Chanda Arnab, Callaway Christian
a Department of Aerospace Engineering and Mechanics , University of Alabama , Tuscaloosa , AL , USA.
b Department of Mechanical Engineering , University of Alabama , Tuscaloosa , AL , USA.
J Med Eng Technol. 2018 Feb;42(2):88-104. doi: 10.1080/03091902.2018.1432711. Epub 2018 Feb 23.
Blast injuries affect millions of lives across the globe due to its traumatic after effects on the brain and the whole body. To date, military grade armour materials are designed to mitigate ballistic and shrapnel attacks but are less effective in resisting blast impacts. In order to improve blast absorption characteristics of armours, the first key step is thoroughly understands the effects of blasts on the human body itself. In the last decade, a plethora of experimental and computational work has been carried out to investigate the mechanics and pathophysiology of Traumatic Brain Injury (TBI). However, very few attempts have been made so far to study the effect of blasts on the various other parts of the body such as the sensory organs (eyes and ears), nervous system, thorax, extremities, internal organs (such as the lungs) and the skeletal system. While an experimental evaluation of blast effects on such physiological systems is difficult, developing finite element (FE) models could allow the recreation of realistic blast scenarios on full scale human models and simulate the effects. The current article reviews the state-of-the-art in computational research in blast induced whole-body injury modelling, which would not only help in identifying the areas in which further research is required, but would also be indispensable for understanding body location specific armour design criteria for improved blast injury mitigation.
爆炸伤因其对大脑和全身造成的创伤性后遗症,影响着全球数百万人的生活。迄今为止,军事级装甲材料旨在减轻弹道和弹片攻击的影响,但在抵抗爆炸冲击方面效果较差。为了提高装甲的爆炸吸收特性,首要关键步骤是彻底了解爆炸对人体本身的影响。在过去十年中,已经开展了大量实验和计算工作来研究创伤性脑损伤(TBI)的力学和病理生理学。然而,到目前为止,很少有人尝试研究爆炸对身体其他各个部位的影响,如感觉器官(眼睛和耳朵)、神经系统、胸部、四肢、内部器官(如肺部)和骨骼系统。虽然对这种生理系统的爆炸效应进行实验评估很困难,但开发有限元(FE)模型可以在全尺寸人体模型上重现逼真的爆炸场景并模拟其效果。本文综述了爆炸诱发全身损伤建模计算研究的最新进展,这不仅有助于确定需要进一步研究的领域,而且对于理解特定身体部位的装甲设计标准以更好地减轻爆炸伤害也必不可少。