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  • 1
    Online Resource
    Online Resource
    Cham : Springer International Publishing | Cham : Imprint: Springer
    Keywords: Freshwater ecology. ; Marine ecology. ; Conservation biology. ; Ecology . ; Biodiversity. ; Zoology. ; Behavior genetics.
    Description / Table of Contents: Evolution – Analisa Berta -- Sensory and cognition – Tentative Colleen Reichmuth and others -- Communication – Isabelle Charrier -- Physiology – Dan Crocker -- Movement – Luis Huckstadt and Ryan Reisinger -- Navigation – Patrick Robinson -- Foraging ecology and behavior – Don Bowen -- Reproductive behavior and lactation strategies – Dan Costa and Jen Maresh -- Breeding behavior – Paddy Pomeroy and Kelly Robinson -- Conservation – Samantha Simmons and others.
    Type of Medium: Online Resource
    Pages: 1 Online-Ressource(XVIII, 645 p. 180 illus., 161 illus. in color.)
    Edition: 1st ed. 2022.
    ISBN: 9783030889234
    Series Statement: Ethology and Behavioral Ecology of Marine Mammals
    Language: English
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  • 2
    Publication Date: 2022-05-25
    Description: © The Author(s), 2011. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Proceedings of the Royal Society B Biological Sciences 279 (2012): 1041-1050, doi:10.1098/rspb.2011.2088.
    Description: Decompression sickness (DCS; ‘the bends’) is a disease associated with gas uptake at pressure. The basic pathology and cause are relatively well known to human divers. Breath-hold diving marine mammals were thought to be relatively immune to DCS owing to multiple anatomical, physiological and behavioural adaptations that reduce nitrogen gas (N2) loading during dives. However, recent observations have shown that gas bubbles may form and tissue injury may occur in marine mammals under certain circumstances. Gas kinetic models based on measured time-depth profiles further suggest the potential occurrence of high blood and tissue N2 tensions. We review evidence for gas-bubble incidence in marine mammal tissues and discuss the theory behind gas loading and bubble formation. We suggest that diving mammals vary their physiological responses according to multiple stressors, and that the perspective on marine mammal diving physiology should change from simply minimizing N2 loading to management of the N2 load. This suggests several avenues for further study, ranging from the effects of gas bubbles at molecular, cellular and organ function levels, to comparative studies relating the presence/absence of gas bubbles to diving behaviour. Technological advances in imaging and remote instrumentation are likely to advance this field in coming years.
    Description: This paper and the workshop it stemmed from were funded by the Woods Hole Oceanographic Institution Marine Mammal Centre.
    Keywords: Diving physiology ; Marine mammals ; Gas bubbles ; Embolism ; Decompression sickness
    Repository Name: Woods Hole Open Access Server
    Type: Article
    Format: application/pdf
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