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Published in: International Journal of Legal Medicine 3/2021

01-05-2021 | Short Communication

Evaluating the morphological and metric sex of human crania using 3-dimensional (3D) technology

Authors: Victoria Berezowski, Tracy Rogers, Eugene Liscio

Published in: International Journal of Legal Medicine | Issue 3/2021

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Abstract

Identifying the skeletal remains of an unidentified individual is a priority for the medico-legal system because identification increases the chances of finding the person responsible and provides closure to the family. The purpose of this research was to develop a combined morphological and metric cranial sex assessment method using 3D technology that accommodates the medico-legal system, and their use of 3D models facilitates the technological transition to digitally archived skeletal collections. A total of 91 individuals of European biogeographical ancestry from the William M. Bass Donated Skeletal Collection (University of Tennessee Knoxville) were imaged using photogrammetry, turned into 3D models using Agisoft PhotoScan, and digitally evaluated using 3D Studio Max. This novel method digitally evaluated five cranial traits, including the nasal aperture height, nasal aperture width, mastoid length, the general size and architecture, and the supraorbital ridges, combining techniques that can only be done digitally with those that can be completed on the actual bone. Preliminary statistical tests demonstrate an overall accuracy rate of 90% when tested against the training sample (20 males, 20 females) and 75% when tested against the test sample (51 individuals). Although no intra- or inter-observer error rate tests were done, and further testing on other skeletal collections is necessary, this method allows forensic anthropologists to perform relatively easy point-to-point measurements, the quantification of traditionally non-quantified traits, the possibility of reproducible results, and the ability for future analyses or research.
Literature
1.
go back to reference Rogers TL (2016) Forensic anthropology. In: Pakosh C (ed) The lawyers guide to the forensic sciences. Irwin Law, Toronto, pp 375–431 Rogers TL (2016) Forensic anthropology. In: Pakosh C (ed) The lawyers guide to the forensic sciences. Irwin Law, Toronto, pp 375–431
2.
go back to reference Christensen AM, Passalacqua NV, Bartelink EJ (2014) Forensic anthropology: current methods and practice. Academic Press, San Diego Christensen AM, Passalacqua NV, Bartelink EJ (2014) Forensic anthropology: current methods and practice. Academic Press, San Diego
3.
go back to reference Spradley MK, Jantz R (2011) Sex estimation in forensic anthropology: skull versus postcranial elements. J Forensic Sci 56(2):289–296CrossRef Spradley MK, Jantz R (2011) Sex estimation in forensic anthropology: skull versus postcranial elements. J Forensic Sci 56(2):289–296CrossRef
4.
go back to reference Polacco M, D’Alessio P, Ausania F, Zobel B, Pascali VL, D’Aloja E, Miscusi M, De-Giorgio F (2013) Virtual autopsy in hanging. Am J Forensic Med Pathol 34(2):107–109CrossRef Polacco M, D’Alessio P, Ausania F, Zobel B, Pascali VL, D’Aloja E, Miscusi M, De-Giorgio F (2013) Virtual autopsy in hanging. Am J Forensic Med Pathol 34(2):107–109CrossRef
5.
go back to reference Winchmann D, Heinemann A, Weinberg C, Vogel H, Hoepker WW, Grabherr S, Pueschel K, Kluge S (2014) Virtual autopsy with multiphase postmortem computed tomographic angiography versus traditional medical autopsy to investigate unexpected deaths of hospitalized patients: a cohort study. Ann Intern Med 160(8):534–541CrossRef Winchmann D, Heinemann A, Weinberg C, Vogel H, Hoepker WW, Grabherr S, Pueschel K, Kluge S (2014) Virtual autopsy with multiphase postmortem computed tomographic angiography versus traditional medical autopsy to investigate unexpected deaths of hospitalized patients: a cohort study. Ann Intern Med 160(8):534–541CrossRef
6.
go back to reference Pollanen MS, Woodford N (2013) Virtual autopsy: time for a clinical trial. Forensic Sci Med Pathol 9(3):427–428CrossRef Pollanen MS, Woodford N (2013) Virtual autopsy: time for a clinical trial. Forensic Sci Med Pathol 9(3):427–428CrossRef
7.
go back to reference Ruder TD, Flach PM, Thali MJ (2013) Virtual autopsy. Forensic Sci Med Pathol 9(3):435–436CrossRef Ruder TD, Flach PM, Thali MJ (2013) Virtual autopsy. Forensic Sci Med Pathol 9(3):435–436CrossRef
8.
go back to reference De Bakker HM, Roelandt GHJ, Soerdjbalie-Maikoe V, van Rijn RR, de Bakker BD (2019) The value of post mortem computed tomography of burned victims in a forensic setting. Eur Radiol 29(4):1912–1921CrossRef De Bakker HM, Roelandt GHJ, Soerdjbalie-Maikoe V, van Rijn RR, de Bakker BD (2019) The value of post mortem computed tomography of burned victims in a forensic setting. Eur Radiol 29(4):1912–1921CrossRef
9.
go back to reference Rutty GN, Biggs MJP, Brough A, Morgan B, Webster P, Heathcote A, Dolan J, Robinson C (2020) Remote post-mortem radiology reporting in disaster victim identification: experience gained in the 2017 Grenfell Tower disaster. Int J Legal Med 134(2):637–643CrossRef Rutty GN, Biggs MJP, Brough A, Morgan B, Webster P, Heathcote A, Dolan J, Robinson C (2020) Remote post-mortem radiology reporting in disaster victim identification: experience gained in the 2017 Grenfell Tower disaster. Int J Legal Med 134(2):637–643CrossRef
10.
go back to reference Braga J (2016) Non-invasive imaging techniques. In: Irish JD, Scott GR (eds) A companion to dental anthropology. John Wiley & Sons, West Sussex, pp 514–527 Braga J (2016) Non-invasive imaging techniques. In: Irish JD, Scott GR (eds) A companion to dental anthropology. John Wiley & Sons, West Sussex, pp 514–527
11.
go back to reference Park HK, Chung JW, Kho HS (2006) Use of hand-held laser scanning in the assessment of craniometry. Forensic Sci Int 160(2–3):200–206CrossRef Park HK, Chung JW, Kho HS (2006) Use of hand-held laser scanning in the assessment of craniometry. Forensic Sci Int 160(2–3):200–206CrossRef
12.
go back to reference Kuzminsky SC, Garinder MS (2012) Three-dimensional laser scanning: potential uses for museum conservation and scientific research. J Arch Sci 39(8):2744–2751CrossRef Kuzminsky SC, Garinder MS (2012) Three-dimensional laser scanning: potential uses for museum conservation and scientific research. J Arch Sci 39(8):2744–2751CrossRef
13.
go back to reference Raneri D (2018) Enhancing forensic investigations through the use of modern three-dimensional (3D) imaging techniques for crime scene reconstruction. Aust J Forensic Sci 50(6):697–707 Raneri D (2018) Enhancing forensic investigations through the use of modern three-dimensional (3D) imaging techniques for crime scene reconstruction. Aust J Forensic Sci 50(6):697–707
14.
go back to reference Sivanandan J, Liscio E (2017) Assessing structured light 3D scanning used Artec Eva for injury documentation during autopsy. J Assoc Crime Scene Reconstr 21:5–14 Sivanandan J, Liscio E (2017) Assessing structured light 3D scanning used Artec Eva for injury documentation during autopsy. J Assoc Crime Scene Reconstr 21:5–14
15.
go back to reference Berezowski V, Keller J, Liscio E (2018) 3D documentation of a clandestine grave: a comparison between manual and 3D digital methods. J Assoc Crime Scene Reconstr 22:23–37 Berezowski V, Keller J, Liscio E (2018) 3D documentation of a clandestine grave: a comparison between manual and 3D digital methods. J Assoc Crime Scene Reconstr 22:23–37
19.
go back to reference William BA, Rogers TL (2006) Evaluating the accuracy and precision of cranial morphological traits for sex determination. J Forensic Sci 51(4):729–735CrossRef William BA, Rogers TL (2006) Evaluating the accuracy and precision of cranial morphological traits for sex determination. J Forensic Sci 51(4):729–735CrossRef
20.
go back to reference Peterson DS, Smith JW (2009) Comparison of vehicle measurement techniques. Collision Mag 4(2):98–104 Peterson DS, Smith JW (2009) Comparison of vehicle measurement techniques. Collision Mag 4(2):98–104
21.
go back to reference Buikstra JE, Ubelaker DH (1994) Standards: for data collection from human skeletal remains. Arkansas Archaeological Survey Research Series Buikstra JE, Ubelaker DH (1994) Standards: for data collection from human skeletal remains. Arkansas Archaeological Survey Research Series
22.
go back to reference Jansen PM, Ousley SD, Jantz RL (1994) Data collection procedures for forensic skeletal materials. Report of Investigation: The University of Tennessee, Knoxville Department of Anthropology Jansen PM, Ousley SD, Jantz RL (1994) Data collection procedures for forensic skeletal materials. Report of Investigation: The University of Tennessee, Knoxville Department of Anthropology
23.
go back to reference Tracy L. Rogers, (2005) Determining the Sex of Human Remains Through Cranial Morphology. Journal of Forensic Sciences 50 (3):1-8 Tracy L. Rogers, (2005) Determining the Sex of Human Remains Through Cranial Morphology. Journal of Forensic Sciences 50 (3):1-8
24.
go back to reference Smith AC, Boaks A (2017) Consistency of selected craniometric landmark locations and the resulting variation in measurements. Forensic Sci Int 280:156–163CrossRef Smith AC, Boaks A (2017) Consistency of selected craniometric landmark locations and the resulting variation in measurements. Forensic Sci Int 280:156–163CrossRef
25.
go back to reference Berezowski V, Mallett X, Moffat I (2020) Geomatic techniques in forensic science: a review. Sci Justice 60:99–107CrossRef Berezowski V, Mallett X, Moffat I (2020) Geomatic techniques in forensic science: a review. Sci Justice 60:99–107CrossRef
Metadata
Title
Evaluating the morphological and metric sex of human crania using 3-dimensional (3D) technology
Authors
Victoria Berezowski
Tracy Rogers
Eugene Liscio
Publication date
01-05-2021
Publisher
Springer Berlin Heidelberg
Published in
International Journal of Legal Medicine / Issue 3/2021
Print ISSN: 0937-9827
Electronic ISSN: 1437-1596
DOI
https://doi.org/10.1007/s00414-020-02305-0

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