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April 26, 2026Bioengineering0 citationsOpen Access

Osteoporotic Bone Quality Significantly Increases Proximal Stress Concentration: A Comparative Thermoelastic Stress Analysis with Normal Composite Femurs

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RWRyunosuke WatanabeSYShota YasunagaFHF. Hirose

Key Points

  • The study aims to determine how bone quality affects stress distribution in proximal femurs.
  • Used fourth-generation composite femurs with identical external geometries for testing.
  • Applied cyclic compressive loading at a 9° adduction angle with different maximum loads (normal: 1900 N; osteoporotic: 1000 N).
  • Employed thermoelastic stress analysis to obtain surface stress maps and evaluate stress values across proximal regions.
  • Osteoporotic group showed higher maximum stress values in medial neck (−37.79 MPa vs. −11.52 MPa), lateral neck (24.70 MPa vs. 8.75 MPa), and intertrochanteric crest (−17.98 MPa vs. −6.05 MPa).
  • Stress values in osteoporotic femurs increased by approximately 1.8–3.5-fold compared to normal models at 1000 N.
  • Mean stress values were 1.9–2.4-fold higher for osteoporotic regions.

Abstract

Proximal femoral fractures associated with osteoporosis are an important clinical problem, yet how bone quality independently influences stress distribution remains insufficiently understood. This study aimed to quantitatively compare surface stress distribution between normal and osteoporotic proximal femoral models using thermoelastic stress analysis (TSA). Fourth-generation composite femurs with identical external geometries were subjected to cyclic compressive loading at a 9° adduction angle, with different maximum loads applied to avoid structural failure (normal: 1900 N; osteoporotic: 1000 N). TSA was performed using an infrared lock-in system to obtain surface stress maps, and stress values were evaluated across key proximal regions and along the medial and lateral cortices. The osteoporotic group showed higher maximum stress values in the medial neck (−37.79 vs. −11.52 MPa), lateral neck (24.70 vs. 8.75 MPa), and intertrochanteric crest (−17.98 vs. −6.05 MPa), corresponding to approximately 1.8–3.5-fold increases compared with the normal model values normalized to 1000 N. Mean stress values were also higher by approximately 1.9–2.4-fold across regions. These results suggest that reduced bone quality is associated with increased proximal stress concentration. They may also help guide implant and fixation strategies, including stem selection and fixation configuration, by identifying regions susceptible to stress concentration under different bone quality conditions.

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Cite This Study

Watanabe et al. (2026) studied this question.

synapsesocial.com/papers/69edacbd4a46254e215b4645https://doi.org/10.3390/bioengineering13050496
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