Claire Baker, Zhuoxiaoyue Wang, Lucas Low, Emily Ashworth, Mark Wilson, David Sharp, Nils Lübbe, Shiyang Meng, Mazdak Ghajari
Traffic Safety Research, 2026
Journal article · 2024
George Morgan, L. H. Low, Arul Ramasamy, Spyros D. Masouros
Frontiers in Bioengineering and Biotechnology, 2024
Fracture healing is a complex process which sometimes results in non-unions, leading to prolonged disability and high morbidity. Traditional methods of optimising fracture treatments, such as in vitro benchtop testing and in vivo randomised controlled trials, face limitations, particularly in evaluating the entire healing process. This study introduces a novel, strain-based fracture-healing algorithm designed to predict a wide range of healing outcomes, including both successful unions and non-unions. The algorithm uses principal strains as mechanical stimuli to simulate fracture healing in response to local mechanical environments within the callus region. The model demonstrates good agreement with experimental data from ovine metatarsal osteotomies across six fracture cases with varying gap widths and inter-fragmentary strains, replicates physiological bony growth patterns, and is independent of the initial callus geometry. This computational approach provides a framework for developing new fracture-fixation devices, aid in pre-surgical planning, and optimise rehabilitation strategies.
@article{morgan-2024-a-novel-strain-based,
title={A novel strain-based bone-fracture healing algorithm is able to predict a range of healing outcomes},
author={George Morgan and L. H. Low and Arul Ramasamy and Spyros D. Masouros},
journal={Frontiers in Bioengineering and Biotechnology},
year={2024},
doi={10.3389/fbioe.2024.1477405}
} Related
Claire Baker, Zhuoxiaoyue Wang, Lucas Low, Emily Ashworth, Mark Wilson, David Sharp, Nils Lübbe, Shiyang Meng, Mazdak Ghajari
Traffic Safety Research, 2026
Emily Yik Kwan Chan, Eleni Koumantou, Lucas Low, Isaac Siy, Chris M. Jones, Kieran Austin, Mike Loosemore, Stuart J. McDonald, Mazdak Ghajari
medRxiv, 2026
Lucas Low, Spyros Masouros, Nicolas Newell
Journal of the Mechanical Behavior of Biomedical Materials, 2026
Lucas Low, Claire Baker, Shiyang Meng, Mazdak Ghajari
SSRN Electronic Journal, 2026
Fady F. Abayazid, Mazdak Ghajari
Materials & Design, 2024
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