Acute ventilatory responses to swimming at increasing intensities

Author:

Monteiro Ana Sofia12,Magalhães José Francisco12,Knechtle Beat34,Buzzachera Cosme F.5ORCID,Vilas-Boas J. Paulo12,Fernandes Ricardo J.12

Affiliation:

1. Faculty of Sport of University of Porto, Centre of Research, Education, Innovation and Intervention in Sport, Porto, Portugal

2. Faculty of Sport of University of Porto, Porto Biomechanics Laboratory, Porto, Portugal

3. University of Zurich, Institute of Primary Care, Zurich, Switzerland

4. Medbase St. Gallen am Vadianplatz, St. Gallen, Switzerland

5. University of Pavia, Department of Public Health, Experimental and Forensic Medicine, Pavia, Italy

Abstract

Background Physical exercise is a source of stress to the human body, triggering different ventilatory responses through different regulatory mechanisms and the aquatic environment imposes several restrictions to the swimmer, particularly regarding the restricted ventilation. Thus, we aimed to assess the acute ventilatory responses and to characterize the adopted breathing patterns when swimming front crawl at increasing intensity domains. Methods Eighteen well-trained swimmers performed 7 × 200 m front crawl (0.05 m∙s−1 velocity increments) and a maximal 100 m (30 s rest intervals). Pulmonary gas exchange and ventilation were continuously measured (breath-by-breath) and capillary blood samples for lactate concentration ([La]) analysis were collected at rest, during intervals and at the end of the protocol, allowing the identification of the low, moderate, heavy, severe and extreme intensity domains. Results With the swimming velocity rise, respiratory frequency (fR), [La] and stroke rate (SR) increased ([29.1–49.7] breaths∙min−1, [2.7–11.4] mmol∙L−1, [26.23–40.85] cycles; respectively) and stroke length (SL) decreased ([2.43–2.04] m∙min−1; respectively). Oxygen uptake (VO2), minute ventilation (VE), carbon dioxide production (VCO2) and heart rate (HR) increased until severe ([37.5–53.5] mL∙kg−1∙min−1, [55.8–96.3] L∙min−1, [32.2–51.5] mL∙kg−1∙min−1 and [152–182] bpm; respectively) and stabilized from severe to extreme (53.1 ± 8.4, mL∙kg−1∙min-1, 99.5 ± 19.1 L∙min−1, 49.7 ± 8.3 mL∙kg−1∙min−1 and 186 ± 11 bpm; respectively) while tidal volume (VT) was similar from low to severe ([2.02–2.18] L) and decreased at extreme intensities (2.08 ± 0.56 L). Lastly, the fR/SR ratio increased from low to heavy and decreased from severe to the extreme intensity domains (1.12 ± 0.24, 1.19 ± 0.25, 1.26 ± 0.26, 1.32 ± 0.26 and 1.23 ± 0.26). Conclusions Our findings confirm a different ventilatory response pattern at extreme intensities when compared to the usually evaluated exertions. This novel insight helps to understand and characterize the maximal efforts in swimming and reinforces the importance to include extreme efforts in future swimming evaluations.

Funder

Portuguese Foundation for Science and Technology, I.P. (FCT) and European Union

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference30 articles.

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2. Anaerobic threshold biophysical characterization of the four swimming techniques;Carvalho;International Journal of Sports Medicine,2020

3. The effects of intensity on VO2 kinetics during incremental free swimming;de Jesus;Applied Physiology, Nutrition, and Metabolism,2015

4. The fast exercise drive to breathe;Duffin;The Journal of Physiology,2014

5. Has gender any effect on the relationship between time limit at VO2max velocity and swimming economy?;Fernandes;Journal of Human Movement Studies,2005

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