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Updated: Mar 13, 2026

A Method to Estimate Cadaveric Femur Cortical Strains During Fracture Testing Using Digital Image Correlation
Published on: September 14, 2017
Comparison of specimen-specific vertebral body finite element models with experimental digital image correlation
Hannah M Gustafson1, Peter A Cripton1, Stephen J Ferguson2
1Mechanical Engineering, University of British Columbia, 818 W. 10th Ave., Vancouver, BC, Canada V5Z 1M9.
Abstract:
The purpose of this study was to load cadaveric vertebral bodies (n=6) in compression and compare the response, measured with digital image correlation (DIC) on the cortex, with the predicted response from specimen-specific vertebral finite element (FE) models. Five modulus-density relationships were evaluated, and for the strongest modulus-density relationship, the correlation between the DIC and FE displacements had R2 values from 0.75 to 0.93. The stiffnesses derived from the DIC measurements were strongly predicted by the FE stiffnesses (R2=0.90). DIC provides full-field measurements of surface displacement, eliminating the influence of system compliance, for validation of specimen-specific models.

