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Biomechanical analysis of skull fractures after uncontrolled hanging release

机译:不受控制悬挂释放后颅骨骨折的生物力学分析

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In forensic research, biomechanical analyses of falls are widely reported. However, no study on falls consecutive to uncontrolled hanging release, when a hanging body is cut down, has ever been published. In such cases, the presence of cranial trauma can raise interpretation issues, and there may be doubt as to whether the fall was an accident or a crime disguised as suicide. The problem remains as to whether or not a fall after a free hanging release can lead to a skull fracture. To address this question, numerical simulations, post-mortem human subject tests and parametric studies were performed. We first recreated the kinematics and velocity of this atypical fall with post-mortem human subject tests and multibody simulations. We then tested the influence of biological variability on fracture production using a finite element model of the head. Our results show that fall severity depends largely on the direction of the fall. The risk of fracture is highest in the occipital region and with a backward fall. Our study also highlights the frequent occurrence of lower limb trauma in a free hanging release. Most importantly, we show that a fracture is produced in only 3.4% of falls that occur in a 10-90. cm height range. The overall findings of this study provide tools for pathologists and magistrates to decide on the most likely scenario and to justify further forensic investigations if required.
机译:在法医研究中,瀑布的生物力学分析被广泛报道。然而,在悬挂的身体被削减时,没有关于不受控制的悬挂释放的悬而未决的研究,曾被公布过。在这种情况下,颅骨创伤的存在可以提高解释问题,可能有疑问秋季是否是事故或伪装为自杀的罪行。在自由悬挂释放后,问题仍然是秋天是否可以导致头骨骨折。为了解决这个问题,进行数值模拟,验尸后的人类对象测试和参数研究。我们首先重新创建了这种非典型秋季的运动学和速度与验尸人类对象测试和多体模拟。然后,我们使用头部有限元模型测试了生物可变性对裂缝产生的影响。我们的结果表明,秋季严重程度主要取决于秋季的方向。骨折的骨折风险在枕部区域最高,落后。我们的研究还突出了自由悬挂释放中频繁发生的下肢创伤。最重要的是,我们表明骨折仅在10-90中出现的3.4%的跌落产生。 cm高度范围。本研究的整体调查结果为病理学家和法官提供了对最可能的情景,并在必要时证明进一步的法医调查是合理的。

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