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"Breath holding" as a thermoregulation strategy in the scalloped hammerhead, a deep-diving tropical ectothermic shark

  • Mark Royer (Creator)
  • Carl Meyer (Creator)
  • John Royer (Creator)
  • Kelsey Maloney (Creator)
  • Edward Cardona (Creator)
  • Chloé Blandino (Creator)
  • Guilherme Alves da Silva (Creator)
  • Kate Whittingham (Creator)
  • Kim Holland (Creator)

Dataset

Description

Fish moving between different thermal environments experience heat exchange via conduction through the body wall and convection from blood flow across the gills. Here we report a strategy of preventing convective heat loss at the gills during excursions into deep cold water by the tropical scalloped hammerhead shark (Sphryna lewini). Adult scalloped hammerhead sharks dive rapidly and repeatedly from warm (~26ºC) surface waters to depths exceeding 800 meters and temperatures as low as 5°C. Biologgers attached to adult sharks show that warm muscle temperatures were maintained throughout the deepest portion of each dive. Substantive cooling only occurred during the latter stages of the ascent phase, and once initiated, was rapid. Heat transfer coefficient modeling indicated that convective heat transfer was suspended, probably by suppressing gill function during deep dives. This previously unobserved strategy has broad similarities to marine mammal "breath hold" diving.

Data Citation

Royer, M., Meyer, C., Royer, J., Maloney, K., Cardona, E., Blandino, C., Silva, G., Whittingham, K., & Holland, K. (2023). "Breath holding" as a thermoregulation strategy in the scalloped hammerhead, a deep-diving tropical ectothermic shark. Zenodo. https://doi.org/10.5281/zenodo.7725092
Date made available26 Apr 2023
PublisherZenodo

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