Laboratoire de Biomécanique Appliquée, Faculté de Médecine secteur Nord, boulevard Pierre Dramard, 13916, Marseille Cedex 20, France.
Int J Legal Med. 2013 Jan;127(1):111-8. doi: 10.1007/s00414-011-0627-9. Epub 2011 Oct 9.
In a forensic investigation, there is considerable difficulty in distinguishing between different mechanisms that could explain the head injury sustained. The key question is often whether the injury was the consequence of a fall, a blow, or a fall caused by a blow. Better understanding of the parameters influencing the mechanism of skull fracture could be of use when attempting to distinguish between different causes of injury. Numerous parameters concerning fall conditions and biological variability are reported in the literature to influence the mechanism of skull fracture. At the current time, there are no studies that investigate both the effect of a fall and biological parameters. The aim of this paper is to study the influence of these parameters on the mechanism of skull fracture using a numerical approach. We focused on accidental falls from a standing height. A multibody model was used to estimate head impact velocities and a finite element model was used to investigate the effect of the fall conditions and of biological variability on skull fracture. The results show that the mechanism of skull fractures is influenced by a combination of at least four parameters: impact velocity, impact surface, cortical thickness and cortical density.
在法医学调查中,要区分可能导致头部受伤的不同机制存在相当大的困难。关键问题通常是受伤是跌倒、打击还是打击导致跌倒的结果。更好地了解影响颅骨骨折机制的参数,在试图区分不同的损伤原因时可能会有所帮助。文献中报道了许多与跌倒条件和生物变异性有关的参数,这些参数会影响颅骨骨折的机制。目前,尚无研究同时调查跌倒和生物参数的影响。本文的目的是使用数值方法研究这些参数对颅骨骨折机制的影响。我们专注于从站立高度意外跌倒。使用多体模型估算头部撞击速度,使用有限元模型研究跌倒条件和生物变异性对颅骨骨折的影响。结果表明,颅骨骨折的机制受到至少四个参数的组合影响:撞击速度、撞击表面、皮质厚度和皮质密度。