H2020Individual fellowship2022–2024

BACBONE · Contrasting Neanderthal and modern human subsistence practices across Europe 50,000-40,000 years ago: an interdisciplinary approach to micro-scale taphonomy and BACterial bioerosion on BONE.

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2022-02-01 → 2024-06-24
EU contribution
€224,934
Participants
1
Scheme
MSCA-IF

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Results in brief

Contrasting Neanderthal and modern human subsistence practices across Europe 50,000-40,000 years ago: an interdisciplinary approach to micro-scale taphonomy and BACterial bioerosion on BONE.

A key question in human evolution relates to behavioural differences between Neanderthals and early modern humans and to what extent these may have contributed to the eventual extinction of Neanderthals in Eurasia ca. 40,000 years ago. Past hypotheses have emphasised the importance of distance hunting and a broadening of the diet as key factors in the global success of modern humans. In order to understand this requires the detailed data on differences in subsistence practices and diet through the identification and analysis of fragmented animal bones from Palaeolithic sites. Typically, these studies focus on morphologically identifiable bones, representing only 10-30% of a faunal assemblage and on visible and well documented bone surface modifications. Since 2009, zooarchaeology has benefitted from the development of biomolecular methods, especially Zooarchaeology by Mass Spectrometry (ZooMS). ZooMS provides taxonomic identifications of morphologically unidentifiable bone fragments. With a success rate of 95%, ZooMS greatly increases the number of taxonomically identified bones at a site. Alongside biomolecular advances there has been a renewed focus on the analysis of the microscopic alteration to bone (histotaphonomy), which can have direct behavioural implications. Results can illustrate whether bones entered the archaeological record butchered or fully fleshed (complete carcass burial or natural death), though these have, largely, focused on human remains from more recent time periods. BACBONE is the first large-scale histotaphonomic study of Palaeolithic bone assemblages, combining taxonomic identifications through ZooMS with hard tissue histology and the high-throughput capacity of high-resolution microtomography (micro-CT) for non-destructive virtual histology. BACBONE cross-compares the histotaphonomic signature of various animal species (e.g. butchered herbivore vs natural carnivore death) with available human remains to facilitate an unparalleled comprehensive reconstruction of bone deposition and processing patterns. The project has developed a unique methodology, which has identified histotaphonomic characteristics using both non-destructive virtual histology and hard-tissue histology. These methods were applied to a wide range of materials from sites of different time periods and producing exciting results and a clear methodological pathway for future development and application.

Data: CORDIS, © European Union

Project objective

The role of behavioural differences in the replacement of Neanderthals by modern humans remains a fundamental issue in human evolution. While recent archaeological and genetic studies have challenged ideas of Neanderthal behavioural inferiority, up-to-date assessments of differences in subsistence behaviour are still sparse. BACBONE fills this gap with a unique, interdisciplinary approach to bone taphonomy and subsistence practices 50,000-40,000 years ago, a time when both Neanderthals and modern humans were present in Europe.Subsistence reconstructions typically focus on larger, identifiable animal bone fragments and visible surface modifications. BACBONE combines, for the first time, a focus on the small bone fraction, now identifiable through Zooarchaeology by Mass Spectrometry (ZooMS), with the microscopic study of alterations to bone inner structures (histotaphonomy). This approach provides unique insights into patterns of carcass deposition and processing and has three objectives. First, forensic experiments and a reference database will provide essential background on micro-scale taphonomy. Second, histotaphonomic alterations will be mapped across key Neanderthal and early modern human assemblages from France and Bulgaria, combining the high through-put capacity of microtomography (micro-CT, virtual histology) with hard tissue histology. Third, interdisciplinary dataset integration will test for differences in Neanderthal and modern human subsistence practices at an assemblage and broader European scale. BACBONE will significantly advance methods in Palaeolithic archaeology and form the core of a new research programme at the interface between archaeology, biological anthropology and forensic science. Necessary training and expertise are exclusively available at the University of Kent (UK) and BACBONE will add competitiveness to European research, forging new transnational collaborations and establishing innovative, multi-methodological research excellence.

Original text from CORDIS.

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Data: CORDIS, © European Union