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  • 1
    Online Resource
    Online Resource
    Canadian Science Publishing ; 2017
    In:  Arctic Science Vol. 3, No. 3 ( 2017-09-01), p. 618-634
    In: Arctic Science, Canadian Science Publishing, Vol. 3, No. 3 ( 2017-09-01), p. 618-634
    Abstract: Museums of natural and cultural history in the 21st century hold responsibilities that are vastly different from those of the 19th and early 20th centuries, the time of many of their inceptions. No longer conceived of as cabinets of curiosities, institutional priorities are in the process of undergoing dramatic changes. This article reviews the history of the University of Alaska Museum in Fairbanks, Alaska, from its development in the early 1920s, describing the changing ways staff have worked with Indigenous individuals and communities. Projects like the Modern Alaska Native Material Culture and the Barter Island Project are highlighted as examples of how artifacts and the people who constructed them are no longer viewed as simply examples of material culture and Native informants but are considered partners in the acquisition, preservation, and perpetuation of traditional and scientific knowledge in Alaska.
    Type of Medium: Online Resource
    ISSN: 2368-7460 , 2368-7460
    Language: English
    Publisher: Canadian Science Publishing
    Publication Date: 2017
    detail.hit.zdb_id: 3037411-X
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  • 2
    In: Global Change Biology, Wiley, Vol. 27, No. 13 ( 2021-07), p. 3109-3119
    Abstract: Arctic climate change poses serious threats to polar bears ( Ursus maritimus ) as reduced sea ice makes seal prey inaccessible and marine ecosystems undergo bottom‐up reorganization. Polar bears’ elongated skulls and reduced molar dentition, as compared to their sister species the grizzly bear ( Ursus arctos ), are adaptations associated with hunting seals on sea ice and a soft, lipid‐rich diet of blubber and meat. With significant declines in sea ice, it is unclear if and how polar bears may be altering their diets. Clarifying polar bear dietary responses to changing climates, both today and in the past, is critical to proper conservation and management of this apex predator. This is particularly important when a dietary strategy may be maladaptive. Here, we test the hypothesis that hard‐food consumption (i.e., less preferred foods including bone), inferred from dental microwear texture analysis, increased with Arctic warming. We find that polar bears demonstrate a conserved absence of hard‐object feeding in Alaska through time (including approximately 1000 years ago), until the 21st century, consistent with a highly conserved and specialized diet of soft blubber and flesh. Notably, our results also suggest that some 21st‐century polar bears may be consuming harder foods (e.g., increased carcass utilization, terrestrial foods including garbage), despite having skulls and metabolisms poorly suited for such a diet. Prior to the 21st century, only polar bears with larger mandibles demonstrated increased hard‐object feeding, though to a much lower degree than closely related grizzly bears which regularly consume mechanically challenging foods. Polar bears, being morphologically specialized, have biomechanical constraints which may limit their ability to consume mechanically challenging diets, with dietary shifts occurring only under the most extreme scenarios. Collectively, the highly specialized diets and cranial morphology of polar bears may severely limit their ability to adapt to a warming Arctic.
    Type of Medium: Online Resource
    ISSN: 1354-1013 , 1365-2486
    URL: Issue
    Language: English
    Publisher: Wiley
    Publication Date: 2021
    detail.hit.zdb_id: 2020313-5
    SSG: 12
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  • 3
    In: Proceedings of the Royal Society B: Biological Sciences, The Royal Society, Vol. 286, No. 1916 ( 2019-12-04), p. 20191929-
    Abstract: Domestic dogs have been central to life in the North American Arctic for millennia. The ancestors of the Inuit were the first to introduce the widespread usage of dog sledge transportation technology to the Americas, but whether the Inuit adopted local Palaeo-Inuit dogs or introduced a new dog population to the region remains unknown. To test these hypotheses, we generated mitochondrial DNA and geometric morphometric data of skull and dental elements from a total of 922 North American Arctic dogs and wolves spanning over 4500 years. Our analyses revealed that dogs from Inuit sites dating from 2000 BP possess morphological and genetic signatures that distinguish them from earlier Palaeo-Inuit dogs, and identified a novel mitochondrial clade in eastern Siberia and Alaska. The genetic legacy of these Inuit dogs survives today in modern Arctic sledge dogs despite phenotypic differences between archaeological and modern Arctic dogs. Together, our data reveal that Inuit dogs derive from a secondary pre-contact migration of dogs distinct from Palaeo-Inuit dogs, and probably aided the Inuit expansion across the North American Arctic beginning around 1000 BP.
    Type of Medium: Online Resource
    ISSN: 0962-8452 , 1471-2954
    Language: English
    Publisher: The Royal Society
    Publication Date: 2019
    detail.hit.zdb_id: 1460975-7
    SSG: 12
    SSG: 25
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