280 citations
  4. 4Cardiovascular neural regulation explored in the frequency domain.1991 · 3,581 citations
  5. 5Heart Rate and Respiratory Responses as a Function of Task Difficulty: The Use of Discriminant Analysis in the Selection of Psychologically Sensitive Physiological Responses1976 · 66 citations