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The evaluation of blunt ballistic impacts of the thorax.

机译:对胸部钝性弹道影响的评估。

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The specific aims of this study included: (1) the determination of human response corridors for blunt ballistic impacts of the thorax and comparison with established biomechanical responses from the automotive safety literature, (2) the determination of an injury criterion to assess the continuum of injuries related to blunt ballistic impacts of the thorax, (3) the refinement and validation of a biomechanical surrogate and subsystem test procedure for the evaluation of blunt ballistic impacts, and the evaluation and comparison of existing methods used by the non-lethal community in terms of biofidelity and injury assessment, (4) the development of theoretical models to estimate the effects of blunt ballistic impacts to the human and existing surrogates.; Three impact conditions were selected to biomechanically assess blunt ballistic impacts to the thorax. The conditions included (A) 140 g mass at 20 m/s (B) 140 g mass at 40 m/s and (C) 30 g mass at 60 m/s. Testing was conducted on cadaveric specimens, existing simulants used for penetrating munitions (clay and gelatin), a biomechanical surrogate (3-RCS), and a mathematical model (Lobdell). The cadaveric specimens provided information needed to develop human response corridors for the test conditions. After these responses were determined, the remaining surrogates were tested and compared to the corridors established.; The results indicate that ordinance gelatin does not display agreement with the human response corridors. Modification of the current behind body armor standard of clay indicates agreement with the human thorax but the information provided by this assessment is limited. A biomechanical surrogate, the 3-RCS, displays an adequate correlation with the force-time corridors established. A correlation factor between the 3-RCS and the human response was also established based on the injury parameter of the viscous response or VC. Logistic regression analysis was conducted on experimental data, which indicated the VC could predict the injuries seen with blunt ballistic impacts. Refinement of the Lobdell mathematical model was also completed in order to assess blunt ballistic impacts.; The results of this research provide an initial biomechanical assessment of blunt ballistic impacts. Further refinement of the biomechanical surrogate and the injury parameter in the future will allow for a complete assessment to be conducted in this area of impact biomechanics.
机译:这项研究的具体目标包括:(1)确定人的响应通道对胸部的钝性弹道冲击,并与汽车安全文献中已建立的生物力学响应进行比较;(2)确定损伤标准以评估连续性与胸部钝性弹道撞击有关的伤害,(3)用于评估钝性弹道撞击的生物力学替代物和子系统测试程序的改进和验证,以及非致命性社区在术语方面所使用的现有方法的评估和比较(4)建立理论模型以估算钝性弹道撞击对人类和现有替代物的影响。选择了三种撞击条件以生物力学评估对胸部的钝性弹道撞击。条件包括(A)20 g / s下140 g质量(B)40 m / s下140 g质量和(C)60 m / s 30 g质量。对尸体标本,用于穿透弹药的现有模拟物(粘土和明胶),生物力学替代物(3-RCS)和数学模型(Lobdell)进行了测试。尸体标本提供了在测试条件下建立人类反应通道所需的信息。确定这些响应后,将测试剩余的替代产品并将其与建立的走廊进行比较。结果表明,法令明胶与人类反应走廊的显示不一致。当前对粘土防弹衣标准的修改表明与人类的胸部一致,但该评估提供的信息有限。生物力学替代物3-RCS与建立的力时通道显示出足够的相关性。还基于粘性响应或VC的伤害参数,建立了3-RCS与人类响应之间的相关因子。对实验数据进行了Logistic回归分析,这表明VC可以预测在钝性弹道撞击下看到的伤害。还评估了Lobdell数学模型,以评估钝性的弹道冲击。这项研究的结果为钝式弹道撞击提供了初步的生物力学评估。未来生物力学替代指标和损伤参数的进一步完善将使在冲击生物力学领域能够进行全面评估。

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