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Effects of maceration on light stable isotopic (δ13C, δ18O) values of pig (Sus scrofa) rib bone carbonate

Implications for geolocation estimates of unidentified human remains

Datos Bibliográficos

ID5284443
AutoresLigia Ceja (Dade County Medical Examiner Department, autor de correspondencia), Angela Soler (Office of Chief Medical Examiner), Richard Mortlock, Richard A Mortlock (0000-0002-6019-5941, Rutgers, the State University of New Jersey), R L Quinn (0000-0003-2580-864X, Bowling Green State University), Rhonda Quinn
Año2023
Fecha de publicación2023-11-06
Peer ReviewedSí
Open AccessNo
TipoARTICLE
RevistaForensic Anthropology (JOURNAL)
Identificadores de la revistaISSN: 2573-5020 • E-ISSN: 2573-5039
EditorialUniversity Press of Florida (PUBLISHER)
DOI10.5744/fa.2023.0006
OpenAlexW4388409311
IdiomaEN

Geoprofiling isotopic analyses provide investigative leads for unidentified human remains cases by determining possible regions of origin or excluding unlikely residences during life, which in turn can reduce the number of missing persons an investigator mustconsider. However, maceration methods involving heat, bleach, baking soda, and detergents have much potential to significantly change biogenic isotopic values in the structural carbonate phase of bone bioapatite. Here we test the impact of seven maceration methods on δ13C and δ18O values of bone carbonate (BC) of pig (Sus scrofa) ribs. Four of the seven maceration methods altered pig δ13CBC values with offsets ranging from 0.4‰ to 1.4‰; this amount of change would not severely impact human diet or geolocation interpretations. Five of the methods significantly decreased pig δ18OBC values by averages ranging between 1.0‰ and 2.6‰ likely due to the isotopic exchange between bone and heated water. As an illustrative exercise, we compared our study's results to macerated rib δ13CBC and δ18OBC values of an identified New York City resident previously in the custody of the New York City Office of Chief Medical Examiner (NYC OCME). We suggest that maceration methods, especially those involving heated water, can potentially contribute to erroneous geolocation estimates garnered from rib δ18OBC values of unidentified individuals

Biology · Carbonate · Cave · Geolocation · Isotope analysis · Maceration (sewage · Mineralogy · Physics · Stable isotope ratio · δ13C · δ18O · Chemistry · Environmental Science · Forensic Anthropology and Bioarchaeology Studies · Isotope Analysis in Ecology · Paleopathology and ancient diseases · Ecology · Environmental Engineering

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