EPOCH GeoChem · Early POpulations in Cretan History: Investigating residential mobility in the eastern Mediterranean using isotope GeoChemistry
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2016-06-01 → 2018-05-31
- EU contribution
- €195,455
- Participants
- 1
- Scheme
- MSCA-IF-EF-ST
Lines connect the coordinator with its partners.
Results in brief
Early POpulations in Cretan History: Investigating residential mobility in the eastern Mediterranean using isotope GeoChemistry
EPOCH GeoChem is a multidisciplinary (archaeology, osteoarchaeology, isotope geochemistry) project that investigates the Neolithic Transition and the subsequent socio-economic developments on Crete in Greece, which led to the development of one of the earliest European civilizations. For the first time, the focus is on the skeletal remains of the people themselves and the tools are cutting-edge isotope geochemistry and radiocarbon analyses. The main objectives of this research were to: a) investigate residential mobility during the Neolithic to Early Bronze Age on the island (around 5500 to 2000BC); b) refine the chronology of the early human occupation of Crete; c) achieve a nuanced reconstruction of the early Cretan bio-cultural history through in-context interpretation of isotopic data on diet and geographical origins ; d) create the tools necessary for this and further research on mobility in Europe and the Eastern Mediterranean. There is a general consensus over a purposive Neolithic colonization of Crete by newcomers from Anatolia, who, probably arriving in more than a single episode over several centuries, are considered the first settlers. Additional gene-flow into Crete from western Anatolia, the north-eastern and central Aegean, plus mobility within the island have been postulated for the succeeding periods, largely based on settlement, material culture and mortuary evidence for population increase, inter-regional contacts, changes and innovations during this period, and modern DNA data. Despite the volume of the above data, before EPOCH GeoChem a direct bioarchaeological perspective through analysis of the humans themselves was absent. EPOCH GeoChem used for the first time isotopic analyses of multiple elements (strontium, oxygen, carbon, nitrogen and sulphur) of the same archaeological human remains from nine archaeological skeletal sites, including the earliest yet excavated collection from Crete, to determine geographical origins and diet for the respective people. These data were then used as proxies to identify different, new populations, and, along with the radiocarbon data, track and interpret in-context any residential mobility and migration. Intra-group variations on diet and geographical origin by sex, age, kinship or other subgroup affiliation were further explored to gain a nuanced insight into the lifeways and social organisation of these people. Radiocarbon dating provided a clear chronological framework to the research.
Data: CORDIS, © European Union
Project objective
EPOCH GeoChem investigates the Neolithic Transition and the subsequent socio-economic developments on Crete (Greece) using a pioneering, multifaceted methodological approach. For the first time, the focus is on the skeletal remains of the respective people; the tools are cutting-edge isotope geochemistry and radiocarbon analyses; the perspective is bioarchaeological and the methodology is novel for this topic. The main objectives are to: a) investigate residential mobility during the Neolithic to Early Bronze Age on the island; b) refine the chronology of the early human occupation of Crete; c) achieve a nuanced reconstruction of the early Cretan bio-cultural history through in-context interpretation of isotopic data; d) create the tools necessary for this and further research on mobility in Europe and the Eastern Mediterranean. For the first time, isotopic analyses of multiple elements (strontium, oxygen, carbon, nitrogen, sulphur and hydrogen) will be used on the same archaeological human remains, including the earliest yet excavated collection from Crete, to determine geographical origins and diet as proxies for distinguishing between different groups, reconstruct mobility and gain insights into the lifeways and social organization of the respective communities. Radiocarbon dating will provide a clear chronological framework. Through the Fellowship the applicant will create critical new knowledge, an innovative methodology and high quality new data for research into the Neolithic Transition and mobility in Europe and the Eastern Mediterranean; establish lasting cross-border academic networks and collaborations; attain the professional maturity required for leading further research advances; educate the public on the benefits of science and motivate the younger generation. These outcomes fulfill the Horizon 2020 Programme’s aims to promote EU excellence through top research and innovation performance across Europe and through a knowledge-based society.
Original text from CORDIS.
Participants
- THE CHANCELLOR MASTERS AND SCHOLARS OF THE UNIVERSITY OF CAMBRIDGE · CAMBRIDGECoordinatorUnited Kingdom
Links
Data: CORDIS, © European Union
