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Investigation of Motorcyclist Cervical Spine Trauma Using HUMOS Model

机译:使用HUMOS模型研究电单车颈椎创伤

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Objective: With 16 percent of the total road user fatalities, motorcyclists represent the second highest rate of road fatalities in France after car occupants. Regarding road accidents, a large proportion of trauma was on the lower cervical spine. According to different clinical studies, it is postulated that the cervical spine fragility areas are located on the upper and lower cervical spine. In motorcycle crashes, impact conditions occur on the head segment with various orientations and impact directions, leading to a combination of rotations and compression. Hence, motorcyclist vulnerability was investigated considering many impact conditions. Method: Using the human model for safety (HUMOS), a finite element model, this work aims to provide an evaluation of the cervical spine weaknesses based on an evaluation of injury mechanisms. This evaluation consisted of defining 2 injury risk factors (joint injury and bone fracture) using a design of experiment including various velocities, impact directions, and impact orientations. Results: The results confirmed previously reported clinical and epidemiological work on the fragility of the lower cervical spine and the upper cervical spine segments. Joint injuries appeared before bone fractures on both the upper and lower cervical spine. Bone fracture risk was greater on the lower cervical spine than on the upper cervical spine. The compression induced by a high impact angle was identified as an important injury severity factor. It significantly increased the injury incidence for both joint injuries and bone fractures. It also induced a shift in injury location from the lower to the upper cervical spine. The impact velocity exhibited a linear relationship with injury risks and severity. It also shifted the bone fracture risk from the lower to upper spinal segments.View full textDownload full textKeywordsNeck injury, Injury mechanism, Finite element, Motorcyclist, Multi-incidence impact, Injury locationRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; var addthis_config = {"data_track_addressbar":true,"ui_click":true}; Add to shortlist Link Permalink http://dx.doi.org/10.1080/15389588.2012.656857
机译:目标:摩托车手占道路使用者死亡总数的16%,在法国是仅次于乘车者的第二大道路死亡人数。关于道路交通事故,大部分伤害发生在下颈椎。根据不同的临床研究,推测颈椎的脆性区域位于颈椎的上下。在摩托车碰撞中,冲击条件发生在头部段上,方向和冲击方向各不相同,导致旋转和压缩相结合。因此,考虑了许多冲击条件,对摩托车驾驶员的脆弱性进行了调查。方法:使用人类安全模型(HUMOS)(一种有限元模型),这项工作旨在基于损伤机制的评估来评估颈椎无力。该评估包括使用包括各种速度,冲击方向和冲击方向的实验设计来定义2个伤害风险因素(关节伤害和骨折)。结果:该结果证实了先前报道的关于下颈椎和上颈椎节段的脆性的临床和流行病学工作。上下颈椎骨折前均出现关节损伤。下颈椎的骨骨折风险大于上颈椎。高冲击角引起的压缩被确定为重要的伤害严重性因素。它显着增加了关节损伤和骨折的受伤率。它还引起了受伤部位从下颈椎到上颈椎的转移。撞击速度与伤害风险和严重程度呈线性关系。骨折的风险也从较低的脊椎节段转移到了较高的脊柱节段。查看全文下载全文关键字颈部损伤,损伤机制,有限元,电单车司机,多发病影响,损伤位置相关var addthis_config = {ui_cobrand:“ Taylor&Francis Online”, services_compact:“ citeulike,netvibes,twitter,technorati,可口,linkedin,facebook,stumbleupon,digg,google,更多”,发布:“ ra-4dff56cd6bb1830b”}; var addthis_config = {“ data_track_addressbar”:true,“ ui_click”:true};添加到候选列表链接永久链接http://dx.doi.org/10.1080/15389588.2012.656857

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