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Accuracy of finite element predictions in sideways load configurations for the proximal human femur

Author

  • Lorenzo Grassi
  • Enrico Schileo
  • Fulvia Taddei
  • Lorenzo Zani
  • Mateusz Juszczyk
  • Luca Cristofolini
  • Marco Viceconti

Summary, in English

Abstract in Undetermined
Subject-specific finite element models have been used to predict stress-state and fracture risk in individual patients. While many studies analysed quasi-axial loading configurations, only few works simulated sideways load configurations, such as those arising in a fall. The majority among these latter directly predicted bone strength, without assessing elastic strain prediction accuracy. The aim of the present work was to evaluate if a subject-specific finite element modelling technique from CT data that accurately predicted strains in quasi-axial loading configurations is suitable to accurately predict strains also when applying low magnitude loads in sideways configurations. To this aim, a combined numerical–experimental study was performed to compare finite element predicted strains with strain-gauge measurements from three cadaver proximal femurs instrumented with sixteen strain rosettes and tested non-destructively under twelve loading configurations, spanning a wide cone (0–30° for both adduction and internal rotation angles) of sideways fall scenarios. The results of the present study evidenced a satisfactory agreement between experimentally measured and predicted strains (R2 greater than 0.9, RMSE% lower than 10%) and displacements. The achieved strain prediction accuracy is comparable to those obtained in state of the art studies in quasi-axial loading configurations. Still, the presence of the highest strain prediction errors (around 30%) in the lateral neck aspect would deserve attention in future studies targeting bone failure.

Publishing year

2012

Language

English

Pages

394-399

Publication/Series

Journal of Biomechanics

Volume

45

Issue

2

Document type

Journal article

Publisher

Elsevier

Topic

  • Mechanical Engineering

Keywords

  • Finite element
  • Sideways fall
  • Human femur
  • Experimental validation

Status

Published

ISBN/ISSN/Other

  • ISSN: 1873-2380