Steven Goderi
Biographic Data
| ID | 4435561 |
|---|---|
| NAME | Steven Goderi |
| GIVEN NAMES | Steven |
| FAMILY NAME | Goderi |
| SIGNATURE | GODERI S |
| AFFILIATIONS | Vrije Universiteit Brussel |
| ORCID | 0000-0002-6666-7153 |
| VERIFIED | Yes |
| TOTAL WORKS | 6 |
| TOTAL CITATIONS | 22 |
| AUTHOR COUNT | 6 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2016 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 2 |
Strontium, fire, and bones: 87Sr/86Sr and δ88/86Sr values remain unaffected in bone heated up to 1400 °C
Rethinking strontium variability beyond mobility: Strontium isotope and concentration analysis of cremated remains from Tienen (Gallo-Roman Belgium, 1-4th c.AD)
Colonia Iulia Emona at the crossroads in the South-Eastern Alpine region during the late Roman period – An isotope perspective
Cinnabar for Roman Ephesus: Material quality, processing and provenance
Isotopic evidence for changing mobility and landscape use patterns between the Neolithic and Early Bronze Age in western Ireland
Mobility during the neolithic and bronze age in northern ireland explored using strontium isotope analysis of cremated human bone
OBJECTIVES: As many individuals were cremated in Neolithic and Bronze Age Ireland, they have not featured in investigations of individual mobility using strontium isotope analysis. Here, we build on recent experiments demonstrating excellent preservation of biogenic (87) Sr/(86) Sr in calcined bone to explore mobility in prehistoric Northern Ireland. MATERIALS AND METHODS: A novel method of strontium isotope analysis is applied to calcined bone a…
Mobility during the neolithic and bronze age in northern ireland explored using strontium isotope analysis of cremated human bone
OBJECTIVES: As many individuals were cremated in Neolithic and Bronze Age Ireland, they have not featured in investigations of individual mobility using strontium isotope analysis. Here, we build on recent experiments demonstrating excellent preservation of biogenic (87) Sr/(86) Sr in calcined bone to explore mobility in prehistoric Northern Ireland. MATERIALS AND METHODS: A novel method of strontium isotope analysis is applied to calcined bone a…
Isotopic evidence for changing mobility and landscape use patterns between the Neolithic and Early Bronze Age in western Ireland
Mobility during the neolithic and bronze age in northern ireland explored using strontium isotope analysis of cremated human bone
OBJECTIVES: As many individuals were cremated in Neolithic and Bronze Age Ireland, they have not featured in investigations of individual mobility using strontium isotope analysis. Here, we build on recent experiments demonstrating excellent preservation of biogenic (87) Sr/(86) Sr in calcined bone to explore mobility in prehistoric Northern Ireland. MATERIALS AND METHODS: A novel method of strontium isotope analysis is applied to calcined bone a…
Isotopic evidence for changing mobility and landscape use patterns between the Neolithic and Early Bronze Age in western Ireland
Cinnabar for Roman Ephesus: Material quality, processing and provenance
Rethinking strontium variability beyond mobility: Strontium isotope and concentration analysis of cremated remains from Tienen (Gallo-Roman Belgium, 1-4th c.AD)
Colonia Iulia Emona at the crossroads in the South-Eastern Alpine region during the late Roman period – An isotope perspective
Strontium, fire, and bones: 87Sr/86Sr and δ88/86Sr values remain unaffected in bone heated up to 1400 °C
Archaeology (5 works) · Geology (5 works) · Archaeology and ancient environmental studies (4 works) · Geography (4 works) · Isotopes of strontium (4 works) · Strontium (4 works) · Chemistry (3 works) · Pleistocene-Era Hominins and Archaeology (3 works) · Art (2 works) · Biology (2 works)