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Sökning: WFRF:(Trainor S)

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  • Clase, CM, et al. (författare)
  • Can Peer Review Be Kinder? Supportive Peer Review: A Re-Commitment to Kindness and a Call to Action
  • 2022
  • Ingår i: Canadian journal of kidney health and disease. - : SAGE Publications. - 2054-3581. ; 9, s. 20543581221080327-
  • Tidskriftsartikel (övrigt vetenskapligt/konstnärligt)abstract
    • Peer review aims to select articles for publication and to improve articles before publication. We believe that this process can be infused by kindness without losing rigor. In 2014, the founding editorial team of the Canadian Journal of Kidney Health and Disease (CJKHD) made an explicit commitment to treat authors as we would wish to be treated ourselves. This broader group of authors reaffirms this principle, for which we suggest the terminology “supportive review.”
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  • Fahlman, Andreas, et al. (författare)
  • Deep diving by offshore bottlenose dolphins (Tursiops spp.)
  • 2023
  • Ingår i: Marine mammal science. - : WILEY. - 0824-0469 .- 1748-7692. ; 39:4, s. 1251-1266
  • Tidskriftsartikel (refereegranskat)abstract
    • We used satellite-linked tags to evaluate dive behavior in offshore bottlenose dolphins (Tursiops spp.) near the island of Bermuda. The data provide evidence that bottlenose dolphins commonly perform both long (>272 s) and deep (>199 m) dives, with the deepest and longest dives being to 1,000 m and 826 s (13.8 min), respectively. The data show a relationship between dive duration and dive depth for dives longer than about 272 s. There was a diurnal pattern to dive behavior, with most dives deeper than 50 m being performed at night; deep diving began at sunset and varied throughout the night. We used the cumulative frequency of dive duration to estimate a behavioral aerobic dive limit (bADL) of around 560-666 s (9.3-11.1 min) in adult dolphins in this population. Dives exceeding the bADL spent significantly longer time in the upper-most 50 m following a dive as compared with dives less than the bADL. We conclude that the offshore ecotype off Bermuda, unlike the shallow-diving near-shore bottlenose dolphin, is a deep-diving ecotype, and may provide a useful animal model to study extreme diving behavior and adaptations.
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