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Allison E Mann

Biographic Data

ID5207635
NAMEAllison E Mann
GIVEN NAMESAllison E
FAMILY NAMEMann
SIGNATUREMANN A E
AFFILIATIONSLaboratories of Molecular Anthropology and Microbiome Research and Department of Anthropology University of Oklahoma Norman Oklahoma
ORCID0000-0001-7170-6017
VERIFIEDYes
TOTAL WORKS3
TOTAL CITATIONS2
AUTHOR COUNT3
EDITOR COUNT0
FIRST PUBLICATION YEAR2019
LATEST PUBLICATION YEAR2026
H-INDEX1
  • The Oral Microbiome of King Richard III of England

    Open Access•Irina M Velsko, Austin Hubner et al.•ARTICLE•American Journal of Biological…•2026

  • Do I have something in my teeth? The trouble with genetic analyses of diet from archaeological dental calculus

    Open Access•Allison E Mann, James A Fellows Yates et al.•ARTICLE•Quaternary International•2023

    Dental calculus and other preserved microbiome substrates are an attractive target for dietary reconstruction in past populations through a variety of physical, chemical, and molecular means. Recently, studies have attempted to reconstruct diet from archaeological dental calculus using archaeogenetic techniques. While dental calculus may provide a relatively stable environment for DNA preservation, the detection of plants and animals possibly con…

  • The efficacy of whole human genome capture on ancient dental calculus and dentin

    Open Access•Kirsten A Ziesemer, Jazmín Ramos‐Madrigal et al.•ARTICLE•American Journal of Physical…•2019•Cited by: 2•References: 56

    OBJECTIVES: Dental calculus is among the richest known sources of ancient DNA in the archaeological record. Although most DNA within calculus is microbial, it has been shown to contain sufficient human DNA for the targeted retrieval of whole mitochondrial genomes. Here, we explore whether calculus is also a viable substrate for whole human genome recovery using targeted enrichment techniques. MATERIALS AND METHODS: Total DNA extracted from 24 pai…

  • The efficacy of whole human genome capture on ancient dental calculus and dentin

    Open Access•Kirsten A Ziesemer, Jazmín Ramos‐Madrigal et al.•ARTICLE•American Journal of Physical…•2019•Cited by: 2•References: 56

    OBJECTIVES: Dental calculus is among the richest known sources of ancient DNA in the archaeological record. Although most DNA within calculus is microbial, it has been shown to contain sufficient human DNA for the targeted retrieval of whole mitochondrial genomes. Here, we explore whether calculus is also a viable substrate for whole human genome recovery using targeted enrichment techniques. MATERIALS AND METHODS: Total DNA extracted from 24 pai…

  • The efficacy of whole human genome capture on ancient dental calculus and dentin

    Open Access•Kirsten A Ziesemer, Jazmín Ramos‐Madrigal et al.•ARTICLE•American Journal of Physical…•2019•Cited by: 2•References: 56

    OBJECTIVES: Dental calculus is among the richest known sources of ancient DNA in the archaeological record. Although most DNA within calculus is microbial, it has been shown to contain sufficient human DNA for the targeted retrieval of whole mitochondrial genomes. Here, we explore whether calculus is also a viable substrate for whole human genome recovery using targeted enrichment techniques. MATERIALS AND METHODS: Total DNA extracted from 24 pai…

  • Do I have something in my teeth? The trouble with genetic analyses of diet from archaeological dental calculus

    Open Access•Allison E Mann, James A Fellows Yates et al.•ARTICLE•Quaternary International•2023

    Dental calculus and other preserved microbiome substrates are an attractive target for dietary reconstruction in past populations through a variety of physical, chemical, and molecular means. Recently, studies have attempted to reconstruct diet from archaeological dental calculus using archaeogenetic techniques. While dental calculus may provide a relatively stable environment for DNA preservation, the detection of plants and animals possibly con…

  • The Oral Microbiome of King Richard III of England

    Open Access•Irina M Velsko, Austin Hubner et al.•ARTICLE•American Journal of Biological…•2026

Ancient DNA (3 works) · Biology (2 works) · Calculus (dental) (2 works) · Computational biology (2 works) · Dentistry (2 works) · Forensic and Genetic Research (2 works) · Genetics (2 works) · Medicine (2 works) · Microbiome (2 works) · Anorectal Disease Treatments and Outcomes (1 works)

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