Sex estimation from virtual models: exploring the potential of stereolithic 3D crania models for morphoscopic trait scoring

Author:

Robles Madeline1234,Carew Rachael M52,Rando Carolyn6,Nakhaeizadeh Sherry52,Morgan Ruth M52

Affiliation:

1. UCL Department of Security and Crime Science, University College London , 35 Tavistock Square, London , UK

2. UCL Centre for the Forensic Sciences , University College London, 35 Tavistock Square, London , UK

3. School of Applied Sciences , College of Health, Science and Society, , Coldharbour Lane, Bristol , UK

4. University of the West of England , College of Health, Science and Society, , Coldharbour Lane, Bristol , UK

5. UCL Department of Security and Crime Science , University College London, 35 Tavistock Square, London , UK

6. UCL Institute of Archaeology , University College London, 31-34 Gordon Square, London , UK

Abstract

Abstract   Modern computed tomography (CT) databases are becoming an accepted resource for the practice and development of identification methods in forensic anthropology. However, the utility of 3D models created using free and open-source visualization software such as 3D Slicer has not yet been thoroughly assessed for morphoscopic biological profiling methods where virtual methods of analysis are becoming more common. This paper presents a study that builds on the initial findings from Robles et al. (2020) to determine the feasibility of estimating sex on stereolithic (STL) 3D cranial models produced from CT scans from a modern, living UK population (n = 80) using equation 2 from the Walker’s (2008) morphoscopic method. Kendall’s coefficients of concordance (KCC) indicated substantial agreement using cranial features scores in an inter-observer test and a video-inter-observer test. Fleiss’ Kappa scores showed moderate agreement (0.50) overall between inter-observer sex estimations, and for observer sex estimations in comparison to recorded sexes (0.56). It was found that novice users could virtually employ morphoscopic sex estimation methods effectively on STL 3D cranial models from modern individuals. This study also highlights the potential that digital databases of modern living populations can offer forensic anthropology. Key points

Publisher

Oxford University Press (OUP)

Subject

Psychiatry and Mental health,Physical and Theoretical Chemistry,Anthropology,Biochemistry, Genetics and Molecular Biology (miscellaneous),Pathology and Forensic Medicine,Analytical Chemistry

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