Skip to main content
Erschienen in: International Journal of Legal Medicine 4/2017

02.02.2017 | Original Article

The effect of impact tool geometry and soft material covering on long bone fracture patterns in children

verfasst von: Haim Cohen, Chen Kugel, Hila May, Bahaa Medlej, Dan Stein, Viviane Slon, Tamar Brosh, Israel Hershkovitz

Erschienen in: International Journal of Legal Medicine | Ausgabe 4/2017

Einloggen, um Zugang zu erhalten

Abstract

Introduction

The effect of impact tool geometry and soft material covering on bone fracture patterns plays a major role in fracture patterns. However, the literature is nearly void of such studies and only general correlations between the fracture pattern and the mechanism underlying the insult were reported.

Purpose

The aim of this study is to reveal the association between the geometry of the impact tool and the presence of soft material covering on bone fracture patterns. The Dynatup Model POE 2000 (Instron Co.) low energy pendulum impact machine was utilized to apply impact loading on fresh pig femoral bones (n = 50). The bone clamp shaft was adjusted to position the bone for three-point bending with additional bone compression simulating a situation occurring in pedestrian road traffic accidents. Five different tests using varying impact tool sizes with and without soft interface covering were carried out.

Results

A significant positive correlation was found between the fracture features and the impact tool’s geometry. Only bones that were damaged by a rounded impact body result in a “false” butterfly fragment; in all other cases where the impact body is flat and wide, double trapezoid fragments are observed in the area of impact. The impacted aspect is the most affected. All fracture line features were significantly greater in bones subjected to an impact by tools without soft covering. With an impact with soft covering, the impacted aspect exhibits numerous unique fracture lines and a fragmented pattern. Our study clearly shows that impact tool geometry and soft material covering markedly affect the fracture pattern.
Literatur
1.
Zurück zum Zitat Aerssens J, Boonen S, Lowet G, Dequeker J (1998) Interspecies differences in bone composition, density, and quality: potential implications for in vivo bone research. Endocrinology 139:663–670CrossRefPubMed Aerssens J, Boonen S, Lowet G, Dequeker J (1998) Interspecies differences in bone composition, density, and quality: potential implications for in vivo bone research. Endocrinology 139:663–670CrossRefPubMed
2.
Zurück zum Zitat Baumer TG, Passalacqua NV, Powell BJ, Newberry WN, Fenton TW, Haut RC (2010) Age-dependent fracture characteristics of rigid and compliant surface impacts on the infant skull—a porcine model. Journal of Forensic Science 55(4):993–997CrossRef Baumer TG, Passalacqua NV, Powell BJ, Newberry WN, Fenton TW, Haut RC (2010) Age-dependent fracture characteristics of rigid and compliant surface impacts on the infant skull—a porcine model. Journal of Forensic Science 55(4):993–997CrossRef
3.
Zurück zum Zitat Berryman HE, Symes SA (1998) Recognizing gunshot and blunt cranial trauma through fracture interpretation. In: Reichs KJ (ed) Forensic osteology: advances in the identification of human remains. Charles C. Thomas, Springfield, p 335 Berryman HE, Symes SA (1998) Recognizing gunshot and blunt cranial trauma through fracture interpretation. In: Reichs KJ (ed) Forensic osteology: advances in the identification of human remains. Charles C. Thomas, Springfield, p 335
4.
Zurück zum Zitat Gitajn IL, Rodriguez EK (2011) Biomechanics of musculoskeletal injury. In: Biomechanics in applications. Publisher: InTech Gitajn IL, Rodriguez EK (2011) Biomechanics of musculoskeletal injury. In: Biomechanics in applications. Publisher: InTech
5.
Zurück zum Zitat Hillier ME, Bell LS (2007) Differentiating human bone from animal bone: a review of histological methods. Journal of Forensic Science 52:249–263CrossRef Hillier ME, Bell LS (2007) Differentiating human bone from animal bone: a review of histological methods. Journal of Forensic Science 52:249–263CrossRef
6.
Zurück zum Zitat Kress TA, Porta DJ, Snider JN, Fuller PM, Paihogios JP, Heck WL, Frick SJ, Wasserman JF (1995) Fracture patterns of human cadaver long bones. International Research Counsel on the Biomechanics of Impact. pp. 155–169 Kress TA, Porta DJ, Snider JN, Fuller PM, Paihogios JP, Heck WL, Frick SJ, Wasserman JF (1995) Fracture patterns of human cadaver long bones. International Research Counsel on the Biomechanics of Impact. pp. 155–169
7.
Zurück zum Zitat Messerer O (1880) Uber Elasticitat und Festigkeit der mensch lichen Knochen. Cotta, Stuttgart, pp 1–100 Messerer O (1880) Uber Elasticitat und Festigkeit der mensch lichen Knochen. Cotta, Stuttgart, pp 1–100
8.
Zurück zum Zitat Nyquist G (1986) Injury tolerance characteristics of the adult human lower extremities under static and dynamic loading. In: Biomechanics and medical aspects of lower limb injuries. Warrendable, PA: Society of Automotive Engineers, Inc., pp: 79–90. SAE Technical Paper 861925 Nyquist G (1986) Injury tolerance characteristics of the adult human lower extremities under static and dynamic loading. In: Biomechanics and medical aspects of lower limb injuries. Warrendable, PA: Society of Automotive Engineers, Inc., pp: 79–90. SAE Technical Paper 861925
9.
Zurück zum Zitat Panjabi MM, White AA (2001) Biomechanics in the musculoskeletal system. Churchill Livingstone, Philadelphia Panjabi MM, White AA (2001) Biomechanics in the musculoskeletal system. Churchill Livingstone, Philadelphia
10.
Zurück zum Zitat Pond W, Houpt K (1978) The biology of the pig, 1st edn. Comstock Publishing Associates, Ithaca (NY) Pond W, Houpt K (1978) The biology of the pig, 1st edn. Comstock Publishing Associates, Ithaca (NY)
11.
Zurück zum Zitat Powell BJ, Passalacqua PV, Baumer TG, Fenton TW, Haut RC (2012) Fracture patterns on the infant porcine skull following severe blunt impact. Journal of Forensic Science 57(2):312–317CrossRef Powell BJ, Passalacqua PV, Baumer TG, Fenton TW, Haut RC (2012) Fracture patterns on the infant porcine skull following severe blunt impact. Journal of Forensic Science 57(2):312–317CrossRef
12.
Zurück zum Zitat Reichs JK, Bass WM (1998) Forensic osteology: advances in the identification of human remains. Second Edition. Charles C. Thomas. p. 333 Reichs JK, Bass WM (1998) Forensic osteology: advances in the identification of human remains. Second Edition. Charles C. Thomas. p. 333
13.
Zurück zum Zitat Shunmugasamy VC, Gupta N, Paulo G, Coelho B (2010) High strain rate response of rabbit femur bones. J Biomech 43:3044–3050CrossRefPubMed Shunmugasamy VC, Gupta N, Paulo G, Coelho B (2010) High strain rate response of rabbit femur bones. J Biomech 43:3044–3050CrossRefPubMed
Metadaten
Titel
The effect of impact tool geometry and soft material covering on long bone fracture patterns in children
verfasst von
Haim Cohen
Chen Kugel
Hila May
Bahaa Medlej
Dan Stein
Viviane Slon
Tamar Brosh
Israel Hershkovitz
Publikationsdatum
02.02.2017
Verlag
Springer Berlin Heidelberg
Erschienen in
International Journal of Legal Medicine / Ausgabe 4/2017
Print ISSN: 0937-9827
Elektronische ISSN: 1437-1596
DOI
https://doi.org/10.1007/s00414-017-1532-7

Weitere Artikel der Ausgabe 4/2017

International Journal of Legal Medicine 4/2017 Zur Ausgabe

Neu im Fachgebiet Rechtsmedizin