English

Skull Flexure from Blast Waves: A Mechanism for Brain Injury with Implications for Helmet Design

Medical Physics 2017-03-08 v4 Computational Physics

Abstract

Traumatic brain injury [TBI] has become a signature injury of current military conflicts, with debilitating, costly, and long-lasting effects. Although mechanisms by which head impacts cause TBI have been well-researched, the mechanisms by which blasts cause TBI are not understood. From numerical hydrodynamic simulations, we have discovered that non-lethal blasts can induce sufficient skull flexure to generate potentially damaging loads in the brain, even without a head impact. The possibility that this mechanism may contribute to TBI has implications for injury diagnosis and armor design.

Keywords

Cite

@article{arxiv.0809.3468,
  title  = {Skull Flexure from Blast Waves: A Mechanism for Brain Injury with Implications for Helmet Design},
  author = {William C. Moss and Michael J. King and Eric G. Blackman},
  journal= {arXiv preprint arXiv:0809.3468},
  year   = {2017}
}

Comments

version in press, Physical Review Letters; 17 pages, 5 figures (includes supplementary material)