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Journal article · 2022

Non-Lethal Blasts can Generate Cavitation in Cerebrospinal Fluid While Severe Helmeted Impacts Cannot: A Novel Mechanism for Blast Brain Injury

Xiancheng Yu, Thuy-Tien N. Nguyen, Tianchi Wu, Mazdak Ghajari

Frontiers in Bioengineering and Biotechnology, 2022

Abstract

Cerebrospinal fluid (CSF) cavitation is a likely physical mechanism for producing traumatic brain injury (TBI) under mechanical loading. In this study, we investigated CSF cavitation under blasts and helmeted impacts which represented loadings in battlefield and road traffic/sports collisions. We first predicted the human head response under the blasts and impacts using computational modelling and found that the blasts can produce much lower negative pressure at the contrecoup CSF region than the impacts. Further analysis showed that the pressure waves transmitting through the skull and soft tissue are responsible for producing the negative pressure at the contrecoup region. Based on this mechanism, we hypothesised that blast, and not impact, can produce CSF cavitation. To test this hypothesis, we developed a one-dimensional simplified surrogate model of the head and exposed it to both blasts and impacts. The test results confirmed the hypothesis and computational modelling of the tests validated the proposed mechanism. These findings have important implications for prevention and diagnosis of blast TBI.

Cite as (BibTeX)

@article{yu-2022-non-lethal-blasts-can,
  title={Non-Lethal Blasts can Generate Cavitation in Cerebrospinal Fluid While Severe Helmeted Impacts Cannot: A Novel Mechanism for Blast Brain Injury},
  author={Xiancheng Yu and Thuy-Tien N. Nguyen and Tianchi Wu and Mazdak Ghajari},
  journal={Frontiers in Bioengineering and Biotechnology},
  year={2022},
  doi={10.3389/fbioe.2022.808113}
}

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