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Journal Article

Citation

Macoveciuc I, Márquez-Grant N, Horsfall I, Zioupos P. Forensic Sci. Int. 2017; 275: 260-271.

Affiliation

Musculoskeletal & Medicolegal Research Group, Cranfield Forensic Institute, Cranfield University, Defence Academy of the United Kingdom, SN6 8LA, United Kingdom. Electronic address: p.zioupos@cranfield.ac.uk.

Copyright

(Copyright © 2017, Elsevier Publishing)

DOI

10.1016/j.forsciint.2017.03.014

PMID

28414985

Abstract

Burning of human remains is one method used by perpetrators to conceal fatal trauma and expert opinions regarding the degree of skeletal evidence concealment are often disparate. This experiment aimed to reduce this incongruence in forensic anthropological interpretation of burned human remains and implicitly contribute to the development of research methodologies sufficiently robust to withstand forensic scrutiny in the courtroom. We have tested the influence of thermal alteration on pre-existing sharp and blunt trauma on twenty juvenile sheep radii in the laboratory using an automated impact testing system and an electric furnace. The testing conditions simulated a worst-case scenario where remains with pre-existing sharp or blunt trauma were exposed to burning with an intentional vehicular fire scenario in mind. All impact parameters as well as the burning conditions were based on those most commonly encountered in forensic cases and maintained constant throughout the experiment. The results have shown that signatures associated with sharp and blunt force trauma were not masked by heat exposure and highlights the potential for future standardization of fracture analysis in burned bone. Our results further emphasize the recommendation given by other experts on handling, processing and recording burned remains at the crime scene and mortuary.

Copyright © 2017 Elsevier B.V. All rights reserved.


Language: en

Keywords

Blunt force trauma; Burning; Forensic anthropology; Homicide; Human remains; Sharp force trauma

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