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December 22, 2015Experimental Physiology3 citationsOpen Access

Cardiac parasympathetic outflow during dynamic exercise in humans estimated from power spectral analysis of P–P interval variability

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MTMakoto TakahashiTNTomoko NakamotoKMKanji Matsukawa

Structured PICO

Does the high-frequency component of P-P interval variability better estimate cardiac parasympathetic outflow during dynamic exercise compared to R-R interval variability in humans?

P
Population
12 human subjects
I
Intervention
Ergometer exercise to increase heart rate to 100, 120, and 140 beats/min, with atropine sulfate administration in a subset (n=8) at 140 beats/min
C
Comparator
R-R interval variability
O
Outcome
High-frequency (HF) component of P-P interval variability compared to R-R interval variability during dynamic exercisesurrogate

The high-frequency component of P-P interval variability is a more valid estimate of cardiac parasympathetic outflow during moderate dynamic exercise than R-R interval variability.

Abstract

NEW FINDINGS: What is the central question of this study? Should we use the high-frequency (HF) component of P-P interval as an index of cardiac parasympathetic nerve activity during moderate exercise? What is the main finding and its importance? The HF component of P-P interval variability remained even at a heart rate of 120-140 beats min(-1) and was further reduced by atropine, indicating incomplete cardiac vagal withdrawal during moderate exercise. The HF component of R-R interval is invalid as an estimate of cardiac parasympathetic outflow during moderate exercise; instead, the HF component of P-P interval variability should be used. The high-frequency (HF) component of R-R interval variability has been widely used as an indirect estimate of cardiac parasympathetic (vagal) outflow to the sino-atrial node of the heart. However, we have recently found that the variability of the R-R interval becomes much smaller during dynamic exercise than that of the P-P interval above a heart rate (HR) of ∼100 beats min(-1). We hypothesized that cardiac parasympathetic outflow during dynamic exercise with a higher intensity may be better estimated using the HF component of P-P interval variability. To test this hypothesis, the HF components of both P-P and R-R interval variability were analysed using a Wavelet transform during dynamic exercise. Twelve subjects performed ergometer exercise to increase HR from the baseline of 69 ± 3 beats min(-1) to three different levels of 100, 120 and 140 beats min(-1). We also examined the effect of atropine sulfate on the HF components in eight of the 12 subjects during exercise at an HR of 140 beats min(-1) . The HF component of P-P interval variability was significantly greater than that of R-R interval variability during exercise, especially at the HRs of 120 and 140 beats min(-1). The HF component of P-P interval variability was more reduced by atropine than that of R-R interval variability. We conclude that cardiac parasympathetic outflow to the sino-atrial node can be estimated better by the HF component of P-P interval variability during exercise and that cardiac parasympathetic nerve activity exists during moderate dynamic exercise.

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Cite This Study

Takahashi et al. (2015) studied this question.

synapsesocial.com/papers/6a80adf22ea91e47663d6f5bhttps://doi.org/10.1113/ep085420
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