作者
Brian D Stemper, Sajal Chirvi, Ninh Doan, Jamie L Baisden, Dennis J Maiman, William H Curry, Narayan Yoganandan, Frank A Pintar, Glenn Paskoff, Barry S Shender
发表日期
2018/6
期刊
Journal of Orthopaedic Research®
卷号
36
期号
6
页码范围
1747-1756
简介
Quantification of biomechanical tolerance is necessary for injury prediction and protection of vehicular occupants. This study experimentally quantified lumbar spine axial tolerance during accelerative environments simulating a variety of military and civilian scenarios. Intact human lumbar spines (T12‐L5) were dynamically loaded using a custom‐built drop tower. Twenty‐three specimens were tested at sub‐failure and failure levels consisting of peak axial forces between 2.6 and 7.9 kN and corresponding peak accelerations between 7 and 57 g. Military aircraft ejection and helicopter crashes fall within these high axial acceleration ranges. Testing was stopped following injury detection. Both peak force and acceleration were significant (p < 0.0001) injury predictors. Injury probability curves using parametric survival analysis were created for peak acceleration and peak force. Fifty‐percent probability of injury …
引用总数
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