Literature DB >> 21186906

Experimental validation of a finite element model of the proximal femur using digital image correlation and a composite bone model.

A S Dickinson1, A C Taylor, H Ozturk, M Browne.   

Abstract

Computational biomechanical models are useful tools for supporting orthopedic implant design and surgical decision making, but because they are a simplification of the clinical scenario they must be carefully validated to ensure that they are still representative. The goal of this study was to assess the validity of the generation process of a structural finite element model of the proximal femur employing the digital image correlation (DIC) strain measurement technique. A finite element analysis model of the proximal femur subjected to gait loading was generated from a CT scan of an analog composite femur, and its predicted mechanical behavior was compared with an experimental model. Whereas previous studies have employed strain gauging to obtain discreet point data for validation, in this study DIC was used for full field quantified comparison of the predicted and experimentally measured strains. The strain predicted by the computational model was in good agreement with experimental measurements, with R(2) correlation values from 0.83 to 0.92 between the simulation and the tests. The sensitivity and repeatability of the strain measurements were comparable to or better than values reported in the literature for other DIC tests on tissue specimens. The experimental-model correlation was in the same range as values obtained from strain gauging, but the DIC technique produced more detailed, full field data and is potentially easier to use. As such, the findings supported the validity of the model generation process, giving greater confidence in the model's predictions, and digital image correlation was demonstrated as a useful tool for the validation of biomechanical models.

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Year:  2011        PMID: 21186906     DOI: 10.1115/1.4003129

Source DB:  PubMed          Journal:  J Biomech Eng        ISSN: 0148-0731            Impact factor:   2.097


  11 in total

Review 1.  Computed tomography-based finite element analysis to assess fracture risk and osteoporosis treatment.

Authors:  Kazuhiro Imai
Journal:  World J Exp Med       Date:  2015-08-20

Review 2.  Finite element analysis of the hip and spine based on quantitative computed tomography.

Authors:  R Dana Carpenter
Journal:  Curr Osteoporos Rep       Date:  2013-06       Impact factor: 5.096

Review 3.  On challenges in clinical assessment of hip fracture risk using image-based biomechanical modelling: a critical review.

Authors:  Yunhua Luo
Journal:  J Bone Miner Metab       Date:  2021-01-09       Impact factor: 2.626

4.  The Influence of Static Load and Sideways Impact Fall on Extramedullary Bone Plates Used to Treat Intertrochanteric Femoral Fracture: A Preclinical Strength Assessment.

Authors:  Pratik Nag; Bhaskar Borgohain; Kashif Akhtar Ahmed; Pranjal Phukan; Neeraj Kumar; Alireza Borjali; Kartik Mangudi Varadarajan; Souptick Chanda
Journal:  Ann Biomed Eng       Date:  2022-07-12       Impact factor: 4.219

5.  Digital image correlation as a tool for three-dimensional strain analysis in human tendon tissue.

Authors:  Thomas Luyckx; Matthias Verstraete; Karel De Roo; Wim De Waele; Johan Bellemans; Jan Victor
Journal:  J Exp Orthop       Date:  2014-06-26

6.  In vitro hip testing in the International Society of Biomechanics coordinate system.

Authors:  Richard J van Arkel; Jonathan R T Jeffers
Journal:  J Biomech       Date:  2016-10-29       Impact factor: 2.712

7.  Study of DXA-derived lateral-medial cortical bone thickness in assessing hip fracture risk.

Authors:  Yujia Long; William D Leslie; Yunhua Luo
Journal:  Bone Rep       Date:  2015-04-08

8.  Experimental Validation of an ITAP Numerical Model and the Effect of Implant Stem Stiffness on Bone Strain Energy.

Authors:  K Ahmed; R J Greene; W Aston; T Briggs; C Pendegrass; M Moazen; G Blunn
Journal:  Ann Biomed Eng       Date:  2020-01-23       Impact factor: 3.934

9.  Measurement of Internal Implantation Strains in Analogue Bone Using DVC.

Authors:  Alexander Marter; Charles Burson-Thomas; Alexander Dickinson; Kathryn Rankin; Mark Mavrogordato; Fabrice Pierron; Martin Browne
Journal:  Materials (Basel)       Date:  2020-09-12       Impact factor: 3.623

10.  Comparative analysis of the biomechanical behavior of two different design metaphyseal-fitting short stems using digital image correlation.

Authors:  I Tatani; P Megas; A Panagopoulos; I Diamantakos; Ph Nanopoulos; Sp Pantelakis
Journal:  Biomed Eng Online       Date:  2020-08-19       Impact factor: 2.819

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