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Using Energetic Models to Investigate the Survival and Reproduction of Beaked Whales (family Ziphiidae)
Authors:Leslie F New  David J Moretti  Sascha K Hooker  Daniel P Costa  Samantha E Simmons
Institution:1. U.S. Marine Mammal Commission, Bethesda, Maryland, United States of America.; 2. Naval Undersea Warfare Center, Newport, Rhode Island, United States of America.; 3. University of St Andrews, St Andrews, Scotland.; 4. University of California, Santa Cruz, California, United States of America.; Institut Pluridisciplinaire Hubert Curien, France,
Abstract:Mass stranding of several species of beaked whales (family Ziphiidae) associated with exposure to anthropogenic sounds has raised concern for the conservation of these species. However, little is known about the species’ life histories, prey or habitat requirements. Without this knowledge, it becomes difficult to assess the effects of anthropogenic sound, since there is no way to determine whether the disturbance is impacting the species’ physical or environmental requirements. Here we take a bioenergetics approach to address this gap in our knowledge, as the elusive, deep-diving nature of beaked whales has made it hard to study these effects directly. We develop a model for Ziphiidae linking feeding energetics to the species’ requirements for survival and reproduction, since these life history traits would be the most likely to be impacted by non-lethal disturbances. Our models suggest that beaked whale reproduction requires energy dense prey, and that poor resource availability would lead to an extension of the inter-calving interval. Further, given current information, it seems that some beaked whale species require relatively high quality habitat in order to meet their requirements for survival and reproduction. As a result, even a small non-lethal disturbance that results in displacement of whales from preferred habitats could potentially impact a population if a significant proportion of that population was affected. We explored the impact of varying ecological parameters and model assumptions on survival and reproduction, and find that calf and fetus survival appear more readily affected than the survival of adult females.
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