The present study investigates the suitability of the multibody method as alternative approach to the finite element method in order to evaluate biomechanical performances of a Marchetti-Vicenzi self-locking nail under dynamic loading. Torsional, compressive and bending dynamic loads were simulated. Results in terms of bone-device contact forces and device stiffness were obtained confirming and supporting issues observed in clinical reports.
Biomechanical evaluation of an intramedullary nailing device by multibody analysis / Putame, G.; Terzini, M.; Bignardi, C.; Costa, P.; Zanetti, E. M.; Audenino, A.. - (2017). (Intervento presentato al convegno VII Annual Meeting of the Italian Chapter of the European Society of Biomechanics (ESB-ITA) tenutosi a Rome (IT) nel September 28-29, 2017).
Biomechanical evaluation of an intramedullary nailing device by multibody analysis
G. Putame;M. Terzini;C. Bignardi;A. Audenino
2017
Abstract
The present study investigates the suitability of the multibody method as alternative approach to the finite element method in order to evaluate biomechanical performances of a Marchetti-Vicenzi self-locking nail under dynamic loading. Torsional, compressive and bending dynamic loads were simulated. Results in terms of bone-device contact forces and device stiffness were obtained confirming and supporting issues observed in clinical reports.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2690641
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