Thoracic response targets for a computational model: a hierarchical approach to assess the biofidelity of a 50th-percentile occupant male finite element model

Current finite element human thoracic models are typically evaluated against a limited set of loading conditions; this is believed to limit their capability to predict accurate responses. In this study, a 50th-percentile male finite element model (GHBMC v4.1) was assessed under various loading envir...

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Bibliographic Details
Published inJournal of the mechanical behavior of biomedical materials Vol. 45; pp. 45 - 64
Main Authors Poulard, David, Kent, Richard W, Kindig, Matthew, Li, Zuoping, Subit, Damien
Format Journal Article
LanguageEnglish
Published Netherlands 01.05.2015
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Summary:Current finite element human thoracic models are typically evaluated against a limited set of loading conditions; this is believed to limit their capability to predict accurate responses. In this study, a 50th-percentile male finite element model (GHBMC v4.1) was assessed under various loading environments (antero-posterior rib bending, point loading of the denuded ribcage, omnidirectional pendulum impact and table top) through a correlation metric tool (CORA) based on linearly independent signals. The load cases were simulated with the GHBMC model and response corridors were developed from published experimental data. The model was found to be in close agreement with the experimental data both qualitatively and quantitatively (CORA ratings above 0.75) and the response of the thorax was overall deemed biofidelic. This study also provides relevant corridors and an objective rating framework that can be used for future evaluation of thoracic models.
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ISSN:1751-6161
1878-0180
DOI:10.1016/j.jmbbm.2015.01.017