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    Strontium isotope movement modeling of modern and ancient megafauna in Alaska

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    Name:
    Rowe_A_2025.pdf
    Embargo:
    2027-08-14
    Size:
    8.742Mb
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    Author
    Rowe, Audrey
    Chair
    Wooller, Matthew
    Committee
    Bigelow, Nancy
    Breed, Greg
    Reuther, Joshua
    Keyword
    Strontium isotopes
    Home range (Animal geography)
    Woolly mammoth
    Caribou
    Metadata
    Show full item record
    URI
    http://hdl.handle.net/11122/16271
    Abstract
    Strontium isotope analysis is a technique that can be used to infer the geographic origin of biological materials. The strontium isotope ratios (87Sr/86Sr) of biological tissues can be matched to locations on a modeled strontium geographic distribution (“isoscape”) with similar 87Sr/86Sr. In this dissertation, I measured 87Sr/86Sr and other stable isotopes along the length of a mammoth tusk to model its lifetime movement and infer details about its food sources and nutritional status. I then adapted this modeling method to caribou tooth enamel to compare modern and premodern caribou space use in interior Alaska and built a new 87Sr/86Sr isoscape of interior Alaska and western Yukon with 87Sr/86Sr data from analyses of small rodent teeth. Finally, I added vegetation measurements to the isoscape model in northern Alaska, showing that vascular and non-vascular plants do not differ in 87Sr/86Sr in this region, and argued that further improvement of the isoscape of the region is necessary. Overall, the research completed in this dissertation expanded on the use of 87Sr/86Sr in reconstructing the movement of large mammals, and improved the potential for this proxy to be used in broader provenance and mobility studies in Alaska.
    Description
    Dissertation (Ph.D.) University of Alaska Fairbanks, 2025
    Table of Contents
    Chapter 1: General introduction -- Chapter 2: A female woolly mammoth's lifetime movements end in an ancient Alaskan hunter-gatherer camp -- Chapter 3: Comparing modern and archaeological caribou ranges using strontium isotope movement modeling -- Chapter 4: A strontium isoscape of northern Alaska enhanced with vegetation samples highlights local consistency and regional gaps -- Chapter 5: General conclusions.
    Date
    2025-08
    Type
    Dissertation
    Collections
    Biological Sciences
    Interdisciplinary Studies

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