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Computer Methods in Biomechanics and Biomedical Engineering|March 23, 2012
Patient-specific modelling of the foot: automated hexahedral meshing of the bonesW B Lievers, R W KentAnnual Proceedings. Association for the Advancement of Automotive Medicine|September 7, 2002
Comparison of seat belt force-limiting methods using the MADYMO multi-body/finite element programE M Sieveka, R W Kent, J R CrandallAnnual Proceedings. Association for the Advancement of Automotive Medicine|September 18, 2001
Driver and right-front passenger restraint system interaction, injury potential, and thoracic injury predictionR W Kent, J R Crandall, J R Bolton, et al.Medical Engineering & Physics|June 23, 2009
Time-frequency analysis to detect bone fracture in impact biomechanics. Application to the thoraxF Gabrielli, D Subit, E Ogam, et al.Stapp Car Crash Journal|April 27, 2007
The influence of superficial soft tissues and restraint condition on thoracic skeletal injury predictionR W Kent, J R Crandall, J Bolton, et al.Traffic Injury Prevention|May 20, 2009
Viscoelastic response of the thorax under dynamic belt loadingR S Salzar, C R Bass, D Lessley, et al.Injury Prevention : Journal of the International Society for Child and Adolescent Injury Prevention|December 7, 2007
Car safety seats for children: rear facing for best protectionB Henary, C P Sherwood, J R Crandall, et al.Traffic Injury Prevention|January 25, 2013
Thoracic response to shoulder belt loading: comparison of tabletop and frontal sled tests with PMHSR S Salzar, S H Lau, D J Lessley, et al.Traffic Injury Prevention|October 3, 2003
Prediction of cervical spine injury risk for the 6-year-old child in frontal crashesC P Sherwood, C G Shaw, L Van Rooij, et al.Annual Proceedings. Association for the Advancement of Automotive Medicine|October 4, 2002
Prediction of cervical spine injury risk for the 6-year-old child in frontal crashesC P Sherwood, C G Shaw, L van Rooij, et al.Pageof 1