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March 5, 2026Journal of Experimental Biology0 citationsOpen Access

Effects of carbon dioxide accumulation on post-dive physiological recovery in odontocetes

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ENEmily NazarioMCMax F. CzapanskiyMPMalin L. Pinsky

Key Points

  • To evaluate the role of carbon dioxide in physiological recovery following diving in odontocetes.
  • Compared post-exercise O2 and CO2 recovery rates in bottlenose dolphins and beluga whales.
  • Examined recovery mechanisms including blood pH, breathing patterns, and vasodilation.
  • Monitored recovery times for O2 and CO2 across species following swim exercises.
  • Belugas returned O2 and CO2 levels to resting in 8.5 minutes; dolphins did so in 3.5 minutes.
  • Beluga blood O2 recovery took longer, and CO2 remained elevated for dolphins throughout recovery.
  • Blood lactate persisted at nearly double resting levels for both species, affecting full recovery.

Abstract

Diving performance by marine mammals is associated with marked changes in tissue oxygen (O2) and carbon dioxide (CO2) levels. Yet, the primary metric for diving recovery in most studies has focused exclusively on restoring tissue O2, despite the importance of CO2 offloading as a major determinant for diving homeostasis. To assess the combined role of respiratory and blood gases, we compared post-exercise O2 and CO2 recovery rates in bottlenose dolphins (Tursiops truncatus, n=2) and beluga whales (Delphinapterus leucas, n=4). System-wide recovery mechanisms were also examined, including blood pH, breathing patterns, and peripheral vasodilation. Following maximal swim repetitions, respiratory O2 and CO2 levels returned to resting levels within 8.5 min for belugas (VO2: 8.4±0.8 min; VCO2: 8.5±0.9 min; mean±s.d.) and 3.5 min for dolphins (VO2: 3.4±0.8 min; VCO2: 3.4±0.7 min). Blood O2 and CO2 recovery durations also varied by species. Belugas required 12-15 min to reach resting levels, whereas dolphins' blood O2 remained within resting levels and CO2 recovered in ∼4-7 min. Blood pH, driven by changes in pCO2, returned to resting levels between 12-15 min for belugas, but remained elevated throughout the recorded recovery period for dolphins. Blood lactate also remained near double the resting values for both species. Overall, we found that CO2's compounding effects with blood lactate appear to play a dominant role in odontocete dive recovery, which will dictate the duration of full physiological recovery by wild odontocetes following escape responses from anthropogenic disturbances.

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Cite This Study

Nazario et al. (2026) studied this question.

synapsesocial.com/papers/69a91e57d6127c7a504c240fhttps://doi.org/10.1242/jeb.251853
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Also Consider

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