5 research outputs found

    A bioarchaeological approach to prehistoric cemetery populations from western and central Greek Macedonia.

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    The osteological material under study consists of 510 skeletal remains dating from the Early Neolithic (6000 BC) to the Early Iron Age (1100-700 BC). It comes from nine different cemeteries and burial locations extending from the coastal to the inland areas of the study region. The current thesis attempts to explore two major issues: 1) the reconstruction of aspects of life history and 2) the treatment and manipulation of the deceased as revealed by the human skeletal remains. With regard to the former, the investigation of demographic parameters, patterns of health and oral status as well as diet have been considered. In short, local conditions defined by environmental and social constraints probably affected the general quality of life reconstructed for the study populations. There is an overall tendency however, towards declining levels of health and oral status in the Late Bronze and Early Iron Age populations, while certain assemblages provide high levels of infant and child mortality, possibly associated with a type of anaemia. There is also a substantial involvement of the upper skeleton in work patterns, possibly related to activities such as food acquisition, processing and preparation. Meanwhile, the evidence for dietary patterns from the NeolithiclEarly Bronze Ages to the Late BronzelEarly Iron Ages is consistent with an overall shift from a high reliance on meat consumption to a diet bas<:don carbohydrate foodstuffs. The evaluation of the manipulation of the deceased, alongside the evidence for mortuary differentiation through time, reveals a striking transformation from the practice of single inhumations in the Early Bronze Age to multiple/secondary burials in the Late Bronze and Early Iron Age assemblages, suggesting a shift in emphasis from individual to lineage-group identity. Furthermore, the integration of biological inferences with the evidence of mortuary behaviour provides further insights into sex roles and the position of subadults, otherwise invisible, in the living community

    Nemea Valley Archaeological Project, Excavations at Barnavos: Final Report

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    In 2002 and 2003 the 4th Ephorate of Prehistoric and Classical Antiquities and the Nemea Valley Archaeological Project (NVAP) excavated a robbed Late Helladic (LH) IIIA2 chamber tomb at Barnavos, west of the village of Ancient Nemea. Through application of a novel method of stratigraphic analysis and careful documentation of the scattered remains, it was ascertained that the tomb was opened as many as six times for four or five interments, including a child and probably both male and female adults. No other tomb was found in the vicinity. This is the first Mycenaean tomb discovered in the valley, and it belongs to the settlement at Tsoungiza

    The genomic origins of the world’s first farmers

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    The precise genetic origins of the first Neolithic farming populations in Europe and Southwest Asia, as well as the processes and the timing of their differentiation, remain largely unknown. Demogenomic modeling of high-quality ancient genomes reveals that the early farmers of Anatolia and Europe emerged from a multiphase mixing of a Southwest Asian population with a strongly bottlenecked western hunter-gatherer population after the last glacial maximum. Moreover, the ancestors of the first farmers of Europe and Anatolia went through a period of extreme genetic drift during their westward range expansion, contributing highly to their genetic distinctiveness. This modeling elucidates the demographic processes at the root of the Neolithic transition and leads to a spatial interpretation of the population history of Southwest Asia and Europe during the late Pleistocene and early Holocene.Open access articleThis item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at [email protected]

    The genomic history of the Aegean palatial civilizations

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    The Cycladic, the Minoan, and the Helladic (Mycenaean) cultures define the Bronze Age (BA) of Greece. Urbanism, complex social structures, craft and agricultural specialization, and the earliest forms of writing characterize this iconic period. We sequenced six Early to Middle BA whole genomes, along with 11 mitochondrial genomes, sampled from the three BA cultures of the Aegean Sea. The Early BA (EBA) genomes are homogeneous and derive most of their ancestry from Neolithic Aegeans, contrary to earlier hypotheses that the Neolithic-EBA cultural transition was due to massive population turnover. EBA Aegeans were shaped by relatively small-scale migration from East of the Aegean, as evidenced by the Caucasus-related ancestry also detected in Anatolians. In contrast, Middle BA (MBA) individuals of northern Greece differ from EBA populations in showing ∌50% Pontic-Caspian Steppe-related ancestry, dated at ca. 2,600-2,000 BCE. Such gene flow events during the MBA contributed toward shaping present-day Greek genomes.We thank the INCD (https://incd.pt/) for use of their computing infrastructure, which is funded by FCT and FEDER ( 01/SAICT/2016 022153 ).C.P., E.G., A.S., L.W., and J. Burger acknowledge the support of the European Union and the General Secretariat of Research and Innovation-GSRI, Ministry of Development & Investments in Greece, and the Federal Ministry of Education and Research-BMBF in Germany under the Bilateral Cooperation Program Greece – Germany 2017 (project BIOMUSE-0195 ). O.L. and O. Dolgova acknowledge the support of the Spanish Ministry of Science and Innovation to the EMBL partnership, Centro de Excelencia Severo Ochoa, CERCA Programme/Generalitat de Catalunya, Spanish Ministry of Science and Innovation through the Instituto de Salud Carlos III, Generalitat de Catalunya through Departament de Salut and Departament d’Empresa i Coneixement, as well as co-financing with funds from the European Regional Development Fund by the Spanish Ministry of Science and Innovation corresponding to the Programa Operativo FEDER Plurirregional de España (POPE) 2014-2020, and by the Secretaria d’Universitats i Recerca, Departament d’Empresa i Coneixement of the Generalitat de Catalunya corresponding to the Programa Operatiu FEDER de Catalunya 2014-2020. F.C., C.E.G.A., S.N., D.I.C.D., L.A., B.S.d.M., Y.O.A.C., F.M., J.V.M.-M., and A.-S.M. were supported by the Swiss National Science Foundation (SFNS) and a European Research Council (ERC) grant to A.-S.M. M.U., S.T., D.U.-K., and C.P. were co-financed by the EU Social Fund and the Greek national funds research funding program ARISTEIA II ( project-3461 ). C.P., E.G., A.S., L.W., and J. Burger were co-financed by the Greek-German bilateral cooperation program 2017 (General Secreteriat for Research and Innovation, Ministry of Development and Investments, Greece, and Federal Ministry of Education and Research - BMBF, Germany) project BIOMUSE-0195 funded by the Operational Programme “Competitiveness, Entrepreneurship and Innovation” (NSRF 2014-2020 ) and co-financed by Greece and the European Union (EU Social Fund and European Regional Development Fund). E.K. was funded by the Greek State Scholarships Foundation (IKY). O. Delaneau is funded by a SNSF (project grant PP00P3_176977 ). V.C.S. was supported by Portuguese Foundation for Science and Technology (FCT-Fundação para a CiĂȘncia e Tecnologia) through funds granted to cE3c ( UIDB/00329/2020 ) and individual grant CEECIND/02391/2017 . O.L. was supported by a RamĂłn y Cajal grant from the Spanish Ministerio de Economia y Competitividad (MEIC) (RYC-2013-14797), a PGC2018-098574-B-I00 (MEIC/FEDER) grant, and the support of Secretaria d’Universitats i Recerca del Departament d’Economia i Coneixement de la Generalitat de Catalunya ( GRC 2017 SGR 937 ). O. Dolgova was supported by a PGC2018-098574-B-I00 (MEIC/FEDER) grant. J.D.J. was funded by National Institutes of Health grants R01GM135899 and R35GM13938
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