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Maria C Viteri

Biographic Data

ID1542460
NAMEMaria C Viteri
GIVEN NAMESMaria C
FAMILY NAMEViteri
SIGNATUREVITERI M C
AFFILIATIONSStanford University
ORCID0000-0002-3751-1045
VERIFIEDYes
TOTAL WORKS3
TOTAL CITATIONS2
AUTHOR COUNT3
EDITOR COUNT0
FIRST PUBLICATION YEAR2022
LATEST PUBLICATION YEAR2023
H-INDEX1
  • Bothersome burrowers: Tracking the impact of Botta’s pocket gopher (Thomomys bottae) bioturbation on a late-Holocene site

    Open Access•Maria C Viteri, M Allison Stegner et al.•ARTICLE•Journal of Archaeological Science…•2023•References: 8

  • The Searsville Lake Site (California, USA) as a candidate Global boundary Stratotype Section and Point for the Anthropocene series

    Open Access•M Allison Stegner, Elizabeth A Hadly et al.•ARTICLE•The Anthropocene Review•2023•Cited by: 2•References: 60

    Cores from Searsville Lake within Stanford University's Jasper Ridge Biological Preserve, California, USA, are examined to identify a potential GSSP for the Anthropocene: core JRBP2018-VC01B (944.5 cm-long) and tightly correlated JRBP2018-VC01A (852.5 cm-long). Spanning from 1900 CE ± 3 years to 2018 CE, a secure chronology resolved to the sub-annual level allows detailed exploration of the Holocene-Anthropocene transition. We identify the primar…

  • Assessing the reliability of raptor pellets in recording local small mammal diversity

    Open Access•Maria C Viteri, M Allison Stegner et al.•ARTICLE•Quaternary Research•2022

    Understanding how raptors select prey is important to determine taphonomic biases both in modern and paleo pellet assemblages. We tested whether pellets more closely represent raptor dietary specialization or local small mammal diversity by sampling pellets from seven raptor species across four study sites in Yellowstone National Park, Wyoming, USA. We identified small mammal craniodental elements from each pellet and tested for differences among…

  • The Searsville Lake Site (California, USA) as a candidate Global boundary Stratotype Section and Point for the Anthropocene series

    Open Access•M Allison Stegner, Elizabeth A Hadly et al.•ARTICLE•The Anthropocene Review•2023•Cited by: 2•References: 60

    Cores from Searsville Lake within Stanford University's Jasper Ridge Biological Preserve, California, USA, are examined to identify a potential GSSP for the Anthropocene: core JRBP2018-VC01B (944.5 cm-long) and tightly correlated JRBP2018-VC01A (852.5 cm-long). Spanning from 1900 CE ± 3 years to 2018 CE, a secure chronology resolved to the sub-annual level allows detailed exploration of the Holocene-Anthropocene transition. We identify the primar…

  • Assessing the reliability of raptor pellets in recording local small mammal diversity

    Open Access•Maria C Viteri, M Allison Stegner et al.•ARTICLE•Quaternary Research•2022

    Understanding how raptors select prey is important to determine taphonomic biases both in modern and paleo pellet assemblages. We tested whether pellets more closely represent raptor dietary specialization or local small mammal diversity by sampling pellets from seven raptor species across four study sites in Yellowstone National Park, Wyoming, USA. We identified small mammal craniodental elements from each pellet and tested for differences among…

  • Bothersome burrowers: Tracking the impact of Botta’s pocket gopher (Thomomys bottae) bioturbation on a late-Holocene site

    Open Access•Maria C Viteri, M Allison Stegner et al.•ARTICLE•Journal of Archaeological Science…•2023•References: 8

  • The Searsville Lake Site (California, USA) as a candidate Global boundary Stratotype Section and Point for the Anthropocene series

    Open Access•M Allison Stegner, Elizabeth A Hadly et al.•ARTICLE•The Anthropocene Review•2023•Cited by: 2•References: 60

    Cores from Searsville Lake within Stanford University's Jasper Ridge Biological Preserve, California, USA, are examined to identify a potential GSSP for the Anthropocene: core JRBP2018-VC01B (944.5 cm-long) and tightly correlated JRBP2018-VC01A (852.5 cm-long). Spanning from 1900 CE ± 3 years to 2018 CE, a secure chronology resolved to the sub-annual level allows detailed exploration of the Holocene-Anthropocene transition. We identify the primar…

Archaeology (2 works) · Biology (2 works) · Evolution and Paleontology Studies (2 works) · Geography (2 works) · Geology (2 works) · Holocene (2 works) · Isotope Analysis in Ecology (2 works) · Paleontology (2 works) · Pleistocene-Era Hominins and Archaeology (2 works) · Anthropocene (1 works)

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