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Updated: Apr 26, 2026

Scanning Skeletal Remains for Bone Mineral Density in Forensic Contexts
Published on: January 29, 2018
Refinement of the Bayesian probabilistic framework for forensic adult age-at-death estimation using dentin
Roberto C Parra1, Gonzalo Garizoain2, Claudia M Aranda3
1Specialized Forensic Team, Office of the High Commissioner for Human Rights, United Nations Organization Stabilization Mission in the Democratic Republic of the Congo, Democratic Republic of the Congo.
Abstract:
This study refines a Bayesian probabilistic framework for adult age-at-death estimation based on root dentin translucency (RDT). Model comparison using the Bayesian Information Criterion demonstrated that a univariate model relying solely on RDT was the most parsimonious and efficient, achieving an R² of 63.60%. The framework was validated through entirely external samples: a Peruvian case study, and samples from Brazil (N = 247), the UK (N = 113), and Guatemala (N = 302). Bayesian updating using data from the Forensic International Dental Database (FIDB; N = 4522) substantially increased the strength of the evidence, with Likelihood Ratios rising from a mean of 2160 to nearly 10,000, elevating the inference to a level of very strong support and extremely strong support. Results confirmed the inter-population stability of the model and its capacity to mitigate the characteristic trajectory effect of overestimation in young adults and underestimation in older adults. This approach provides a transparent, robust, and globally applicable tool for forensic anthropology, successfully balancing statistical rigor with practical utility. Furthermore, it establishes a foundational platform, named BayAD, that enables the future integration of additional skeletal traits within an age-at-death estimation framework.

