Shahid Beheshti University of Medical Sciences, Iran
  • Register
  • Login

International Journal of Medical Toxicology and Forensic Medicine

  • Home
  • About
    • About the Journal
    • Aims and Scope
    • Editorial Team
    • Contact
  • Issues
    • Current
    • Archives
  • Indexing & Abstracting
  • Editorial Policies
    • Peer Review Process
    • Ethical Codes: Medical Research
    • Principles of Publishing Ethics
    • Conflicts of Interest
    • Publication Frequency
    • Open Access Policy
    • CrossMark Policy
    • Article Processing Charges
    • Privacy Statement
  • Announcements
  • Register
  • Login
  • Author Guidelines
Advanced Search
  1. Home
  2. Archives
  3. Vol. 16 (2026): Vol. 16 (2026)
  4. Original Article (Forensic Medicine)

Vol. 16 (2026)

Dey 2026

Macroscopic Changes Observed after Burning in Incised Wounds on Bones Caused by Sharp and Penetrating Instruments A Preliminary Experimental Study on Bovine Bones

  • Aytunç Akrep
  • Gökhan Ersoy

International Journal of Medical Toxicology and Forensic Medicine, Vol. 16 (2026), 1 Dey 2026 , Page 1-7
https://doi.org/10.22037/ijmtfm.v16.50512 Published: 01/06/2026

  • View Article
  • Download
  • Cite
  • References
  • Statastics
  • Share

Abstract

Background: Stab and incised wounds are frequently encountered in forensic practice. Burned skeletal remains often complicate the evaluation of such injuries, making it essential to understand how fire alters cut marks on bones. This study aimed to investigate macroscopic changes in bones subjected to sharp-force trauma after exposure to high temperatures.

Methods: Three bovine humeri were incised with a 32 cm non-serrated kitchen knife. The length, width, direction, and interrelationships of each incision were measured with a forensic scale, photographed, and recorded. The bones were then burned in open-air conditions using oak wood, without accelerants, at 460–570 °C for 60 minutes. Following combustion, the incisions were remeasured, and pre- and post-burning characteristics were compared statistically.

Results: Despite advanced thermal destruction, most incisions remained macroscopically visible. Heat exposure caused significant increases in incision length and width (p < 0.05). Linear fissures radiating from the cuts were observed, and the cut margins appeared sharper and drier after burning. In one specimen, thermal fractures disrupted the evaluation of a distal incision.

Conclusion: Sharp-force trauma marks on bones are not completely obscured by fire and may even become more pronounced. However, heat-related expansion of cut dimensions can lead to overestimation of blade size. These findings emphasize the need for caution in interpreting burned skeletal remains and highlight the importance of further research with larger sample sizes to improve forensic accuracy.

Keywords:
  • Anthropology, Bone, Thermal, Fire, Forensic Medicine
  • PDF

How to Cite

Akrep, A., & Ersoy, G. (2026). Macroscopic Changes Observed after Burning in Incised Wounds on Bones Caused by Sharp and Penetrating Instruments: A Preliminary Experimental Study on Bovine Bones. International Journal of Medical Toxicology and Forensic Medicine, 16, 1–7. https://doi.org/10.22037/ijmtfm.v16.50512
  • ACM
  • ACS
  • APA
  • ABNT
  • Chicago
  • Harvard
  • IEEE
  • MLA
  • Turabian
  • Vancouver
  • Endnote/Zotero/Mendeley (RIS)
  • BibTeX

References

[1] Umut Vakfı. Türkiye silahlı şiddet haritası 2022 raporu. 2022. [Link ]

[2] Isenhour JL, Marx J. Advances in abdominal trauma. Emerg Med Clin North Am. 2007;25(3):713–33. [DOI: 10.1016/j.emc.2007.06.004]

[3] Hürriyet. Türkiye’nin şiddet haritası. 2016 Jan 27. [Link]

[4] Doğan KH, Demirci Ş, Koç S. Önce öldürüldü sonra yakıldı: cinayet kurbanlarının yakılarak ortadan kaldırılmaya çalışılması. Bull Leg Med. 2011;16(2):49–53. [Link]

[5] Symes SA, L’Abbé EN, Chapman EN, Wolff I, Dirkmaat DC. Interpreting traumatic injury to bone in medicolegal investigations. In: Dirkmaat DC, editor. A companion to forensic anthropology. Oxford: Wiley-Blackwell; 2012. p. 340–89. [DOI: 10.1002/9781118255377.ch17]

[6] Borusiewicz R, Zięba-Palus J, Zadora G. The influence of the type of accelerant, type of burned material, time of burning and availability of air on the possibility of detection of accelerants traces. Forensic Sci Int. 2006;160(2–3):115–26. [DOI: 10.1016/j.forsciint.2005.09.009]

[7] Grévin G, Bailet P, Quatrehomme G, Ollier A. Anatomical reconstruction of fragments of burned human bones: a necessary means for forensic identification. Forensic Sci Int. 1998;96(2–3):129–34. [DOI: 10.1016/S0379-0738(98)00115-2]

[8] Collini F, Amadasi A, Mazzucchi A, Porta D, Regazzola VL, Garofalo P, et al. The erratic behavior of lesions in burnt bone. J Forensic Sci. 2015;60(5):1290–4. [DOI: 10.1111/1556-4029.12787]

[9] Macoveciuc I, Márquez-Grant N, Horsfall I, Zioupos P. Sharp and blunt force trauma concealment by thermal alteration in homicides: an in-vitro experiment for methodology and protocol development in forensic anthropological analysis of burnt bones. Forensic Sci Int. 2017;275:260–71. [DOI: 10.1016/j.forsciint.2017.03.019]

[10] Bradtmiller B, Buikstra JE. Effects of burning on human bone microstructure: a preliminary study. J Forensic Sci. 1984;29(2):535–40. [DOI: 10.1520/JFS11638J]

[11] Correia PM. Fire modification of bone: a review of the literature. In: Haglund WD, Sorg MH, editors. Forensic taphonomy: the postmortem fate of human remains. Boca Raton: CRC Press; 1997. p. 275–93. [DOI: 10.1201/9781439821923.ch12]

[12] Glassman D, Crow R. Standardization model for describing the extent of burn injury to human remains. J Forensic Sci. 1996;41(1):152–4.

[DOI: 10.1520/JFS13869J]

[13] Ubelaker DH. The forensic evaluation of burned skeletal remains: a synthesis. Forensic Sci Int. 2009;183(1–3):1–5. [DOI: 10.1016/j.forsciint.2008.09.019]

[14] Herrmann NP, Bennett JL. The differentiation of traumatic and heat-related fractures in burned bone. J Forensic Sci. 1999;44(3):461–9. [DOI: 10.1520/JFS14443J]

[15] Dempster WT, Liddicoat RT. Compact bone as a non-isotropic material. Am J Anat. 1952;91(3):331–62. [DOI: 10.1002/aja.1000910302]

[16] Evans FG. Mechanical properties of bone. Springfield (IL): Charles C Thomas; 1973.

[Link]

[17] Smith J, Walmsley R. Factors affecting the elasticity of bone. J Anat. 1959;93(Pt 4):503–23.

[Link]

[18] Townsend PR, Rose RM, Radin EL. Buckling studies of single human trabeculae. J Biomech. 1975;8(3–4):199–201. [DOI: 10.1016/0021-9290(75)90071-0]

[19] Watson J, McClelland J. Distinguishing human from non-human animal bone. Tucson (AZ): Arizona State Museum, University of Arizona; 2018.

[Link]

[20] Ekizoğlu O, Koç S. Yaralar. In: Birinci basamakta adli tıp [Internet]. İstanbul: İstanbul Tabip Odası; 2011. p. 65–7. [Link]

[21] Aksoy EÇ, Ege B, Günaydın G, İnanıcı MA, Karali H, Karagöz M, et al. Adli travmatoloji. 1999.

[Link]

  • Abstract Viewed: 164 times
  • PDF Downloaded: 165 times

Download Statastics

  • Linkedin
  • Twitter
  • Facebook
  • Google Plus
  • Telegram

Developed By

Open Journal Systems

Information

  • For Readers
  • For Authors
  • For Librarians

Browse

Make a Submission

Make a Submission
  • Home
  • Archives
  • Submissions
  • About the Journal
  • Editorial Team
  • Contact

 

Copyright  The Author(s); This is an open access article distributed under the terms of the Creative Commons Attribution License (CC-By-NC), which permits use, distribution, and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.

       

Powered by OJSPlus