Re-examining the chemical evaluation of diagenesis in human bone apatite

2011 ◽  
Vol 38 (9) ◽  
pp. 2222-2230 ◽  
Author(s):  
Charlotte L. King ◽  
Nancy Tayles ◽  
Keith C. Gordon
Radiocarbon ◽  
2016 ◽  
Vol 58 (2) ◽  
pp. 383-395 ◽  
Author(s):  
Antoine Zazzo ◽  
Olivia Munoz ◽  
Emilie Badel ◽  
Irène Béguier ◽  
Francesco Genchi ◽  
...  

AbstractRa’s al-Hamra 6 (RH-6) is one of the earliest stratified archaeological sites along the eastern littoral of the Arabian Peninsula. This shell midden was radiocarbon dated to the 6th–5th millennium cal BC, but the majority of the dates were obtained before the advent of accelerator mass spectrometry (AMS) 14C dating and suffer from large uncertainties. In addition, most of these dates were obtained on marine and mangrove shells and required correction for local variations from the global average marine 14C reservoir age (MRA). This proved difficult because no consensus value exists for this period in the area. Recent excavations at RH-6 offered the opportunity to redate this important site in order to precisely determine its occupation history and later use as a graveyard, and establish the marine reservoir effect for this time period. Thirty-eight samples of charcoal, shells, and human bone apatite were selected for 14C dating. Bayesian modeling of the 14C dates suggests that the formation of the shell midden spanned ~1 millennium, between the mid-6th and the mid-5th millennium cal BC. Positive and consistent ΔR values were calculated throughout the entire sequence, ranging from 99±27 to 207±43 14C yr. At the beginning of the 4th millennium cal BC, RH-6 was used as a graveyard, as suggested by the 14C dating of a shell in strict association with an individual buried at the surface of the site. 14C dating of human bone apatite allowed us to calculate that 89% of this individual’s diet derived from marine resources. This finding confirms previous observations showing the overwhelming presence of marine and mangrove-dwelling species in the faunal and charcoal assemblage, and implies a low mobility, or mobility restricted to the coast for this population during the 4th millennium cal BC.


1963 ◽  
Vol 8 (4) ◽  
pp. 549-570 ◽  
Author(s):  
A.S. Posner ◽  
E.D. Eanes ◽  
R.A. Harper ◽  
I. Zipkin

1965 ◽  
Vol 10 (1) ◽  
pp. 161-173 ◽  
Author(s):  
E.D. Eanes ◽  
I. Zipkin ◽  
R.A. Harper ◽  
A.S. Posner

2022 ◽  
Vol 12 (1) ◽  
pp. 498
Author(s):  
Elissavet Dotsika ◽  
Maria Tassi ◽  
Petros Karalis ◽  
Anastasia Chrysostomou ◽  
Dimitra Ermioni Michael ◽  
...  

In this article we present an isotopic analysis of human bone collagen (δ13Ccol, and δ15Ncol) and bone apatite (δ13C) for diet reconstruction, as well as δ18Oap of human bone apatite for climate reconstruction, using samples from Northern Greece. Radiocarbon dating analysis was conducted on three of the Agras samples and the results (from 1000 to 800 BC) correspond to the Early Iron Age. Isotopic values for δ13Ccol range from −20.5‰ to −16‰ and for δ15Ncol from 6‰ to 11.1‰—a strong indication of a C3-based diet, with contributions by C4 and freshwater fish elements. The results were compared to the ones from Roman Edessa, and Alexandreia (a contemporary city near Edessa), as well as to other Early Iron sites in Greece and wider Europe. In general, the results from Agras are in good agreement with the results from Northern Greece, with the exception of the Makriyalos site, and are quite close to those of Croatia’s and Hungary’s sites. Additionally, from the δ18Oap results we calculated the oxygen isotopic composition of consumed water for Agras (from −9.6‰ to −10.9‰) and for Roman Edessa (from −9.6‰ to −11.2‰) for the palaeoclimate and palaeomobility reconstruction.


Planta Medica ◽  
2011 ◽  
Vol 77 (05) ◽  
Author(s):  
M Mujeeb ◽  
NA Siddique ◽  
A Ahmad ◽  
S Ahmad

Planta Medica ◽  
2016 ◽  
Vol 81 (S 01) ◽  
pp. S1-S381
Author(s):  
JP Ferreira-Neto ◽  
RJSA Padilha ◽  
ERB Santana ◽  
DN Gomes ◽  
KXFR Sena ◽  
...  

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