Strontium isotope ratios are widely used in archaeology to differentiate between local and non-local populations. Herein, strontium isotope ratios of 36 human tooth enamels from seven archaeological sites spanning the Early to Late Neolithic of northern Greece (7th–5th millennia B.C.E.) were analysed with the aim of providing new information relating to the movement of humans across the region. Local bioavailable 87Sr/86Sr signals were established using tooth enamel from 26 domestic animals from the same Neolithic sites. 87Sr/86Sr values of faunal enamel correlate well with predicted strontium isotope ratios of the local geology. This is consistent with animal management occurring at a local level, although at Late Neolithic sites strontium...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
This study presents the first Sr-87/Sr-86 isotope results obtained on Neolithic humans from Southern...
Strontium isotopes are a powerful tool which provide information about provenance directly from the ...
Human mobility in recent history is well documented and often related to drastic external changes, ...
Strontium isotope analysis of tooth enamel is a useful provenancing technique to investigate the ch...
To investigate the mobility patterns of Neanderthals and modern humans in Europe during the Middle-t...
The present study discusses aspects of human mobility in Ceramic Neolithic (ca. 5200/5000–4000 BC) a...
This article presents evidence of population movements in Thessaly, Greece, during the Early Iron Ag...
This article presents evidence of population movements in Thessaly, Greece, during the Early Iron Ag...
The present study discusses aspects of human mobility in Ceramic Neolithic (ca. 5200/5000–4000 BC) a...
This article presents evidence of population movements in Thessaly, Greece, during the Early Iron Ag...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
This study presents the first Sr-87/Sr-86 isotope results obtained on Neolithic humans from Southern...
Strontium isotopes are a powerful tool which provide information about provenance directly from the ...
Human mobility in recent history is well documented and often related to drastic external changes, ...
Strontium isotope analysis of tooth enamel is a useful provenancing technique to investigate the ch...
To investigate the mobility patterns of Neanderthals and modern humans in Europe during the Middle-t...
The present study discusses aspects of human mobility in Ceramic Neolithic (ca. 5200/5000–4000 BC) a...
This article presents evidence of population movements in Thessaly, Greece, during the Early Iron Ag...
This article presents evidence of population movements in Thessaly, Greece, during the Early Iron Ag...
The present study discusses aspects of human mobility in Ceramic Neolithic (ca. 5200/5000–4000 BC) a...
This article presents evidence of population movements in Thessaly, Greece, during the Early Iron Ag...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...