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首页> 外文期刊>Journal of biomechanical engineering. >Development of Biomechanical Response Corridors of the Head to Blunt Ballistic Temporoparietal Impact
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Development of Biomechanical Response Corridors of the Head to Blunt Ballistic Temporoparietal Impact

机译:头部对钝性弹道颞顶撞击的生物力学响应走廊的开发

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There is a need to study the biomechanical response of the head to blunt ballistic impact. While the frequency of less-lethal munition impacts to the head may be less than other vital body regions, more serious injuries have been attributed to these impacts. This study aims to establish biomechanical response corridors for the temporo-parietal region for future development of biomechanical surrogate devices. Seven unembalmed post-mortem human subject specimens were exposed to blunt ballistic temporoparietal head impact (103 g, 38 mm diameter impactor) to determine the force-time, deformation-time, and force-deformation responses. Comparisons were made to responses from prior blunt ballistic head impact studies, as well as automotive-related impact studies. Peak forces for impact condition A (19.5 ±2.6 m/s) were 3659 ± 1248 N with deformations at peak force of 7.3±2.1 mm. Peak forces for impact condition B (33.6±1.4 m/s) were 5809 ±1874 N with deformations at peak force of 9.9 ±2.6 mm. Seven fractures were produced in the seven specimens. Depressed comminuted fracture types were documented in six of the seven cases. The average stiffness of the temporo-parietal region under blunt ballistic impact was 0.46 ±0.14 kN/mm. Stiffness results indicate that the response of the temporo-parietal region is similar to the forehead under blunt ballistic loading conditions. In addition, the response is significantly less stiff when compared with temporo-parietal impacts performed in automotive-related studies. These data provide the foundation for future research in the area of blunt ballistic head impact research including the development of biomechanical surrogates and computational models.
机译:有必要研究头部对钝性弹道撞击的生物力学响应。虽然对头部的致命性较低的弹药撞击的频率可能比其他重要的身体区域要少,但这些撞击造成了更严重的伤害。这项研究的目的是为颞顶叶区域建立生物力学反应通道,以便将来开发生物力学替代装置。将七个未贴上尸体的人体标本暴露于钝性弹道颞顶头撞击器(103 g,直径38 mm撞击器),以确定力时间,变形时间和力变形响应。对以前的钝弹头冲击研究以及与汽车相关的冲击研究的反应进行了比较。冲击条件A的峰值力(19.5±2.6 m / s)为3659±1248 N,峰值力为7.3±2.1 mm时发生变形。冲击条件B的峰值力(33.6±1.4 m / s)为5809±1874 N,峰值力为9.9±2.6 mm时发生变形。七个标本中产生了七个裂缝。七例中有六例记录到压抑的粉碎性骨折类型。钝弹道冲击下颞顶区域的平均刚度为0.46±0.14 kN / mm。刚度结果表明,在钝性弹道载荷条件下,颞顶区域的响应与前额相似。此外,与汽车相关研究中进行的颞顶撞击相比,反应的僵硬程度明显降低。这些数据为钝头弹道冲击研究领域的未来研究提供了基础,包括生物力学替代物和计算模型的开发。

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