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Osteological Age & Sex Estimation×Stable Isotope Paleodiet & Mobility Analysis×
분야고고학고고학
계열Process / pipelineProcess / pipeline
기원 연도19942006
창시자Jane Buikstra & Douglas Ubelaker (Standards synthesis)Synthesis of stable-isotope bioarchaeology; strontium methodology reviewed by R. Alexander Bentley
유형Standardized osteological pipeline for estimating age-at-death and biological sexMethodological pipeline for trophic, dietary-source, and mobility inference from skeletal isotopes
원전Buikstra, J. E., & Ubelaker, D. H. (1994). Standards for Data Collection from Human Skeletal Remains. Arkansas Archeological Survey Research Series No. 44. ISBN: 9781563490750Bentley, R. A. (2006). Strontium Isotopes from the Earth to the Archaeological Skeleton: A Review. Journal of Archaeological Method and Theory, 13(3), 135-187. DOI ↗
별칭Skeletal Age Estimation, Age-at-Death Estimation, Biological Profile Estimation, Osteological Aging and SexingCarbon-Nitrogen Collagen Isotope Analysis, Trophic Spacing Analysis, Bioarchaeological Isotope Methodology, Collagen Quality Screening
관련22
요약Osteological age and sex estimation is the foundational bioarchaeological procedure for building a biological profile from human skeletal remains: estimating how old an individual was at death and determining their biological sex. The skeleton changes in patterned ways across life — teeth form and erupt, growth plates fuse, and joint surfaces and bone microstructure gradually degenerate — and these changes are scored against reference standards to bracket age, while sexually dimorphic features of the pelvis and skull indicate sex. The standardized recording protocols compiled by Jane Buikstra and Douglas Ubelaker provide the discipline's shared methodology, ensuring that age and sex estimates are comparable across analysts and collections. Because the relationship between skeletal change and chronological age is variable, the method emphasizes multiple indicators and explicit uncertainty.Stable isotope paleodiet and mobility analysis is the methodology by which bioarchaeologists turn the isotopic chemistry of bone and tooth into quantitative statements about what people ate and where they lived. It rests on a chain of disciplined procedures rather than a single measurement: screening extracted collagen for diagenetic integrity using carbon-to-nitrogen atomic ratios, anchoring human values to a locally measured faunal baseline, quantifying trophic position from nitrogen-15 spacing, partitioning C3 versus C4 and marine carbon sources using the offset between collagen and apatite, and reconstructing residential mobility from biologically available strontium isotopes in tooth enamel. Bentley's review of strontium in the archaeological skeleton and Evershed's account of the biomarker revolution together frame the geochemical and analytical principles that make these inferences defensible.
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